| Setting | Treatment |
|---|---|
| HR+/HER2− early / locally advanced | Backbone at EVERY stage: surgery → radiotherapy → adjuvant endocrine therapy 5–10 yr
lumpectomy or mastectomy + axillary staging · whole-breast RT after lumpectomy (may be omitted in older women with small node-negative tumours), post-mastectomy / nodal RT if node-positive or high-risk · endocrine = tamoxifen (premenopausal) or an aromatase inhibitor ± ovarian suppression (postmenopausal). This is the least chemo-sensitive subtype — endocrine therapy is the main event; chemo is selective. Stage I (T1 N0) → surgery first, and chemo is usually NOT needed
a genomic assay makes the chemo call — Oncotype RS ≥26 → chemo; most small node-negative tumours skip it (TAILORx) Stage II / node-positive (operable) → surgery first → then adjuvant therapy
neoadjuvant rarely earns its place here (HR+ downstages poorly) — operate, then treat · chemo decided by assay in 1–3-node disease (RxPONDER), and when given chemo = dose-dense AC→T (doxorubicin + cyclophosphamide → a taxane; lower-risk alternative TC = docetaxel + cyclophosphamide) · node-positive high-risk → add adjuvant CDK4/6 inhibitor (abemaciclib 2 yr (monarchE) · ribociclib 3 yr (NATALEE)) · germline BRCA + high-risk → add adjuvant olaparib ×1 yr (OlympiA) (the HR+ bar is high: ≥4 nodes, or CPS+EG ≥3 residual) Stage III (locally advanced, T3–4 / N2–3) → neoadjuvant AC→T FIRST → surgery → RT → adjuvant endocrine + the escalations above
a pathological complete response is uncommon in HR+, but neoadjuvant still downstages the breast and axilla and exposes residual disease to guide the CDK4/6 and olaparib decisions |
| HR+/HER2− metastatic | 1st line → endocrine therapy (an AI or fulvestrant) + a CDK4/6 inhibitor
almost everyone · palbociclib / ribociclib / abemaciclib · biomarker-driven throughout — test ctDNA (circulating tumour DNA) / tissue, and the mutation picks the drug Exception → inavolisib + palbociclib + fulvestrant (INAVO120)
PIK3CA-mutant AND relapsed ≤12 mo on adjuvant endocrine therapy — already endocrine-resistant, PI3K driving it On progression → re-test ctDNA and match the mutation ESR1-mutant → elacestrant (EMERALD)
an oral SERD · ESR1 emerges under the AI's pressure PIK3CA / AKT1 / PTEN altered → capivasertib (CAPItello-291) or alpelisib (SOLAR-1)
capivasertib targets AKT — covers all three · alpelisib is PIK3CA-only Germline BRCA → a PARP inhibitor Later → single-agent chemotherapy, or an ADC
chemo = capecitabine, a taxane, eribulin, or vinorelbine · ADC = T-DXd if HER2-low, or sacituzumab govitecan (a Trop-2 ADC) |
| HER2+ early / locally advanced | Stage I, small (T1a–b N0, ≤~2 cm node-negative) → surgery → adjuvant paclitaxel + trastuzumab
the de-escalated APT regimen — weekly paclitaxel ×12 + trastuzumab to 1 yr; no anthracycline, no pertuzumab Stage II–III (≥T2 or node-positive) → neoadjuvant TCHP → surgery → locoregional RT → adjuvant trastuzumab ± pertuzumab to 1 yr
TCHP = docetaxel + carboplatin + trastuzumab + pertuzumab · surgery = lumpectomy/mastectomy + axillary staging · keep pertuzumab adjuvantly if node-positive (APHINITY) Residual disease at surgery → switch adjuvant to T-DXd
trastuzumab deruxtecan — beat T-DM1 (DESTINY-Breast05), which had itself beaten trastuzumab for residual disease (KATHERINE) · recent change — confirm your NCCN version reflects it HR+/HER2+ high-risk → extended adjuvant neratinib (ExteNET) ⚠ Anti-HER2 needs adequate LVEF
left-ventricular ejection fraction — significant cardiac dysfunction → cardio-oncology co-management rather than automatic exclusion |
| HER2+ metastatic | 1st line → T-DXd + pertuzumab (DESTINY-Breast09)
new benchmark, replacing taxane + trastuzumab + pertuzumab (THP) where available · very recent approval — confirm local/formulary adoption before treating on this basis If THP used 1st line → 2nd line T-DXd 3rd line → tucatinib + trastuzumab + capecitabine
brain-active |
| TNBC early / locally advanced | Stage I, small (cT1a–b N0) → surgery → adjuvant chemo
an anthracycline + taxane; the very small node-negative tumours do not need the full neoadjuvant immunotherapy regimen Stage II–III (cT2+ or node-positive — NCCN prefers neoadjuvant from cT1c N+) → neoadjuvant pembrolizumab + chemo → surgery → locoregional RT → adjuvant pembrolizumab
the KEYNOTE-522 regimen = carboplatin + paclitaxel → then AC, all with pembrolizumab (a PD-1 checkpoint inhibitor), then pembrolizumab alone after surgery (KEYNOTE-522) Residual disease after neoadjuvant → adjuvant capecitabine Germline BRCA → adjuvant olaparib (OlympiA)
a PARP (poly-ADP-ribose polymerase) inhibitor · ≥pT2 or ≥pN1 after adjuvant chemo, or any residual disease after neoadjuvant chemo |
| TNBC metastatic | PD-L1-positive → pembrolizumab + chemo
programmed death-ligand 1, CPS-based Germline BRCA → a PARP inhibitor Later → sacituzumab govitecan (ASCENT)
a Trop-2 ADC (antibody-drug conjugate) |
| HER2-low / ultralow metastatic only | T-DXd after ≥1 line of endocrine therapy
HER2-low = IHC 1+, or 2+/ISH− (DESTINY-Breast04) extended to HER2-ultralow = IHC 0 with faint incomplete staining (DESTINY-Breast06) |
| Setting | Treatment |
|---|---|
| Early / resectable NSCLC NSCLC · no mets · operable | Surgery — lobectomy + mediastinal nodal sampling
the anchor of curative treatment Perioperative chemo-immunotherapy around surgery
neoadjuvant-only nivolumab (CheckMate-816) (5-yr update confirms an OS benefit, ~30% reduction in risk of death, ASCO 2025) · full perioperative (neo + adjuvant) pembrolizumab (KEYNOTE-671) or durvalumab (AEGEAN) EGFR-mutant → adjuvant osimertinib ×3 yr (ADAURA) ALK-positive → adjuvant alectinib (ALINA)
76% reduction in recurrence/death vs chemo · both targeted options REPLACE chemo-IO when the driver is present Medically inoperable → SABR
stereotactic ablative radiotherapy |
| Stage III, unresectable NSCLC · N2/N3 or unresectable · no mets | Concurrent chemoradiotherapy → consolidation durvalumab (PACIFIC) EGFR-mutant → consolidation osimertinib instead (LAURA)
PFS 39.1 vs 5.6 months ⚠ Durvalumab CONCURRENTLY with chemoRT does not help (PACIFIC-2)
it stays sequential / consolidative — after chemoRT finishes |
| Metastatic NSCLC — DRIVER-POSITIVE NGS: actionable driver found | Matched TKI — the driver picks the drug
⚠ NGS must be back before first-line treatment. Most of these are absent in any given patient — scan for the one you have: EGFR → osimertinib (FLAURA) (or amivantamab + lazertinib (MARIPOSA), 1st-line-approved 2024) · ALK → alectinib (ALEX) / lorlatinib (CROWN) · ROS1 → repotrectinib / crizotinib · BRAF V600E → dabrafenib + trametinib · MET exon-14 skipping → capmatinib / tepotinib · RET fusion → selpercatinib / pralsetinib · NTRK fusion → larotrectinib / entrectinib · HER2-mutant → trastuzumab deruxtecan (or zongertinib, an oral HER2 TKI, approved 2025) ⚠ KRAS-G12C is NOT a first-line driver
treat as driver-negative below (PD-L1-stratified chemo ± IO); sotorasib / adagrasib are reserved for 2nd-line+ ⚠ NOT immunotherapy first for any driver above |
| Metastatic NSCLC — DRIVER-NEGATIVE NGS: no actionable driver (includes KRAS-G12C) + PD-L1 TPS | PD-L1 ≥50% → pembrolizumab alone (KEYNOTE-024) PD-L1 <50% → chemo + pembrolizumab
(KEYNOTE-189) non-squamous · (KEYNOTE-407) squamous Chemo backbone
non-squamous → platinum + pemetrexed · squamous → platinum + gemcitabine / paclitaxel Palliative RT for symptomatic sites · brain mets → SRS / WBRT |
| SCLC — LIMITED stage confined to one hemithorax, fits one RT field | Platinum + etoposide + concurrent thoracic RT → consolidation durvalumab (ADRIATIC)
27% reduction in risk of death; median OS 55.9 vs 33.4 months — the first phase 3 survival gain in limited-stage SCLC in decades Consider PCI or MRI surveillance
prophylactic cranial irradiation |
| SCLC — EXTENSIVE stage distant metastases | Platinum + etoposide + a PD-L1 inhibitor
atezolizumab (IMpower133) or durvalumab (CASPIAN) 2nd line → TARLATAMAB is PREFERRED over chemotherapy (DeLLphi-304)
a DLL3 bispecific T-cell engager · phase 3 randomised it against chemo — and lurbinectedin, topotecan and amrubicin were the COMPARATOR arm: median OS 13.6 vs 8.3 mo, HR 0.60, 12-mo OS 53% vs 37% · ⚠ it was also BETTER TOLERATED (fewer grade ≥3 treatment-related AEs, fewer interruptions/reductions) — so the usual reason for holding it back does not hold · earlier accelerated approval on (DeLLphi-301) ⚠ Do NOT save tarlatamab for last
giving lurbinectedin / topotecan first and holding tarlatamab in reserve gives the patient the arm that LOST the trial, at the point they are fittest to tolerate the better drug. The legitimate reasons to use chemo instead are logistics or access, not efficacy: tarlatamab needs step-up dosing with CRS/ICANS monitoring capacity, and it must be available/funded Chemotherapy options if tarlatamab is unavailable → lurbinectedin · topotecan · amrubicin
and if PLATINUM-SENSITIVE relapse (beyond ~6 months) → platinum re-challenge is also legitimate — do not skip past it |
| Setting | Treatment |
|---|---|
| NMIBC — Ta / T1 / CIS no muscle invasion (~75%) | The TURBT has already treated it Then intravesical BCG for high-risk, or intravesical chemo BCG-unresponsive → pembrolizumab · nadofaragene · cystectomy |
| MIBC — cisplatin-FIT ≥T2, no mets, CrCl ≥60 | Neoadjuvant chemo-IO → RADICAL CYSTECTOMY + PLND → adjuvant IO Standard: durvalumab + gem/cis ×4 → cystectomy → durvalumab ×8 cycles (NIAGARA) ⚠ The adjuvant course is FINITE — 8 cycles, then STOP
not "until progression" Alternative adjuvant if high-risk post-op → nivolumab ×1 yr (CheckMate-274) |
| MIBC — cisplatin-UNFIT CrCl <60 · ECOG ≥2 · neuropathy · hearing loss · HF | Perioperative EV + pembrolizumab — 3 neoadjuvant cycles → CYSTECTOMY + PLND → adjuvant pembrolizumab (EV-303 / KEYNOTE-905)
pCR 57% vs 9%; OS not reached vs 41.7 mo · carboplatin is NOT an adequate substitute — this replaced it ⚠ No bladder-preservation arm — the benefit was earned WITH cystectomy Truly unfit for surgery → trimodality / RT |
| MIBC — BLADDER PRESERVATION refuses/unfit for cystectomy, or favourable: solitary, <5 cm, fully resected at TURBT, no hydronephrosis, no extensive CIS | TRIMODALITY THERAPY = ① maximal TURBT → ② radiotherapy → ③ concurrent radiosensitiser
cisplatin · 5-FU + mitomycin (BC2001) · gemcitabine if cisplatin-unfit ⚠ Non-negotiable: LIFELONG cystoscopy — the bladder is still there
salvage cystectomy is the bail-out ⚠ Adjuvant IO after TMT is NOT established
all the evidence ((NIAGARA) (CheckMate-274)) is post-CYSTECTOMY; the trials built for this question ((S1806) (KEYNOTE-992)) have not reported. If given anyway, every framework is finite, ~6–8 months ctDNA to SELECT rather than treat blindly (IMvigor011)
see ctDNA in Tools · ⚠ ctDNA does NOT survey the bladder — cystoscopy stays independent |
| METASTATIC | 1st line → EV + pembrolizumab (EV-302)
enfortumab vedotin, a Nectin-4 ADC — replaced platinum chemo Alternative → platinum + gemcitabine → avelumab maintenance (JAVELIN Bladder 100) FGFR-altered → erdafitinib |
| Setting | Treatment |
|---|---|
| HCC — EARLY BCLC 0/A — solitary or oligonodular, preserved liver function | Resection (partial hepatectomy), transplant, or ablation
transplant within Milan criteria SBRT as an alternative local option
stereotactic body radiotherapy — when ablation / surgery is unsuitable |
| HCC — INTERMEDIATE BCLC B — multinodular, preserved liver function, no vascular invasion/extrahepatic spread | TACE ± Y90
transarterial chemoembolisation · yttrium-90 radioembolisation |
| HCC — ADVANCED BCLC C — vascular invasion / extrahepatic spread, Child-Pugh A | Atezolizumab + bevacizumab (IMbrave150)
PD-L1 inhibitor + anti-VEGF · ⚠ do an EGD for varices FIRST (upper endoscopy) Or durvalumab + tremelimumab — the STRIDE regimen (HIMALAYA)
the choice when varix / bleeding risk makes bevacizumab unattractive Later-line → lenvatinib / sorafenib / regorafenib / cabozantinib
VEGFR tyrosine kinase inhibitors |
| Biliary — RESECTED R0/R1 resection | Adjuvant capecitabine ×6 months (BILCAP) |
| Biliary — ADVANCED unresectable/metastatic; HER2/FGFR2/IDH1 wild-type or pending | Gemcitabine + cisplatin + durvalumab (TOPAZ-1)
or + pembrolizumab (KEYNOTE-966) 2nd line — biomarker-matched
FGFR2 fusion → pemigatinib / futibatinib · IDH1-mutant → ivosidenib · HER2-amplified → zanidatamab (a BISPECIFIC HER2 antibody — binds two HER2 epitopes at once, unlike trastuzumab; approved 2024) or trastuzumab deruxtecan |
| Setting | Treatment |
|---|---|
| ◆ COLON — surgery FIRST → adjuvant by stage & risk · never radiotherapy | |
| COLON — stage II, LOW risk none of the high-risk features below | Surgery alone
adjuvant chemo not routinely indicated — discuss ± single-agent fluoropyrimidine only |
| COLON — stage II, HIGH risk T4 · <12 nodes sampled · poorly differentiated · LVI/PNI · perforation · obstruction · positive margin | Adjuvant chemo — 6 months single-agent fluoropyrimidine, OR 3 months CAPOX
capecitabine + oxaliplatin ⚠ dMMR / MSI-HIGH stage II → do NOT give single-agent 5-FU
no benefit and possibly harmful — good prognosis on surgery alone |
| COLON — stage III node-positive | Adjuvant FOLFOX or CAPOX (MOSAIC)
folinic acid + 5-FU ± oxaliplatin Duration is regimen-dependent (IDEA)
CAPOX 3 months ≈ 6 months (HR 1.02) — 3 is enough, far less neuropathy · FOLFOX is worse at 3 months → give 6 (HR 1.41) Low-risk (T1–3N1) → 3 months acceptable · high-risk (T4 or N2) → 6 months |
| ◆ RECTUM — TME-based, radiotherapy-relevant, treated NEOADJUVANTLY | |
| RECTUM — EARLY / "good" risk cT1–2N0; or mid/upper rectum mrT3a/b N0–N1, CRM clear, EMVI-negative | UPFRONT TME surgery — no neoadjuvant therapy ⚠ GUIDELINE DIVERGENCE — ESMO permits this, NCCN does NOT
NCCN recommends preoperative chemoradiation for ALL stage II–III rectal cancer irrespective of location. Know which framework you are in |
| RECTUM — INTERMEDIATE risk cT2N+, cT3N0, cT3N+ — resectable, sphincter-sparing feasible, CRM clear, not bulky nodal | Response-adapted — FOLFOX ×6 → restage MRI (PROSPECT) ≥20% regression → straight to TME, OMITTING pelvic radiotherapy <20% (or FOLFOX-intolerant) → long-course chemoradiation → TME
non-inferior DFS; only ~9% needed the crossover Why it matters
spares bowel / sexual dysfunction, infertility, pelvic fracture, second malignancy — greatest value in YOUNGER patients, and keeps RT in reserve |
| RECTUM — HIGH risk ESMO: cT4a/b · MRF+ (mesorectal fascia) · cN2 (≥4 nodes) · EMVI+ · lateral node ≥7 mm | TOTAL NEOADJUVANT THERAPY (TNT) — all chemo AND radiation BEFORE surgery Short-course RT (5×5 Gy) → CAPOX/FOLFOX ×6 → TME (RAPIDO) Or mFOLFIRINOX ×6 → long-course chemoradiation → TME → 3 months adjuvant (PRODIGE-23) Why TNT
chemo compliance is far better BEFORE surgery → fewer distant metastases; also downsizes the tumour and opens the door to non-operative management ⚠ Not PROSPECT candidates
N2 and MRF+ are excluded by the risk stratification itself |
| RECTUM — dMMR / MSI-high | Neoadjuvant dostarlimab
PD-1 checkpoint inhibitor — may avoid chemotherapy, radiotherapy AND surgery entirely in a striking proportion |
| RECTUM — complete clinical response after neoadjuvant therapy | WATCH & WAIT / organ preservation (OPRA)
omit surgery, intensive surveillance (endoscopy + MRI) · requires a true complete clinical response and a reliable follow-up programme · salvage TME on regrowth |
| ◆ METASTATIC — COLON or RECTUM · systemic Rx is the SAME (driven by RAS / BRAF / MSI / sidedness, NOT the primary site) | |
| METASTATIC — RESECTABLE typically liver ± lung oligometastases | 🔴 POTENTIALLY CURATIVE — DO NOT TREAT AS PALLIATIVE Perioperative chemotherapy + METASTASECTOMY
gives long-term survival in a real minority Borderline / unresectable-but-liver-limited → CONVERSION chemotherapy → then resect
high-response-rate doublet/triplet + biologic, to shrink into resectability ⚠ KEEP THE PRE-OP COURSE SHORT — ~4–6 cycles, then OPERATE
prolonged pre-hepatectomy chemotherapy damages the liver: oxaliplatin → SINUSOIDAL OBSTRUCTION SYNDROME ("blue liver"), irinotecan → STEATOHEPATITIS ("yellow liver") — both raise post-operative morbidity and mortality. Do not drift into 8–12 cycles because the scans look good ⚠⚠ THE "DISAPPEARING LIVER METASTASIS" TRAP
if a lesion vanishes radiologically the surgeon cannot find it at operation, yet viable tumour remains in the majority → MARK / tag small lesions BEFORE starting chemo, and stop once resectable — over-shrinking loses the target Every liver-limited patient deserves a hepatobiliary surgical opinion BEFORE being committed to palliative intent |
| METASTATIC — unresectable, 1st line | Doublet — FOLFOX or FOLFIRI + a biologic chosen by RAS AND sidedness
folinic acid + 5-FU + oxaliplatin / irinotecan RAS wild-type + LEFT-sided → anti-EGFR
cetuximab / panitumumab Right-sided or RAS-mutant → bevacizumab MSI-high → pembrolizumab monotherapy (KEYNOTE-177)
PFS 16.5 vs 8.2 months BRAF V600E → encorafenib + cetuximab + FOLFOX (BREAKWATER)
FDA full approval 2025 — supersedes chemo doublet alone in this subgroup |
| METASTATIC — later lines | Trifluridine/tipiracil (TAS-102) ± bevacizumab (SUNLIGHT) Regorafenib · fruquintinib (FRESCO-2)
regorafenib is a multikinase inhibitor Biomarker-directed, 2L+
KRAS G12C → sotorasib + panitumumab (CodeBreaK 300) or adagrasib + cetuximab (KRYSTAL-1) · HER2-amplified with RAS/BRAF wild-type → tucatinib + trastuzumab (MOUNTAINEER) or trastuzumab deruxtecan (DESTINY-CRC02) Anti-EGFR rechallenge
an option in selected RAS wild-type patients |
| ◆ EMERGENCY (either site) | |
| EMERGENCY — obstructing tumour | Colonic STENT as a bridge to surgery
allows staging + optimisation, avoids an emergency stoma Or upfront surgery / defunctioning stoma ⚠ Avoid stenting if bevacizumab is planned — perforation risk |
| Setting | Treatment |
|---|---|
| STAGE I SEMINOMA seminoma · markers normalised · CT clear | SURVEILLANCE is preferred
cure approaches 99% either way, and surveillance spares the majority who are already cured from any treatment at all · relapse-risk factors: tumour >4 cm, rete testis invasion If not feasible → single-agent carboplatin AUC 7 ×1 (MRC TE19) Para-aortic EBRT 20 Gy — now LEAST favoured
external-beam radiotherapy — second-malignancy + cardiovascular late effects in men who will live decades |
| STAGE I NSGCT — no LVI | SURVEILLANCE
relapse ~15%, and relapse is still curable |
| STAGE I NSGCT — LVI PRESENT LVI on the orchidectomy specimen; relapse risk ~50% | Surveillance remains the preferred option
in a fully-informed patient able to adhere to follow-up — relapse, if it happens, is still curable with full-course chemo Alternative → adjuvant BEP ×1
bleomycin + etoposide + cisplatin — cuts relapse to ~2–3% Or nerve-sparing RPLND |
| METASTATIC — GOOD risk NSGCT: testis/retroperitoneal primary, no non-pulmonary visceral mets, AFP <1000, β-hCG <5000, LDH <1.5× ULN (upper limit of normal) · Seminoma: any primary, normal AFP, no non-pulmonary visceral mets | BEP ×3 Or EP ×4 when bleomycin must be avoided
etoposide + cisplatin — pre-existing lung disease, older age, impaired renal function, or a planned extensive thoracic resection |
| METASTATIC — INTERMEDIATE / POOR risk Intermediate: non-pulm. visceral mets (seminoma) or AFP 1000–10 000 / β-hCG 5000–50 000 / LDH 1.5–10× ULN (NSGCT) · Poor (NSGCT only): mediastinal primary, non-pulm. visceral mets, AFP >10 000, β-hCG >50 000, or LDH >10× ULN — there is no poor-risk seminoma | BEP ×4 Bleomycin contraindicated → VIP ×4
etoposide + ifosfamide + cisplatin ⚠ FULMINANT HIGH-VOLUME CHORIOCARCINOMA IS AN EMERGENCY
massive β-hCG, pulmonary haemorrhage, respiratory failure → start chemotherapy urgently; consider a reduced-intensity first cycle to avoid tumour-lysis / haemorrhage catastrophe, then escalate to full dose |
| RESIDUAL MASS after chemotherapy markers normalised, mass persists | NSGCT → RESECT any residual mass ≥1 cm
post-chemo RPLND ± thoracic resection · findings: necrosis/fibrosis, teratoma (chemo-resistant, grows, can transform — must come out), or viable germ-cell tumour (→ consider further chemo) SEMINOMA → do NOT reflexively operate
masses regress slowly Seminoma, mass >3 cm → FDG-PET at ≥6 weeks
negative → observe; positive → biopsy / resect · PET is unreliable in NSGCT — it cannot exclude teratoma |
| 🔴 RELAPSED / REFRACTORY still curative intent | 🔴 The single most important row in the section — relapse here is NOT palliative Conventional-dose salvage → TIP
paclitaxel + ifosfamide + cisplatin — ~65% long-term remission in favourable-risk relapse · VeIP (vinblastine + ifosfamide + cisplatin) ~25%; or VIP High-dose chemo + autologous stem-cell rescue
carboplatin/etoposide, Indiana regimen — as initial salvage in poor-risk relapse, or after failed conventional salvage · refer to a high-volume germ-cell centre ⚠ Late relapse (>2 yr) is chemo-resistant → SURGERY is the mainstay |
| GROWING TERATOMA SYNDROME mass enlarging WHILE markers normal/falling, on chemo | Complete surgical resection
not progression — chemotherapy will not touch it |
| BRAIN METASTASES | Platinum-based chemotherapy (BEP-type) PLUS radiotherapy and/or surgery
still curative intent, unlike most solid tumours |
| Setting | Treatment |
|---|---|
| VERY LOW / LOW risk very-low: cT1c, GG1, PSA<10, <3 cores positive ≤50% each, PSA density <0.15. low: cT1–T2a, GG1, PSA<10 | ACTIVE SURVEILLANCE is the preferred management
serial PSA, MRI, and confirmatory / repeat biopsy · treating these men is over-treatment Radical prostatectomy or radiotherapy
reserved for progression on surveillance, or long life expectancy with patient preference |
| FAVOURABLE INTERMEDIATE 1 intermediate-risk factor (cT2b–c / GG2–3 / PSA10–20) + GG1–2 + <50% cores positive | Radical prostatectomy, OR definitive EBRT or brachytherapy — WITHOUT ADT
external-beam radiotherapy · active surveillance acceptable in selected patients Hypofractionated and SBRT schedules are standard options
and shorten treatment substantially |
| UNFAVOURABLE INTERMEDIATE 2–3 intermediate-risk factors, OR GG3 (4+3), OR ≥50% cores positive | Radical prostatectomy + pelvic lymph-node dissection OR EBRT + SHORT-COURSE ADT (4–6 months) ± brachytherapy boost
the added ADT is exactly what the favourable / unfavourable split exists to decide |
| HIGH / VERY-HIGH risk high: cT3a, OR GG4–5, OR PSA>20. very-high: cT3b–T4, OR primary Gleason pattern 5, OR ≥5 cores GG4–5, OR ≥2 high-risk features | EBRT + LONG-COURSE ADT (18–36 months, commonly 24) ± brachytherapy boost OR radical prostatectomy + extended pelvic lymph-node dissection
usually needing adjuvant / salvage RT afterwards ADD AN ARPI (STAMPEDE)
androgen-receptor pathway inhibitor — abiraterone added to RT + ADT improves survival in very-high-risk / node-positive disease Include pelvic nodal radiotherapy where nodal risk is significant |
| 🔴 BIOCHEMICAL RECURRENCE after prostatectomy rising PSA, no metastases on imaging | 🔴 The commonest prostate clinic encounter SALVAGE RADIOTHERAPY to the prostate bed — start EARLY, at the lowest detectable rising PSA Add ADT (6–24 months per NCCN) for higher-risk features (GETUG-AFU 16) EARLY SALVAGE now preferred over adjuvant RT
equivalent outcomes with fewer men treated (RADICALS-RT) (RAVES) (GETUG-AFU 17) PSMA-PET should exclude distant disease before committing to bed-only salvage |
| 🔴 NON-METASTATIC (M0) CRPC rising PSA on castrate testosterone, imaging negative | 🔴 A distinct setting with its own approved drugs Treat when PSA doubling time ≤10 months
the high-risk group |
| METASTATIC HORMONE-SENSITIVE (mHSPC) volume decides intensity | ⚠ ADT ALONE IS OBSOLETE — everyone gets intensification DOUBLET (the floor) → ADT + an ARPI
abiraterone + prednisolone (LATITUDE) (STAMPEDE) · enzalutamide (ARCHES) (ENZAMET) · or apalutamide (TITAN) TRIPLET → ADT + docetaxel + ARPI
darolutamide (ARASENS) or abiraterone (PEACE-1) · category-1 preferred for HIGH-volume disease (synchronous or metachronous); also an option for LOW-volume if de-novo/synchronous, not if relapsed after prior local therapy LOW-volume → ADD RADIOTHERAPY TO THE PROSTATE — improves OS (STAMPEDE arm H)
not in high-volume disease |
| METASTATIC CRPC progression on castrate testosterone <50 ng/dL — confirm before calling it resistant | ARPI if not already used
⚠ ARPI→ARPI cross-resistance is substantial BRCA / HRR-mutated → PARP inhibitor
monotherapy after ARPI progression (PROfound) · or upfront COMBINED with an ARPI in treatment-naïve mCRPC: abiraterone+olaparib (PROpel) (all-comers), abiraterone+niraparib (MAGNITUDE) (BRCA-only per FDA label), enzalutamide+talazoparib (TALAPRO-2) (broader HRR label) ⚠ The biomarker result decides the pair
niraparib combo is BRCA-restricted; talazoparib combo covers the wider HRR panel Lutetium-177-PSMA-617 if PSMA-avid (VISION) Radium-223 for symptomatic bone-ONLY disease (ALSYMPCA)
no visceral mets ⚠ AGGRESSIVE-VARIANT / NEUROENDOCRINE
visceral spread, low PSA relative to burden, rapid progression → re-biopsy, treat as small-cell (platinum + etoposide) |
| ⚠ EMERGENCIES | 🔴 METASTATIC SPINAL CORD COMPRESSION — prostate is a leading cause
dexamethasone immediately + urgent whole-spine MRI + RT ± surgery. Treated in HOURS. BLADDER OUTFLOW OBSTRUCTION → catheterise, consider channel TURP ⚠ TESTOSTERONE FLARE
starting an LHRH AGONIST can worsen cord compression / obstruction → cover with an anti-androgen, or use an LHRH ANTAGONIST (degarelix / relugolix), which causes no flare |
| Setting | Treatment |
|---|---|
| Low-grade, non-invasive | Kidney-sparing where feasible
endoscopic (ureteroscopic) ablation, or segmental ureterectomy — especially distal ureter / solitary kidney ± intracavitary chemo |
| High-grade or invasive radical nephroureterectomy candidate | Radical nephroureterectomy with bladder cuff + a SINGLE post-op intravesical chemotherapy instillation
mitomycin — cuts bladder recurrence ADJUVANT platinum chemo (gemcitabine-platinum ×4) for pT2–T4 or pN+ (POUT)
the evidence-based standard — 5-yr disease-free survival 62% vs 45% with surveillance ⚠ TIMING TRAP — assess cisplatin fitness BEFORE surgery
nephroureterectomy removes a kidney and often drops CrCl below 60, making the patient permanently cisplatin-ineligible for the adjuvant course POUT supports · neoadjuvant cisplatin has NO phase-3 support in UTUC (unlike bladder) — decide the sequence deliberately, don't default to "give it adjuvant" and lose the window Cisplatin-unfit after surgery → adjuvant nivolumab (CheckMate-274)
trial eligibility included upper-tract disease |
| Metastatic | Treated as urothelial carcinoma → EV + pembrolizumab first-line
enfortumab vedotin — see Bladder, §3 |
| Setting | Treatment |
|---|---|
| Small renal mass / localised | Partial (nephron-sparing) nephrectomy where feasible
otherwise radical nephrectomy Elderly / comorbid with a small mass → active surveillance or ablation
cryo / radiofrequency |
| Resected, high-risk clear-cell intermediate-high/high-risk after nephrectomy (pT2 grade 4/sarcomatoid, pT3, pT4, or N+), or M1-NED after metastasectomy | Adjuvant pembrolizumab ×1 yr (KEYNOTE-564)
improves disease-free and overall survival (48-mo OS 91% vs 86%) · now an NCCN category 1 recommendation |
| Metastatic clear-cell — 1st line by IMDC risk | Intermediate / poor risk → ipilimumab + nivolumab (CheckMate-214) Any risk group → an ICI + TKI doublet
pembrolizumab + axitinib (KEYNOTE-426) · nivolumab + cabozantinib (CheckMate-9ER) · lenvatinib + pembrolizumab (CLEAR) Cytoreductive nephrectomy — NOT routine (CARMENA)
sunitinib alone was non-inferior in intermediate / poor-risk disease; an exception may exist for low-burden, single-risk-factor patients Metastasectomy for oligometastatic disease · SBRT / palliative RT for bone or brain mets |
| Metastatic clear-cell — later lines | VEGFR-TKI — cabozantinib, lenvatinib + everolimus, tivozanib
VEGF-receptor tyrosine kinase inhibitors Belzutifan after a PD-1/PD-L1 inhibitor + a VEGFR-TKI (LITESPARK-005)
a HIF-2α inhibitor — especially VHL-associated disease |
| Non-clear-cell | Lenvatinib + pembrolizumab (KEYNOTE-B61)
or nivolumab + cabozantinib, or cabozantinib alone · enrol in a trial where possible |
| Setting | Treatment |
|---|---|
| RESECTABLE no arterial contact; ≤180° SMV/portal-vein contact without contour irregularity | Surgery — Whipple (pancreaticoduodenectomy) or distal pancreatectomy → Adjuvant mFOLFIRINOX (PRODIGE-24)
modified 5-FU + folinic acid + irinotecan + oxaliplatin — median OS 53.3 vs 35.5 months over gemcitabine Unfit for FOLFIRINOX → gemcitabine + capecitabine (ESPAC-4) Neoadjuvant mFOLFIRINOX — increasingly used, especially with HIGH-RISK features
markedly elevated CA 19-9, large primary, regional lymphadenopathy, excessive weight loss / pain ⚠ Still unproven for STANDARD resectable disease (Alliance A021806)
the phase III RCT built to answer perioperative vs upfront-surgery-then-adjuvant is unreported; neoadjuvant here remains an NCCN option, not a proven survival standard |
| BORDERLINE RESECTABLE / LOCALLY ADVANCED reconstructable venous involvement, or abutting-to-encasing arterial contact | Neoadjuvant FOLFIRINOX or gemcitabine + nab-paclitaxel ± chemoradiation → re-stage for resection Borderline converts to resection in a real minority
every one deserves reassessment at a high-volume pancreatic surgery centre — not a reflexive "inoperable" |
| METASTATIC | NALIRIFOX (NAPOLI-3)
liposomal irinotecan + 5-FU/leucovorin + oxaliplatin — median OS 11.1 vs 9.2 months over nab-paclitaxel/gemcitabine Or conventional FOLFIRINOX (fit, good performance status), or gemcitabine + nab-paclitaxel (less fit) Germline BRCA1/2-mutant, non-progressing on ≥16 weeks of platinum → maintenance olaparib (POLO) MSI-high → pembrolizumab |
| Setting | Treatment |
|---|---|
| HGD or T1a MUCOSAL ≤2 cm, well/moderately differentiated, no ulceration, no LVI | ENDOSCOPIC RESECTION (EMR / ESD) — preferred over oesophagectomy or gastrectomy Barrett's-related → endoscopic resection of the visible lesion + RFA ablation of the residual Barrett's segment ⚠ T1b (submucosal), poor differentiation, or LVI → formal resection
nodal risk rises steeply |
| RESECTABLE OESOPHAGEAL SCC | Neoadjuvant chemoradiation → oesophagectomy (CROSS)
carboplatin AUC2 + paclitaxel 50 mg/m² weekly ×5 with 41.4 Gy in 23 fractions, then surgery SCC is the radiosensitive histology
pCR 49% (vs 23% in adenocarcinoma); median OS 81.6 vs 21.1 months Because of that, definitive chemoradiation is a legitimate curative alternative
see the organ-preservation row below |
| RESECTABLE OESOPHAGEAL / GOJ ADENOCARCINOMA | ① Perioperative FLOT (FLOT4)
docetaxel + oxaliplatin + 5-FU/leucovorin, 4 cycles pre- and 4 post-op; median OS 50 vs 35 months · ESMO increasingly favours this for GOJ / gastric-type adenocarcinoma ② Neoadjuvant chemoradiation → surgery (CROSS) ⚠ A genuine NCCN-vs-ESMO divergence, unresolved by head-to-head data
NCCN lists both |
| RESECTABLE GASTRIC ADENOCARCINOMA | Perioperative FLOT (FLOT4) + D2 lymphadenectomy at a high-volume centre ⚠ If they went straight to surgery with a D0/D1 resection and no perioperative chemo → adjuvant chemoradiation (INT-0116)
5-FU/leucovorin + 45 Gy; median OS 36 vs 27 months, but poorly tolerated — 32% grade 4 toxicity, 31% did not complete After an adequate D2 resection it adds little (ARTIST)
reserve it for the under-staged / under-resected patient |
| AFTER neoadjuvant chemoRT — RESIDUAL pathological disease i.e. not ypT0N0 | Adjuvant nivolumab ×1 year (CheckMate-577)
median DFS 22.4 vs 11.0 months ⚠ OS difference did NOT reach significance — this is a DFS-based standard |
| 🔴 ORGAN PRESERVATION — inoperable, declines surgery, cervical oesophagus, or SCC choosing preservation | DEFINITIVE CHEMORADIATION (RTOG 85-01)
cisplatin + infusional 5-FU concurrent with RT · 5-year OS 26–27% vs 0% for radiotherapy alone DOSE — DO NOT ESCALATE: 50.4 Gy in 28 fractions is the standard
(INT-0123) / (RTOG 94-05) tested escalation to 64.8 Gy and found NO gain — no survival difference, no better locoregional control, no QoL benefit In SCC, definitive chemoradiation may equal preoperative chemoRT + surgery
NCI PDQ ⚠ Locoregional failure is the weak point
~25% persistence, ~21% recurrence → these patients need structured endoscopic surveillance, not discharge Salvage oesophagectomy
for local persistence / isolated recurrence in fit patients at high-volume centres |
| 🔴 PERITONEAL-POSITIVE M1 staging laparoscopy: visible deposits OR positive cytology alone | Systemic therapy as for M1 — curative resection is NOT indicated ⚠ CRS/HIPEC remains INVESTIGATIONAL
trials only, at peritoneal-malignancy centres — (PHOENIX-GC) showed no OS difference; (GASTRICHIP) ongoing Positive cytology with no visible disease
a distinct, better-prognosis subgroup — practice varies |
| METASTATIC — FIRST LINE, biomarker-directed interrogate in this order | ① MSI-H / dMMR → pembrolizumab (KEYNOTE-158)
ORR 30.8% · ⚠ MSI status should also change your LOCALISED plan — perioperative chemotherapy does not improve survival in dMMR/MSI-H gastric cancer ② HER2-positive → trastuzumab + chemotherapy (ToGA)
IHC 3+, or 2+ with ISH amplification · add pembrolizumab if CPS ≥1 (KEYNOTE-811) ③ HER2-negative + Claudin 18.2-positive → zolbetuximab + CAPOX/mFOLFOX6 (SPOTLIGHT) (GLOW)
moderate-to-strong (2+/3+) membranous staining in ≥75% of cells · FDA-approved Oct 2024 ④ HER2-negative adeno → nivolumab + FOLFOX/CAPOX (CheckMate-649)
NCCN category 1 at CPS ≥5; median OS 14.4 vs 11.1 months · ⚠ DIVERGENCE: ESMO/EMA restrict to CPS ≥5; NCCN allows CPS 1–4 as category 2B · or pembrolizumab + chemo (KEYNOTE-859) at CPS ≥1 ⑤ Oesophageal SCC → nivolumab + chemo OR nivolumab + ipilimumab (CheckMate-648)
⚠⚠ scored as TUMOUR-CELL PD-L1 ≥1%, NOT CPS — a different denominator and an easy, dangerous error · or pembrolizumab + chemo (KEYNOTE-590), benefit concentrated at CPS ≥10 |
| ⚠ REGULATORY — affects every PD-1 row above | ⚠ June 2025 — FDA NARROWED pembrolizumab and nivolumab labels to PD-L1 CPS ≥1
in advanced gastric / GOJ / oesophageal cancer, following a September 2024 ODAC vote that benefit did not outweigh risk in PD-L1-negative disease — the older all-comers approvals no longer stand ⚠ "PD-L1 positive" is NOT a category
always state the NUMBER and the ASSAY (CPS vs tumour-cell %) |
| SECOND LINE | Ramucirumab + paclitaxel (RAINBOW)
median OS 9.6 vs 7.4 months — the standard doublet Taxane-unfit or neuropathic → ramucirumab alone (REGARD) HER2-positive → trastuzumab deruxtecan (DESTINY-Gastric04)
now the new standard in this line, beating ramucirumab+paclitaxel head-to-head (30% reduction in risk of death; median OS 14.7 vs 11.4 months) ⚠ Re-test HER2 at progression where feasible — it can be lost |
| THIRD LINE + | Trifluridine/tipiracil (TAGS)
median OS 5.7 vs 3.6 months · irinotecan is an accepted alternative |
| CDH1 CARRIER — hereditary diffuse gastric cancer, no cancer yet | Prophylactic total gastrectomy, conventionally from age 20
guideline range 20–30 If deferred → annual surveillance endoscopy with multiple random biopsies (Cambridge protocol)
from age 40, or 10 years before the youngest family case Women also need breast MRI from age 30
lobular breast cancer risk ⚠ Counsel with CURRENT figures
cumulative advanced gastric cancer risk by age 80 is ~10.3% (men) / 6.5% (women) — far lower than the historic 70–80% estimates, and it materially changes the consent conversation |
| RISK REDUCTION & EMERGENCIES | H. pylori is a causal risk factor — test and eradicate
including in first-degree relatives, and after endoscopic resection of early gastric cancer Malignant dysphagia → self-expanding metal STENT is the fastest palliation
palliative RT 20 Gy/5 or 30 Gy/10 · intraluminal brachytherapy gives longer dysphagia-free survival where life expectancy is longer ⚠ NEVER place a PEG in a potential oesophagectomy candidate
it compromises the gastric conduit — use jejunostomy or an NJ tube Bleeding tumour → endoscopic haemostasis, haemostatic RT, or embolisation |
| Setting | Treatment |
|---|---|
| Epithelial newly diagnosed | Cytoreductive surgery + chemo ± bevacizumab (GOG-0218) (ICON7)
primary, or interval after neoadjuvant carboplatin + paclitaxel ⚠ Low-grade serous is chemo-RESISTANT
a MEK inhibitor (trametinib) + hormonal therapy is preferred over chemo |
| Epithelial maintenance, after response | BRCA-mutated → PARP inhibitor monotherapy (olaparib) (SOLO-1)
or PARP + bevacizumab if bevacizumab was given with chemo (PAOLA-1) HRD-negative / unknown → bevacizumab alone preferred
PARP benefit is minimal here ⚠ Niraparib's RECURRENT-setting label is BRCA-only
FDA restricted 2023 — the PRIMA all-comer label applies to FRONTLINE maintenance only |
| Epithelial recurrence | Platinum-SENSITIVE (relapse >6 months after last platinum) → re-challenge a platinum doublet ± bevacizumab Platinum-RESISTANT (<6 months) → sequential single-agent chemo FRα-positive → mirvetuximab soravtansine (MIRASOL)
folate-receptor-α-directed antibody-drug conjugate |
| Germ-cell any stage | Fertility-sparing surgery (unilateral salpingo-oophorectomy) + BEP
bleomycin / etoposide / cisplatin — highly curable even when advanced Surveillance alone for stage I dysgerminoma / grade-1 immature teratoma |
| Sex-cord granulosa / Sertoli-Leydig | Surgery Advanced / recurrent → platinum-based chemo ± hormonal therapy
carbo-taxane or BEP ⚠ Long follow-up mandatory — granulosa relapses LATE
years to decades out |
| SCCOHT young women, SMARCA4-mutated | Aggressive multimodal — surgery + platinum chemo + RT
± high-dose chemo / stem-cell rescue · consider immunotherapy or EZH2-inhibitor trials Poor prognosis despite intensive treatment |
| Setting | Treatment |
|---|---|
| IN SITU / STAGE IA lentigo maligna, or T1a <0.8 mm non-ulcerated | WLE 0.5–1 cm
wide local excision No SLNB, no systemic therapy — surveillance only
<5% sentinel-node positivity |
| STAGE IB–IIA T1b–T3a, 0.8–2 mm | WLE 1–2 cm by depth SLNB — discuss / offer at T1b, indicated from T2a No approved adjuvant therapy at stage IIA — surveillance |
| STAGE IIB/IIC, node-negative T3b–T4b, >2 mm, ulcerated or thick | WLE 2 cm + SLNB Node-negative → adjuvant pembrolizumab ×1 year (KEYNOTE-716)
RFS HR 0.65 — first anti-PD-1 to significantly improve RFS and distant-metastasis-free survival at stage II · adjuvant interferon is historical — do not offer |
| 🔴 STAGE III, MICROSCOPIC sentinel-node positive | ⚠⚠ NO reflexive completion node dissection (MSLT-II)
MSLT-II / DeCOG-SLT: no melanoma-specific survival benefit, real lymphoedema cost → nodal ultrasound surveillance instead Adjuvant systemic ×12 months → nivolumab (CheckMate-238) or pembrolizumab (KEYNOTE-054) BRAF V600E/K → dabrafenib + trametinib (COMBI-AD) |
| 🔴 STAGE III, MACROSCOPIC, resectable palpable nodal disease | NEOADJUVANT IMMUNOTHERAPY, not upfront surgery — the standard-of-care shift Ipilimumab + nivolumab ×2 → response-adapted surgery ± adjuvant (NADINA)
12/24-mo EFS 85.2%/77.3% vs 61.7%/55.7%, HR 0.40; ~60% needed no further therapy after 2 cycles · cost: grade ≥3 AEs 29.7% vs 14.7% Alternative → neoadjuvant pembrolizumab ×3 → surgery → adjuvant (SWOG S1801)
2-yr EFS 72% vs 49% |
| UNRESECTABLE III / STAGE IV any BRAF status, first line | Immunotherapy first Ipilimumab + nivolumab (CheckMate-067)
10-yr OS 43% vs 37% (nivo alone) vs 19% (ipi alone) — longest checkpoint-inhibitor follow-up in any tumour Nivolumab + relatlimab — a less toxic doublet (RELATIVITY-047)
mPFS 10.2 vs 4.6 mo; mature OS benefit at 3 yr (median 51.0 vs 34.1 mo, 3-yr OS 54.6% vs 48.0%) · reasonable frailer-patient alternative |
| 🔴 STAGE IV, BRAF-mutant — sequencing | Immunotherapy FIRST, even in BRAF-mutant disease (DREAMseq)
ipi+nivo → BRAF/MEK at progression gave 2-yr OS 72% vs 52% vs the reverse sequence Reserve BRAF/MEK for AFTER immunotherapy
except when rapid cytoreduction is needed for symptomatic / high-burden / high-LDH disease BRAF/MEK regimens — encorafenib + binimetinib (COLUMBUS) · dabrafenib + trametinib (COMBI-v) · vemurafenib + cobimetinib (coBRIM)
cross-trial comparison only, not head-to-head |
| 🔴 BRAIN METASTASES (M1d) | Asymptomatic, steroid-free → systemic IO upfront (CheckMate-204)
ipi+nivo in active brain mets — intracranial response 55%, sparing / deferring RT Symptomatic → radiation oncology early; SRS standard
IO benefit falls to 22% — for limited / symptomatic disease |
| ACRAL / MUCOSAL a different disease | ⚠ KIT is the actionable target here, not BRAF
KIT mutations in up to 36% acral / 39% mucosal (BRAF/NRAS only ~10–15%) Exon 11/13 KIT mutations → imatinib
exon 17 or amplification do NOT respond BRAF/MEK less effective in mucosal (NF1-loss resistance); anti-PD-1 activity lower in both; worse prognosis |
| UVEAL HLA-A*02:01-positive, unresectable/metastatic | ⚠ No BRAF, poor checkpoint response, HEPATOTROPIC — do NOT treat like cutaneous melanoma Tebentafusp
gp100×CD3 T-cell-receptor bispecific — median OS 21.6 vs 16.9 mo, HR 0.68 · HLA typing gatekeeps eligibility |
| Setting | Treatment |
|---|---|
| EARLY, RESECTABLE T1–2 N0 | SINGLE MODALITY — surgery OR definitive RT
chosen by functional outcome, not efficacy · glottic T1 → RT or transoral laser surgery · oropharynx T1–2 → RT or transoral robotic surgery (TORS) ⚠ Avoid dual modality — doubles toxicity for no gain |
| LOCALLY ADVANCED, RESECTABLE T3–4a and/or N+ | Oral cavity → SURGERY + neck dissection first
adjuvant RT ± cisplatin by pathology · ⚠ oral cavity does poorly with primary chemoradiation — resect if possible Larynx / hypopharynx, organ preservation wanted → concurrent cisplatin-chemoRT (RTOG 91-11)
superior locoregional control + larynx preservation vs induction or RT alone ⚠ T4a with cartilage destruction → total laryngectomy, not preservation |
| LOCALLY ADVANCED, RESECTABLE — perioperative IO PD-L1 CPS ≥1 | Perioperative pembrolizumab — neoadjuvant → surgery → post-op RT ± cisplatin → adjuvant pembrolizumab (KEYNOTE-689)
median EFS 51.8 vs 30.4 mo, HR 0.73 · FDA-approved Jun 2025 — the first major advance in this setting in 20 years |
| LOCALLY ADVANCED, UNRESECTABLE T4b | Definitive concurrent cisplatin-chemoRT Cisplatin-ineligible → carboplatin/5-FU, weekly carboplatin-paclitaxel, or cetuximab-RT ⚠⚠ Cetuximab-RT is for the platinum-ineligible, p16-NEGATIVE patient ONLY
never substitute for cisplatin in a fit patient, and never as HPV de-escalation |
| 🔴 p16-POSITIVE OROPHARYNX de-escalation is NOT standard | Stage on the p16+ system Standard remains cisplatin-based chemoRT, or TORS + adjuvant ⚠⚠ Do NOT substitute cetuximab
(RTOG-1016) (5-yr OS 77.9% vs 84.6%) and (De-ESCALaTE) (2-yr OS 89.4% vs 97.5%) both showed cetuximab inferior, with no toxicity reduction · off-trial de-escalation is not standard |
| 🔴 POST-OP, HIGH RISK extranodal extension and/or positive margins | Post-op RT + concurrent cisplatin (EORTC 22931) (RTOG 9501)
extranodal extension and positive margins are THE trigger for adding chemo to post-op RT ⚠ Treat as indications, not a clean biological switch
updated pooled analysis: the OS benefit is confirmed, but ENE / margin status are NOT clean predictive biomarkers — patients without them may still benefit, and the cancer-specific mortality gain is partly offset by increased other-cause mortality |
| POST-OP, INTERMEDIATE RISK ≥2 nodes, pT3–4, close margins, PNI, LVI, level IV/V nodes | Post-op RT alone |
| 🔴 NASOPHARYNGEAL CARCINOMA a distinct, never-surgical entity | Early (T1N0) → RT alone II–IVA → concurrent cisplatin-chemoRT Locoregionally advanced III–IVA → induction gemcitabine + cisplatin ×3 → chemoRT
NCCN category 1 Adjuvant capecitabine ×1 yr in high-risk disease Recurrent / metastatic 1st line → PD-1 inhibitor + gem/cisplatin (JUPITER-02)
toripalimab — mOS 64.8 vs 33.7 mo · monitor plasma EBV DNA |
| SALIVARY / ADENOID CYSTIC CARCINOMA | Complete surgical resection is the backbone Post-op RT when margins can't be secured ⚠ Perineural invasion is ACC's signature — name the nerve, cover it to the skull base
a "clear margin" often isn't · metastasises late; 10-yr survival <50% across grades |
| RECURRENT / METASTATIC, 1st line PD-L1 CPS drives the choice — always state the number | CPS ≥1 → pembrolizumab monotherapy
CPS ≥20 gives the largest benefit — mOS 14.9 vs 10.7 mo CPS <1, or rapid response needed → pembrolizumab + platinum + 5-FU (KEYNOTE-048) EXTREME (platinum + 5-FU + cetuximab)
reserved for IO-ineligible patients |
| RADIOTHERAPY — dose & schedule modality detail — RT is primary curative therapy here, not an adjunct | Definitive → 70 Gy/35 fx + concurrent cisplatin
IMRT-SIB 66 Gy @ 2.2 Gy/fx boost · cisplatin 100 mg/m² q3wk ×3, or weekly 40 mg/m² ((ConCERT): weekly non-inferior for 2-yr locoregional control, better tolerated) Post-op → 44–54 Gy elective / 60–66 Gy high-risk bed ⚠ Total package time (surgery → RT completion) is prognostic
start promptly — don't let dental work delay it |
| Setting | Treatment |
|---|---|
| Early IA–IB2, small, low-risk | Surgery — cone biopsy or radical trachelectomy (fertility-sparing) for very early disease Or radical hysterectomy + pelvic lymphadenectomy
± sentinel-node mapping Very-low-risk → simple hysterectomy is non-inferior (SHAPE)
<2 cm, <10 mm invasion, no LVSI (lymphovascular space invasion) — less morbidity (urinary retention / incontinence) than radical surgery |
| Locally advanced IB3–IVA | Definitive concurrent chemoradiation (cisplatin) + BRACHYTHERAPY
the cornerstone — brachytherapy is essential for cure ⚠ Overall treatment time matters — complete within ~8 weeks
prolongation costs cure Add pembrolizumab to chemoradiation for HIGH-RISK disease (KEYNOTE-A18)
improves both PFS and OS · FDA-approved specifically for FIGO 2014 stage III–IVA (the trial also enrolled IB2–IIB node-positive, but that subset isn't in the approved label) ⚠ NOT PD-L1-selected — do NOT require a CPS here
CPS selection belongs to the METASTATIC setting (KEYNOTE-826), not to this row |
| Metastatic / recurrent | 1st line → platinum + paclitaxel + bevacizumab + pembrolizumab (KEYNOTE-826)
pembrolizumab requires PD-L1 CPS ≥1 per FDA label CPS <1 → platinum + paclitaxel + bevacizumab alone
no pembrolizumab Later line → tisotumab vedotin (innovaTV 301)
a tissue-factor-directed antibody-drug conjugate |
| Setting | Treatment |
|---|---|
| Early uterus-confined | Total hysterectomy + bilateral salpingo-oophorectomy ± sentinel / pelvic lymph-node assessment
the mainstay Adjuvant vaginal brachytherapy ± EBRT
external-beam radiotherapy — by risk factors AND molecular class POLE-mutated, stage I–II → consider OMITTING adjuvant therapy entirely (PORTEC-4a)
excellent prognosis (90–100%) regardless Fertility-sparing progestin therapy
only in select early low-grade cases |
| High-risk / advanced serous, high-grade, node-positive | Surgery + adjuvant chemo (carboplatin + paclitaxel) ± radiotherapy p53-abnormal (serous-like) → most intensive combined chemo + RT
this molecular group drives escalation toward maximal adjuvant treatment |
| Advanced / recurrent | 1st line → carboplatin + paclitaxel + immunotherapy → immunotherapy maintenance
dostarlimab (RUBY) or pembrolizumab (NRG-GY018) — both FDA-approved regardless of MMR status · benefit in ALL comers, but LARGEST in dMMR/MSI-high dMMR specifically → durvalumab ± olaparib maintenance is an alternative (DUO-E)
US FDA approval is dMMR-only; the pMMR + olaparib combination has EU but not US approval — confirm locally pMMR/MSS, progressed on prior systemic therapy → lenvatinib + pembrolizumab (KEYNOTE-775)
lenvatinib is a VEGFR (vascular endothelial growth factor receptor) tyrosine kinase inhibitor HER2-positive serous → add trastuzumab Low-grade ER-positive → hormonal (progestin) therapy |
| Setting | Treatment |
|---|---|
| ANAL MARGIN, T1N0 well/moderately differentiated, sphincter NOT involved | WIDE LOCAL EXCISION ALONE
1 cm margin, histological clearance >1 mm without damaging the sphincter · registry data show no 5-yr OS difference vs chemoRT (n=2,243; 85.3% vs 86.8%) If margin ≤1 mm → chemoradiation
or re-excise if feasible ⚠ Does NOT apply to anal CANAL tumours |
| ANAL CANAL, T1N0 | Concurrent chemoradiation — 5-FU + MITOMYCIN C + RT
~45–50.4 Gy to the primary Elective inguinal irradiation may be OMITTED (TROG 99.02)
inguinal failure without it is only 1.9% in T1N0 vs 12.5% in T2N0 — which is why elective nodal RT starts at T2 · ⚠ precise T1N0 dose band extrapolated: RTOG 0529 had no T1N0 stratum; confirm against current NCCN |
| T2N0 | 5-FU + mitomycin C + RT — dose-painted IMRT (RTOG 0529)
50.4 Gy/28 fractions to the tumour, 42 Gy/28 fractions to the elective nodal volume — INCLUDING elective inguinal nodes · (ACT II) independently validated 50.4 Gy/28 fx as the standard backbone |
| T3–T4 and/or NODE-POSITIVE | 5-FU + mitomycin C + RT at ESCALATED dose and EXPANDED volume (RTOG 0529)
this is what materially differs from T2N0 — 54 Gy/30 fractions to the tumour; 45 Gy/30 fractions to the elective nodal volume; involved nodes ≤3 cm → 50.4 Gy, >3 cm → 54 Gy Tumours >5 cm or node-positive carry the greatest locoregional relapse risk |
| WHY MITOMYCIN — the evidence, not the eponym | ⚠ "Nigro protocol" is an EPONYM, not a citation Mitomycin is NOT replaceable by cisplatin (RTOG 98-11)
mitomycin arm: 5-yr DFS 68% vs 58% for cisplatin, with lower colostomy failure Mitomycin/5-FU + 50.4 Gy/28 fx confirmed as standard (ACT II)
n=940, 2×2 factorial · maintenance chemotherapy conferred no benefit and is not justified Capecitabine + mitomycin + RT
an accepted substitution for infusional 5-FU |
| 🔴 HIV-POSITIVE modifier, not a separate pathway | Treat with the SAME curative-intent chemoradiation, expect the SAME outcomes
full-dose RT is feasible in the ART era CONTINUE ART concurrently — do not interrupt CD4 <200 is the actionable threshold
expect more acute / late toxicity · consider dose reduction or omission of mitomycin (some series cut chemo 25% while keeping full RT dose) · countervailing data show no toxicity difference above/below CD4 200 — treat <200 as a trigger for vigilance and MDT discussion, not automatic de-escalation ⚠ Median CD4 FALLS BY HALF during the first 3 months of chemoradiation
and stays below baseline through year 1 — maintain OI prophylaxis, don't misattribute the fall to HIV progression |
| 🔴 PERSISTENT / RECURRENT after chemoradiation | ⚠⚠ DO NOT BIOPSY OR OPERATE EARLY — regression is slow
this is the commonest management error Re-evaluate at 8–12 weeks with exam + DRE
a regressing lesion is OBSERVED, not resected 6 months from treatment start is when you declare a complete clinical response (ACT II)
persistent disease = residual disease at 26 weeks · act earlier only for progression during therapy or biopsy-proven residual disease Salvage = ABDOMINOPERINEAL RESECTION
with myocutaneous flap reconstruction + permanent colostomy — re-irradiation is not an option, so surgery IS the salvage · counsel realistically: poor disease-specific and recurrence-free survival |
| METASTATIC / inoperable locally recurrent | 1st line → carboplatin (AUC 5) + weekly paclitaxel (InterAACT) plus retifanlimab (POD1UM-303 / InterAACT-2)
OS 20 vs 12.3 months vs cisplatin/5-FU, with better toxicity · FDA approved 15 May 2025 — the first and only FDA-approved first-line IO regimen for advanced anal cancer; NCCN v1.2025 lists it category 2B THE COURSE — carboplatin AUC 5 d1 + paclitaxel 80 mg/m² d1, 8, 15 + retifanlimab 500 mg d1, on a 28-day cycle
chemo STOPS at 6 cycles; the PD-1 CONTINUES ALONE to 13 cycles total (≈1 year), then stops — finite, not "until progression" ⚠ Substituting another PD-1 — use EACH DRUG'S OWN approved dose
retifanlimab 500 mg q4wk (also has a 375 mg q3wk schedule); pembrolizumab 200 mg q3wk or 400 mg q6wk — never 500 mg · mg do NOT transfer between antibodies: potency, affinity and clearance differ, and each is dosed to SATURATE the PD-1 receptor, which is the real target ⚠ Equivalent at TARGET ENGAGEMENT ≠ proven clinical equivalence
both saturate PD-1 fully — pembrolizumab has a flat exposure–response across ~5–7.5× and saturates well below 200 mg (why 400 mg q6wk was approved on PK modelling alone); retifanlimab shows full sustained occupancy at every dose tested, half-life ~18 days. But only retifanlimab has the phase-3 in this disease — swapping PD-1s is a mechanistically sound class extrapolation, not an evidence-based equivalence. Say which you mean Retifanlimab monotherapy after platinum failure (POD1UM-202)
later lines: nivolumab (ORR 24%), pembrolizumab (ORR 17%, 42% stable disease) ⚠ Ulcerating anal primary + myelosuppressive chemo = perianal neutropenic-infection risk
sitz baths + bowel regulation · NO rectal instrumentation during the nadir (suppositories / enemas / DRE seed infection) · low threshold for review (abscess / Fournier's) · consider primary G-CSF to shorten the nadir · routine antibacterial prophylaxis is NOT indicated |
| RADIOTHERAPY — technique the delivery standard for every curative setting above | IMRT is standard (RTOG 0529)
cuts acute grade ≥2 GI/GU toxicity; comparable efficacy, no isolated nodal failures in elective volumes · 3D-conformal is no longer acceptable practice ⚠ Treatment breaks WORSEN outcome
manage toxicity aggressively — don't interrupt |
| Setting | Treatment |
|---|---|
| LOCALISED most subtypes, resectable | Wide excision, R0 margins = mainstay Radiotherapy (pre- or post-op) for >5 cm / deep / high-grade
to secure local control Adjuvant chemo (doxorubicin ± ifosfamide) is SELECTIVE
high-grade / large only, modest benefit |
| WELL-DIFFERENTIATED LIPOSARCOMA atypical lipomatous tumour; extremity/trunk | Wide excision alone — essentially non-metastasising
local recurrence is the real risk (drives re-excision), not systemic disease · no adjuvant chemo |
| RETROPERITONEAL mostly well-diff / dedifferentiated liposarcoma; local disease | Complete en-bloc (often multivisceral) resection at a specialist sarcoma centre
the dominant prognostic factor Local recurrence — not distant spread — defines it → RE-RESECTION is the mainstay at each recurrence ⚠ Radiotherapy is controversial (STRASS)
preop RT did not improve abdominal recurrence-free survival overall; a liposarcoma-subgroup / pooled signal supports it only in well-differentiated and G1–2 dedifferentiated liposarcoma, not G3 Systemic doxorubicin-based therapy is modest
reserved for unresectable / metastatic disease |
| MYXOID LIPOSARCOMA FUS-DDIT3; low round-cell % = low-grade | Radiosensitive AND chemosensitive
trabectedin particularly active Low-grade + R0 → surveillance only, no chemo ⚠ Surveillance must add spine / whole-body MRI
chest CT alone misses fat / bone relapse |
| ADVANCED / METASTATIC | Doxorubicin-based (± ifosfamide) 1st line Leiomyosarcoma → doxorubicin + trabectedin → trabectedin maintenance (LMS-04)
improved PFS and OS over doxorubicin alone Dedifferentiated liposarcoma → abemaciclib (SARC041)
a CDK4/6 inhibitor; CDK4 is amplified in >90% of well-diff / dediff LPS — the first positive phase 3 in DDLS (median PFS ~10 vs 1.5 mo) Later lines by histology
trabectedin (a marine-derived DNA-binding alkylator) · pazopanib (a VEGFR tyrosine kinase inhibitor — non-adipocytic only) · eribulin (a MICROTUBULE inhibitor — liposarcoma) · gemcitabine / docetaxel Resect isolated lung metastases (metastasectomy) |
| Setting | Treatment |
|---|---|
| CLASSIC / ENDEMIC no immunosuppression to reverse | Local therapy for cutaneous disease — RT, intralesional injection, cryotherapy Systemic chemo reserved for extensive / visceral disease |
| AIDS-RELATED, limited cutaneous | Start / optimise antiretroviral therapy (ART)
immune reconstitution alone often regresses KS Local therapy for cosmetically troubling lesions |
| AIDS-RELATED, advanced/visceral or ART-refractory progressive despite ART, extensive cutaneous, or lung/GI involvement | Pegylated liposomal doxorubicin (PLD) — 1st-line systemic
It is an ANTHRACYCLINE — doxorubicin encased in a PEG-coated liposome. The coating evades clearance → long circulation → the drug accumulates preferentially in KS lesions through their leaky vasculature. Dose in KS: 20 mg/m² IV every 2–3 weeks. ⚠ Much LESS cardiotoxic than conventional doxorubicin — but NOT zero: it still counts toward the CUMULATIVE anthracycline dose, so track it and get a baseline LVEF. Also causes less alopecia, nausea and myelosuppression than the conventional drug. ⚠ PLD has its own signature toxicities — not doxorubicin's
PALMAR-PLANTAR ERYTHRODYSAESTHESIA (hand-foot syndrome) is the dose-limiting toxicity — counsel on cooling, emollients, avoiding pressure/friction and heat; it drives dose delay and reduction. INFUSION REACTIONS (flushing, back/chest tightness, dyspnoea) are liposome-related rather than true allergy — run the first dose SLOWLY and they usually settle. Also stomatitis. Paclitaxel — 2nd line Pomalidomide + continued ART
an oral option for relapsed / refractory disease (NCCN-preferred subsequent therapy), including HIV-negative KS · continue ART throughout |
| IATROGENIC / TRANSPLANT-ASSOCIATED | 1st = REDUCE IMMUNOSUPPRESSION Switch to an mTOR inhibitor (sirolimus / everolimus)
antiangiogenic + anti-KS while sparing the graft Add pegylated liposomal doxorubicin if progressive despite this
an anthracycline — same drug, dosing and toxicities as the AIDS-related row above · ⚠ in a transplant recipient, keep the graft team in the loop and get a baseline LVEF before starting |
| Setting | Treatment |
|---|---|
| Symptomatic oedema / seizure any diagnosis | Dexamethasone for rapid relief
⚠ hold pre-biopsy if PCNSL is possible Seizure → antiepileptic
no routine seizure prophylaxis without a seizure history |
| BRAIN METASTASES | SRS (1–4 lesions) / WBRT (many) / surgery (solitary, accessible, symptomatic) + treat the primary
stereotactic radiosurgery · whole-brain RT ⚠ Poor performance status → best supportive care instead (QUARTZ)
WBRT adds little over steroids + supportive care in poor-PS patients CNS-penetrant systemic options by driver
vital when unfit for RT / surgery — EGFR-mutant lung → osimertinib · ALK → alectinib / lorlatinib · HER2+ breast → tucatinib combination or T-DXd · BRAF melanoma → dabrafenib + trametinib ± IO ⚠ HR+ breast
tamoxifen and AIs do cross the BBB usefully; abemaciclib has the best CNS penetration (phase II activity in HR+ brain mets) but is not a substitute for local therapy in bulky / symptomatic disease |
| GLIOBLASTOMA — fit IDH-wildtype | Stupp protocol — maximal safe resection → RT (~60 Gy) + concurrent temozolomide → 6 cycles adjuvant temozolomide
± tumour-treating fields MGMT-methylation predicts temozolomide benefit Bevacizumab at recurrence
symptom / oedema control only |
| GLIOBLASTOMA — elderly / frail | Short-course (hypofractionated) RT ± temozolomide MGMT-methylated → temozolomide alone is reasonable Poor PS → best supportive care |
| PILOCYTIC ASTROCYTOMA WHO grade 1 · children / young adults · cerebellum, optic pathway, brainstem | CIRCUMSCRIBED, not a diffuse glioma — gross-total resection is usually CURATIVE
the best-prognosis brain tumour in the section; do not counsel it like a glioma Residual / unresectable / progressing → BRAF-directed therapy, and the LESION TYPE picks the drug
KIAA1549-BRAF FUSION (the commonest) → MEK inhibitor alone (selumetinib / trametinib) — ⚠ a BRAF inhibitor can PARADOXICALLY ACTIVATE a fusion · BRAF V600E → dabrafenib + trametinib Alternatives where targeted therapy is unavailable: carboplatin-based chemo (esp. optic-pathway, young) · radiotherapy AVOIDED in the young if possible
decades of survivorship ahead — late RT effects matter more here than anywhere Dabrafenib + trametinib watch → PYREXIA (hold BOTH for fever) · LFTs · LVEF (echo) · eyes · skin |
| ASTROCYTOMA — IDH-mutant grades 2–4 · younger adults, seizures common | Maximal safe resection FIRST — every grade
extent of resection is prognostic; then the grade + risk decide what follows Grade 2, LOW-risk (<40 + gross-total resection) → observe, MRI surveillance
the one glioma you may watch after surgery Grade 2, HIGH-risk (≥40, or residual disease) → RT + adjuvant chemo (PCV or temozolomide) (RTOG 9802)
adding PCV to RT roughly doubled overall survival in high-risk low-grade glioma Grade 2, residual/recurrent, wanting to defer chemo/RT → VORASIDENIB (INDIGO)
an IDH1/2 inhibitor — PFS HR 0.39; the first targeted therapy here; delays chemo/RT · ⚠ hepatotoxicity — monitor LFTs Grade 3 → RT + adjuvant temozolomide (CATNON)
adjuvant TMZ after RT improves survival in non-co-deleted grade 3 Grade 4 IDH-mutant (or CDKN2A/B homozygous deletion → auto-grade 4) → treat along the GBM pathway
RT + temozolomide — the mutation still carries a better prognosis than true GBM |
| OLIGODENDROGLIOMA IDH-mutant + 1p/19q co-deleted | Resection → high-risk → RT + PCV
the best-prognosis diffuse glioma and the most chemo-sensitive — long-term survival with RT + PCV; the 1p/19q co-deletion is both the diagnosis and the chemo-sensitivity marker |
| MENINGIOMA | Observe if small / asymptomatic Surgery ± RT if symptomatic / growing |
| PRIMARY CNS LYMPHOMA (PCNSL) | High-dose methotrexate-based chemo ± rituximab — NOT primarily surgery Recognising it
periventricular; homogeneous enhancement, DWI-restricted, low perfusion; immunosuppressed / elderly Check HIV, slit-lamp eye exam, CSF |
| Frail / elderly / poor PS (ECOG 3–4) | Best supportive / palliative care
dexamethasone + comfort — fitness, not just the tumour, drives the plan |
| RADIOTHERAPY — dose & technique modality detail across the settings above | SRS — single-fraction, size-dependent dose, 1–4 metastases WBRT — fractionated for multiple lesions
hippocampal-avoidance reduces neurocognitive decline GBM (Stupp) — ~60 Gy/30 fx concurrent with temozolomide |
| Setting | Treatment |
|---|---|
| Low-risk, localised | Surgical excision, 4–5 mm margins = the standard Superficial BCC alternatives
topical imiquimod / 5-fluorouracil, cryotherapy, curettage + electrodesiccation |
| High-risk / facial ("H-zone") / recurrent | Mohs micrographic surgery
staged excision with complete margin assessment intra-operatively — highest cure rate and spares the most tissue |
| Radiotherapy | A genuinely curative alternative when surgery isn't
elderly / frail, anticoagulated, cosmetically difficult sites, or refusal Also ADJUVANT after excision
for perineural invasion, positive / close margins, extensive nodal disease ⚠ Avoid in Gorlin syndrome / xeroderma pigmentosum |
| 🔴 VERY-HIGH-RISK / borderline-resectable keratoacanthomatous rapid growth, in-transit mets, or surgery alone would cause major functional loss | Neoadjuvant cemiplimab before surgery
NCCN category 2B, both BCC and cSCC — after tumour-board discussion · emerging role, confirm local protocol before use |
| Locally advanced / metastatic BCC | Hedgehog-pathway inhibitor — vismodegib (ERIVANCE) or sonidegib (BOLT) On progression / intolerance → cemiplimab |
| Locally advanced / metastatic cSCC | Cemiplimab (EMPOWER-CSCC-1)
practice-changing, high response rates Pembrolizumab (KEYNOTE-629) an alternative ⚠ Transplant recipients — IO risks graft rejection
transplant-MDT decision; cetuximab / chemo / RT are the alternatives |
| 🔴 ADJUVANT — high-risk cSCC after surgery + radiotherapy | Adjuvant cemiplimab (C-POST)
reduces recurrence/death risk 68% vs placebo (HR 0.32) · FDA-approved Oct 2025, the first adjuvant immunotherapy in this disease · very recent — confirm local NCCN / formulary incorporation before treating |
| Setting | Treatment |
|---|---|
| PLEURAL — resectable early, epithelioid, fit — highly selected | Multimodal at an expert centre — lung-sparing pleurectomy/decortication (P/D) + systemic chemo ± radiotherapy ⚠ Surgery's role is controversial
MARS-2: adding extrapleural pneumonectomy did not help — centre- and patient-specific |
| PLEURAL — unresectable / metastatic 1st line | Nivolumab + ipilimumab (CheckMate-743)
first new standard in ~15 yr · biggest benefit in NON-epithelioid OR cisplatin (or carboplatin) + PEMETREXED ± bevacizumab
pembrolizumab + chemo is an alternative · ⚠ pemetrexed needs folate + B12 |
| PERITONEAL — peritoneum-confined resectable, adequate PS | CYTOREDUCTIVE SURGERY (CRS) + HIPEC
hyperthermic intraperitoneal chemotherapy — potentially long survival, NOT palliative; the option systemic chemo alone misses · ± perioperative systemic chemo 🔴 "Metastatic-looking" peritoneal disease deserves a surface-malignancy opinion BEFORE it is called incurable |
| PERITONEAL — unresectable multi-compartment (e.g. + pleural/skin), poor PS, or refractory | Systemic — platinum + pemetrexed, or nivolumab + ipilimumab
the IO doublet is active in peritoneal meso too Best supportive / palliative care
where multi-compartment or refractory ⚠ Mesothelioma SEEDS biopsy + drain tracts |
| Setting | Treatment |
|---|---|
| Localized, resectable | Surgery — R0, NO routine lymphadenectomy, do NOT rupture it
nodal spread is rare (skip the nodal surgery an adenocarcinoma would get) · intact-tumour handling is oncologic technique, rupture converts the case to high-risk HIGH-risk resected + imatinib-sensitive mutation → adjuvant IMATINIB ×3 years (SSGXVIII)
3 yr beat 1 yr on recurrence-free AND overall survival · do NOT give adjuvant imatinib to D842V / most SDH-deficient (insensitive) |
| Localized, morbid surgery GEJ, duodenum, rectum, or bulky | NEOADJUVANT imatinib → downsize → function-preserving surgery
the whole point is a smaller operation (sphincter, stomach, pancreas preserved) · ⚠ test the mutation FIRST — D842V will not shrink on imatinib (avapritinib or straight to surgery instead) |
| Metastatic / unresectable 1st line | IMATINIB 400 mg — and continue UNTIL PROGRESSION; never interrupt a responder (BFR14)
interruption → progression, even in long responders · KIT exon 9 → 800 mg PDGFRA D842V → AVAPRITINIB, not imatinib (NAVIGATOR) Limited/focal progression on TKI → treat the focal site (surgery/ablation) + CONTINUE the TKI
one resistant clone does not mean the drug has failed everywhere |
| On progression lines 2–4 | 2nd → SUNITINIB · 3rd → REGORAFENIB (GRID) · 4th → RIPRETINIB (INVICTUS)
fixed ladder, all kinase inhibitors · re-biopsy/molecular review where available — resistance mutations differ NTRK fusion (rare, wild-type) → larotrectinib / entrectinib |
| SDH-deficient young, gastric, multifocal | Surgery-led + surveillance — often indolent, TKI-poor
germline SDHx testing + family cascade · avoid reflex adjuvant imatinib |
| Setting | Treatment |
|---|---|
| EARLY — patch / plaque (IA–IIA) | SKIN-DIRECTED ONLY — systemic therapy is deliberately withheld
it adds toxicity without survival benefit at this stage · stage IA = essentially NORMAL life expectancy (most die with it, not of it); IB–IIA = long survival, commonly a decade or two, many never progress — counsel: a condition you live with, watched, for decades Phototherapy — narrowband UVB (patches/thin plaques) · PUVA (psoralen + ultraviolet A; thicker plaques)
UV kills the lymphocytes sitting in the epidermis · ⚠ cumulative PUVA carries its own skin-cancer risk → whole-skin surveillance Potent topical steroids · topical mechlorethamine gel · local radiotherapy for a solitary stubborn lesion
MF is exquisitely radiosensitive · itch control (emollients ± antihistamine/gabapentinoid) — itch severity tracks disease |
| REFRACTORY early / advancing | Gentle systemics: BEXAROTENE (oral retinoid) · interferon · low-dose methotrexate · HDAC (histone-deacetylase) inhibitors (vorinostat, romidepsin)
⚠ bexarotene's signature pair: HYPERTRIGLYCERIDAEMIA + CENTRAL HYPOTHYROIDISM (low TSH AND low T4 — check lipids + TFTs) Total-skin electron-beam therapy (TSEBT)
when the whole surface needs clearing · tumour-stage (IIB) disease steps the outlook down — median ~4–5 yr (historical series; varies between cohorts) |
| ADVANCED / blood / transformed | CD30-positive → BRENTUXIMAB VEDOTIN (ALCANZA)
anti-CD30 antibody-drug conjugate — watch neuropathy Blood involvement / Sézary → MOGAMULIZUMAB (MAVORIC) · extracorporeal photopheresis
anti-CCR4 antibody — watch rash (can mimic the disease); photopheresis suits erythrodermic disease Cytotoxic chemo LATE (gemcitabine, liposomal doxorubicin) — responses real but SHORT
chemo does not control CTCL durably — hence the biologic-first ladder Young + aggressive → allogeneic stem-cell transplant — the only potentially curative move
erythrodermic (III) ~3–5 yr · IV / Sézary median ~2–4 yr — historical-series figures, the reason transplant is on the table for the young |
| Setting | Treatment |
|---|---|
| MERKEL CELL — localized | Wide local excision + SLNB → adjuvant RT to the primary site
MCC is highly radiosensitive and recurs locally — the RT is not optional in most; node-positive → nodal dissection and/or nodal RT |
| MERKEL CELL — advanced / metastatic | IMMUNOTHERAPY FIRST LINE — avelumab (JAVELIN Merkel 200) or pembrolizumab (KEYNOTE-017)
durable responses in a cancer chemo cannot hold — the virus/UV biology is why IO works so well · chemo (platinum–etoposide, SCLC-style) ONLY when IO is contraindicated: responses are real but SHORT Surveillance is intense — recurrence risk is front-loaded |
| ADNEXAL CARCINOMAS sweat-gland / porocarcinoma / sebaceous / microcystic | Surgery-led: wide excision (or Mohs) ± node evaluation ± adjuvant RT for high-risk features
margins · perineural invasion · nodes Advanced/metastatic → NO established standard — platinum + taxane is the accepted approach; IO only with a documented hook (PD-L1 / MSI-H / high TMB)
the honest footing advanced adnexal disease is treated on ⚠ SEBACEOUS carcinoma → screen for Muir–Torre (Lynch)
MMR IHC on the tumour + family history — a skin diagnosis that can unmask a colon-cancer syndrome |
| CUTANEOUS ANGIOSARCOMA elderly scalp/face · post-RT breast · lymphoedema (Stewart–Treves) | Resectable → surgery + wide-field RT — accepting that margins are usually an illusion
it spreads through the dermis far beyond the visible edge — multidisciplinary from the start Advanced → PACLITAXEL — notably active in this one sarcoma
the taxane-sensitive vascular tumour; anthracycline-based chemo is the alternative · bleeding fungating lesions → haemostatic RT |
| DFSP | Wide excision (or Mohs) with generous margins — the whole game is local control
metastasis is rare; incomplete excision guarantees recurrence Unresectable / recurrent → IMATINIB
the COL1A1–PDGFB fusion puts the tumour under PDGF-receptor drive — imatinib blocks it; also used neoadjuvantly to shrink before surgery |
| Setting | Treatment |
|---|---|
| DIFFERENTIATED — localized papillary / follicular | Surgery: lobectomy (small, low-risk, confined) OR total thyroidectomy (larger, nodes, high-risk)
10-yr survival >90–95% — most patients die WITH this cancer, not of it Radioactive iodine (RAI, I-131) ablation for intermediate/high risk after TOTAL thyroidectomy
the tumour drinks the iodine — a therapy only differentiated disease can receive; low-risk usually skips it Levothyroxine at a TSH-SUPPRESSION target set by risk — relaxed as the years stay clean
a suppressed TSH costs AF + bone density long-term — the target is a standing decision, not set-and-forget Surveillance: thyroglobulin + anti-Tg antibodies + neck ultrasound
Tg is only interpretable after total thyroidectomy ± RAI; the antibodies invalidate the assay — always reported together |
| DIFFERENTIATED — recurrent / metastatic | RAI-avid → repeat RAI · slow asymptomatic disease can simply be WATCHED on suppression RAI-REFRACTORY + progressing → a multikinase VEGFR inhibitor: LENVATINIB (SELECT) or sorafenib (DECISION)
start for progression/symptoms, not reflexively · hypertension + proteinuria are the toll Driver-matched: RET fusion → selpercatinib (a selective RET inhibitor) (LIBRETTO-001) · NTRK fusion → larotrectinib / entrectinib |
| MEDULLARY (MTC) | Total thyroidectomy + central node dissection — surgery is the only cure
NO RAI (C cells take no iodine) · NO TSH-suppression benefit — replacement dosing only · phaeochromocytoma excluded FIRST Markers: calcitonin + CEA — their DOUBLING TIMES carry the prognosis Advanced → RET-mutant: selpercatinib (LIBRETTO-001) · alternatives vandetanib / cabozantinib (multikinase inhibitors)
vandetanib → QT prolongation · germline RET-positive → family cascade testing (MEN2: phaeo + hyperparathyroidism) |
| ANAPLASTIC (ATC) | AIRWAY FIRST — then molecular testing the same day: BRAF V600E (~40%) → dabrafenib + trametinib
the one lever that has changed this disease — days matter Otherwise: surgery only if truly resectable + chemoradiation (taxane-based) in the fit · early palliative-care involvement for most
median survival historically ~6 months — goals-of-care honesty from the first visit |
⚠ ECOG = WHO = Zubrod — the SAME 0–4 scale, three names (guidelines write "ECOG/WHO PS"; if a colleague says "WHO score 3" they mean ECOG 3). Karnofsky (KPS) is the separate 0–100 scale (10-point steps; 100 = normal). Performance status is THE gate for treatment fitness — it decides systemic therapy vs best supportive care, often more than the tumour itself.
| ECOG / WHO | Meaning | ≈ Karnofsky |
|---|---|---|
| 0 | Fully active, no restriction. | 90–100 |
| 1 | Restricted in strenuous activity but ambulatory; can do light work. | 70–80 |
| 2 | Ambulatory, self-caring, up >50% of waking hours, but cannot work. | 50–60 |
| 3 | Limited self-care, in bed/chair >50% of waking hours. | 30–40 |
| 4 | Completely disabled, bedbound. | 10–20 |
Rule of thumb: 0–1 (KPS ≥70) → fit for systemic therapy; 2 (KPS 50–60) → borderline / attenuate; 3–4 (KPS ≤40) → usually best supportive care.
| Term | Definition |
|---|---|
| CR — complete response | All target lesions disappear. |
| PR — partial response | ≥30% decrease in summed target-lesion diameters. |
| SD — stable disease | Neither PR nor PD. |
| PD — progressive disease | ≥20% increase (and ≥5 mm), or any new lesion. |
⚠ Treating a curable metastatic cancer palliatively is one of the gravest errors in oncology. Some cancers are curable even when widely metastatic, and they must be treated with full-dose curative intent: GERM-CELL / testicular (>80% cured even poor-risk, and still curable at relapse — see §6) · Hodgkin lymphoma · aggressive lymphomas (DLBCL) · gestational trophoblastic neoplasia (curable even with widespread mets) · most paediatric cancers.
WHY the difference: these tumours are intrinsically, exquisitely chemosensitive — germ-cell tumours largely retain wild-type p53 and undergo apoptosis readily after DNA damage, so there is no resistant reservoir to select for. Most epithelial solid tumours behave the opposite way.
WHY metastatic epithelial cancer is usually NOT curable: ① burden — a 1 cm lesion is ~10⁹ cells, and undetectable micrometastases are already seeded everywhere; ② clonal heterogeneity — treatment applies Darwinian selection, and resistant subclones pre-exist in proportion to burden (Goldie-Coldman); ③ DORMANCY — disseminated cells sit quiescent in niches (classically bone marrow in breast cancer) for years-to-decades, and chemo kills dividing cells, so quiescent cells survive — this is why breast cancer relapses at 10–20 years; ④ sanctuary sites (CNS/blood-brain barrier); ⑤ immune evasion already selected for.
⚠ BUT "incurable" is softening at the edges: OLIGOMETASTATIC disease treated with local therapy (metastasectomy/SBRT) produces genuine long-term survivors — resected colorectal liver mets, bone-only breast, sarcoma lung mets, oligomet RCC; and immunotherapy now yields a durable plateau in melanoma/NSCLC that looks like functional cure in a minority. The practical model for metastatic HR+ breast or CML-like disease is CHRONIC CONTROL over many years, not imminent death.
A known benign liver or lung lesion must NOT be read as a metastasis on the staging scan — that error turns a curable cancer into a false "stage IV" and changes the whole plan. Common benign mimics: liver — haemangioma, focal nodular hyperplasia, hepatocellular adenoma (HCA), simple cysts, biliary hamartomas; lung — granuloma, hamartoma. Rule: flag any pre-existing lesion to radiology explicitly as known, long-standing, stable and compare against old imaging; if it is solitary/equivocal and its interpretation would change management, get tissue or dedicated characterisation (MRI/contrast) rather than upstage on assumption. ⚠ HCA is oestrogen-driven (grows with OCP/pregnancy; rupture risk if >5 cm) — so in an HR+ breast cancer it also argues against tamoxifen (a partial hepatic oestrogen-agonist) and toward an aromatase inhibitor.
PREVENT, don't rescue — schedule the antiemetics BEFORE chemo, not PRN. Two things drive the choice: the regimen's emetogenic RISK (table) and the PHASE you're covering — ACUTE (0–24 h, serotonin/5-HT3-driven → 5-HT3 + steroid) · DELAYED (days 2–4/5, substance-P/NK1-driven → the NK1 + steroid ± olanzapine phase; classic with cisplatin, AC, carboplatin) · ANTICIPATORY (a LEARNED reflex before the next cycle → benzodiazepine, but the real fix is good control from CYCLE 1) · BREAKTHROUGH (nausea despite prophylaxis → add a DIFFERENT class, given ROUND-THE-CLOCK not PRN).
| Emetogenic risk | Prophylaxis (acute + delayed) |
|---|---|
| HIGH (>90%) cisplatin · AC (anthracycline + cyclophosphamide) · carboplatin AUC ≥4 (reclassified to HIGH) · high-dose ifosfamide · dacarbazine | FOUR DRUGS: NK1 + 5-HT3 + dexamethasone + OLANZAPINE — olanzapine is now part of the standard regimen, not an optional extra. |
| MODERATE (30–90%) oxaliplatin · carboplatin <AUC4 · irinotecan · anthracycline alone · cyclophosphamide | 5-HT3 + dexamethasone ± NK1 (add the NK1 at the higher end / for delayed-prone agents like oxaliplatin). |
| LOW (10–30%) taxanes · gemcitabine · 5-FU · etoposide · pemetrexed | Single agent — dexamethasone, OR a 5-HT3, OR metoclopramide. |
| MINIMAL (<10%) most immunotherapy · many oral TKIs · bleomycin · vinca alkaloids | None routine — treat only if it actually happens. |
THE AGENTS + typical adult doses (local order-set governs — confirm your unit's protocol):
• 5-HT3 (serotonin) antagonist — ondansetron 8–16 mg IV / 8 mg PO · granisetron 1 mg IV (or transdermal patch) · palonosetron 0.25 mg IV (long half-life → also helps DELAYED). Best for ACUTE. SE: constipation, headache, QT prolongation.
• NK1 (neurokinin-1) antagonist — aprepitant 125 mg PO day 1 → 80 mg PO days 2–3 · fosaprepitant 150 mg IV day 1 (single dose covers 3 days) · NEPA (netupitant + palonosetron) = one oral dose. Covers DELAYED. ⚠ aprepitant inhibits CYP3A4 → reduce the dexamethasone dose when co-given; also interacts with warfarin.
• Dexamethasone — 12 mg IV/PO day 1 (range 8–20), then 8 mg PO daily days 2–4 for delayed. Broad benefit, acute + delayed. SE: hyperglycaemia, insomnia, gastritis, mood.
• Olanzapine (atypical antipsychotic, blocks multiple receptors) — 5–10 mg PO at night, days 1–4 (5 mg = similar efficacy, less sedation). Excellent for DELAYED + BREAKTHROUGH. SE: sedation (give nocte), increased appetite.
• Dopamine antagonists — the BREAKTHROUGH / prokinetic drugs — metoclopramide 10–20 mg PO/IV every 6–8 h · prochlorperazine 10 mg · haloperidol 1–2 mg. ⚠ EXTRAPYRAMIDAL reactions (acute dystonia, akathisia) — especially in the YOUNG — keep courses short.
• Benzodiazepine — lorazepam 0.5–1 mg the night before + morning of, for ANTICIPATORY nausea.
HOW IT ACTUALLY RUNS — IV in the chair, then pills for home:
① ACUTE — in the infusion unit, ~30 min BEFORE chemo (mostly IV): the 5-HT3 (IV) + dexamethasone (IV) + the NK1 (fosaprepitant IV, or aprepitant PO) ± olanzapine. ← "the steroid and the injections before chemo."
② DELAYED — take-home ORAL, days 2–4: dexamethasone PO + aprepitant PO (days 2–3 if the oral form was used) + olanzapine PO. ← "the pills for home."
③ BREAKTHROUGH — PRN at home if it breaks through: metoclopramide (± prochlorperazine / olanzapine / lorazepam) — and once it breaks through, give it round-the-clock, not only when nauseated.
🔴 THE COMMON FAILURE — seen with P1 (18M on cisplatin, 23 Jul): the take-home breakthrough (metoclopramide) simply wasn't taken → vomiting. Cisplatin is highly emetogenic with strong DELAYED emesis peaking days 2–3 — the home pills are not optional, and metoclopramide has to actually be taken. ⚠ Poor control in cycle 1 breeds ANTICIPATORY nausea for every future cycle — get it right the first time. Non-drug: small bland meals, hydration, ginger, avoid strong smells.
Filgrastim / pegfilgrastim — stimulates neutrophil recovery. Primary prophylaxis if the regimen's febrile-neutropenia risk is ≥20% (or a high-risk patient); secondary prophylaxis after a febrile-neutropenia episode. Not used to treat uncomplicated neutropenia without fever.
⚠ TIMING — start ≥24 h AFTER the last myelosuppressive dose, never concurrently (G-CSF given during chemotherapy deepens the nadir). With multi-day regimens count from the LAST day (BEP: EP runs d1–5, so G-CSF starts d6 at the earliest).
WHICH ONE — the schedule decides: PEGFILGRASTIM = one 6 mg SC dose per cycle, given ~24–72 h after chemo finishes (not same-day), and it needs ~12–14 days before the next cytotoxic dose → fits q2–3-weekly regimens (incl. dose-dense q14d, given d2). ⚠ NOT suitable for WEEKLY chemotherapy — there is no clear window between doses; use FILGRASTIM instead: daily SC from 24–72 h post-chemo, continued until ANC recovers past the nadir (typically ~5–7 days), stopping ≥24 h before the next dose.
💰 WHEN THE INSURER REFUSES PEGFILGRASTIM — the escalation ladder, in order: ① ask for the BIOSIMILAR — a refusal is usually a formulary brand preference, not a refusal of the class, and the biosimilar is frequently covered when the originator isn't. ② If still refused, substitute DAILY FILGRASTIM ×5–7 days per cycle — same class, same job, far cheaper; the trade is 5–7 injections instead of one. ③ ⚠ WHAT MUST NOT HAPPEN IS A DOSE REDUCTION. If the regimen met the ≥20% threshold, the answer to "no G-CSF" is a different G-CSF, never less chemotherapy — above all in NEOADJUVANT / CURATIVE intent, where dose intensity drives pCR (and pCR vs residual disease then decides adjuvant escalation, e.g. T-DM1 (KATHERINE)). An access problem must not be allowed to become an oncological decision.
| Cancer | Marker(s) |
|---|---|
| Breast | CA 15-3 (a breast marker), CEA |
| Colorectal | CEA |
| Pancreas / biliary | CA 19-9 (falsely low if Lewis-negative; raised by biliary obstruction) |
| Ovarian | CA 125 (ovarian marker) |
| Prostate | PSA |
| Germ cell (testicular) | AFP, β-hCG, LDH |
| Hepatocellular | AFP |
Limits: useful for monitoring trends/response, not for diagnosis; confirm progression with imaging, not a single rising value.
What it is: fragments of tumour DNA shed into the bloodstream, detected from a blood test — no tissue needed. Distinct from the protein tumour markers above (CEA/CA125): ctDNA reads the tumour's DNA, so it is far more specific and can be tracked at much lower disease burden.
| Use | What it does |
|---|---|
| ① MRD (molecular / minimal residual disease) | Detects microscopic disease remaining after curative-intent treatment, when imaging is clear. Best established in colorectal (post-op adjuvant decisions), and now randomised-proven in urothelial post-cystectomy (below) + emerging in lung/breast. |
| ctDNA-GUIDED THERAPY — the first randomised proof (IMvigor011, ESMO 2025 / NEJM) | The trial that moved ctDNA from prognostic marker to TREATMENT-SELECTION TOOL. Post-cystectomy MIBC with no radiographic disease, entered surveillance 6–24 weeks post-op, serial tumour-informed Signatera for up to 1 year. ctDNA-POSITIVE → randomised 2:1 to atezolizumab 1680 mg q4wk ×12 cycles vs placebo → significantly improved DFS AND OS. ctDNA-NEGATIVE, given NO adjuvant therapy (n=357): DFS 95.4% at 1 yr, 88.4% at 2 yr — the first randomised evidence that a ctDNA-negative patient can be SAFELY OBSERVED rather than treated. → The principle generalises: TESTING TO SELECT beats TREATING EVERYONE. ⚠ But settle the decision rule BEFORE sending it — "what will I do with each result?" A negative that wouldn't change management is an anxiety generator; the test earns its place only if you would ACT on a positive. |
| ⚙ PRACTICAL — tumour-informed assays | Signatera and similar are TUMOUR-INFORMED — the assay is BUILT from the patient's archival tumour tissue. So: confirm adequate archival tissue exists, and ⚠ in a patient with MORE THAN ONE PRIMARY, SPECIFY WHICH TUMOUR the assay is keyed to — otherwise you do not know which cancer you are tracking. |
| ② Surveillance | A RISING ctDNA can precede radiological relapse by months → earlier intervention. |
| ③ Genotyping ("plasma-first") | Finds targetable mutations without tissue — when the biopsy is inadequate, unsafe, or too slow. e.g. EGFR (lung) · ESR1 / PIK3CA (breast, to switch endocrine therapy). |
| ④ Response monitoring | Falling ctDNA = responding; persistence/rise = resistance. |
⚠ Interpretation: POSITIVE = high risk of relapse → investigate/act. NEGATIVE ≠ zero risk — sensitivity varies by assay, and low-shedding tumours + CNS disease are frequently missed (the blood-brain barrier limits shedding). A negative plasma genotype does NOT exclude a mutation → reflex to TISSUE if plasma is negative but suspicion is high. ctDNA complements, does not replace, imaging; interpretation is assay- and tumour-specific.
| System | What it grades / how |
|---|---|
| Child-Pugh (A / B / C) | Liver function in cirrhosis — from bilirubin, albumin, INR (international normalised ratio), ascites, encephalopathy. A = preserved (required for systemic therapy in liver cancer); C = poor (best supportive care). |
| IGCCCG (good / intermediate / poor) | Metastatic germ-cell (testicular) risk — from marker levels + primary site + non-pulmonary visceral spread. Sets BEP cycles (3 vs 4) and prognosis. |
| Gleason / ISUP grade group | Prostate aggressiveness on biopsy. Two commonest patterns, each 3–5, reported primary + secondary (e.g. 3+4=7); the FIRST number dominates → 3+4 (GG2) is better than 4+3 (GG3). Gleason 6–10 → ISUP grade group 1–5. → full grading + risk stratification is in Prostate (§7). |
| CTCAE (Common Terminology Criteria for Adverse Events) | How treatment toxicity is graded 1–5. What sets the grade = symptom severity + intervention needed + effect on daily function: 1 mild, no treatment (observe); 2 moderate, needs some treatment, limits instrumental activities (cooking, errands); 3 severe — needs hospitalisation or limits self-care (bathing, dressing, feeding), not immediately life-threatening; 4 life-threatening, urgent intervention; 5 death. The 2→3 jump (errands vs basic self-care / hospital) is what makes a toxicity "high-grade" and triggers holding/stopping a drug. Each side-effect has its own cut-offs (e.g. diarrhoea: grade 1 = <4 extra stools/day, 2 = 4–6, 3 = ≥7 or incontinence/hospital). |
The drug entries in Part C point here rather than repeat the numbers. General action rule: most toxicities — hold until it recovers to ≤ grade 1, then resume; a grade 3–4 event (or a recurrent grade 2) means dose-reduce on restart, except in curative-intent regimens where you delay-to-recovery + support rather than dose-reduce (germ-cell, many lymphomas). The exact reduction is regimen-specific.
| Toxicity | Grade 1 | Grade 2 | Grade 3 | Grade 4 / action trigger |
|---|---|---|---|---|
| Neutropenia (ANC ×10⁹/L) | 1.5–LLN | 1.0–1.5 | 0.5–1.0 | <0.5 · fever + ANC <0.5 = neutropenic sepsis → antibiotics within 1 h |
| Thrombocytopenia (×10⁹/L) | 75–LLN | 50–75 | 25–50 | <25 (bleeding risk → hold, transfuse if <10 or bleeding) |
| Anaemia (Hb g/L) | 100–LLN | 80–100 | <80 (transfuse by symptoms, not a number) | life-threatening |
| Peripheral sensory neuropathy | asymptomatic / mild | moderate, limits instrumental ADL (buttons, keys) | severe, limits self-care | oxaliplatin: persistent G2 → reduce; G3 → stop. Coasts after stopping |
| Diarrhoea (stools/day over baseline) | <4 | 4–6 | ≥7, incontinence, or hospitalisation | life-threatening · irinotecan: loperamide, and atropine for the ACUTE cholinergic type |
| Mucositis / stomatitis | mild, no pain | moderate pain, not limiting intake | severe pain, limiting oral intake | life-threatening · 5-FU / methotrexate / everolimus |
| Hand-foot (palmar-plantar) | painless skin change | painful, limits instrumental ADL | severe, limits self-care | — · capecitabine, liposomal doxorubicin → hold + dose-reduce, emollients / urea cream |
| Transaminases (AST/ALT) | <3× ULN | 3–5× | 5–20× | >20× · a MILD rise on FOLFOX is expected (oxaliplatin sinusoidal effect) — not a reason to stop |
| IHC score | FISH (only if 2+) | Category | Means |
|---|---|---|---|
| 3+ | — | HER2-positive | Full anti-HER2 therapy |
| 2+ | Amplified | HER2-positive | Full anti-HER2 therapy |
| 2+ | Not amplified | HER2-low | T-DXd eligible |
| 1+ | — | HER2-low | T-DXd eligible |
| 0 with faint / incomplete staining | — | HER2-ultralow | T-DXd eligible (HR+, post-endocrine) |
| 0, no staining | — | HER2-negative | No HER2 target |
| Emergency | Recognise → do |
|---|---|
| Febrile neutropenia | ANC (absolute neutrophil count) <0.5 + temperature ≥38.3 °C (or ≥38 sustained) → blood cultures + broad-spectrum anti-pseudomonal antibiotics within 1 hour (don't wait for counts). Risk-stratify (MASCC score); G-CSF if high-risk; escalate to antifungal/antiviral if persistent. |
| Tumour lysis syndrome (TLS) | Cells burst → contents spill: ↑potassium (the lethal one — arrhythmia), ↑phosphate → which binds calcium → ↓CALCIUM (hypo-, NOT hyper-), ↑uric acid (nucleic-acid breakdown) → AKI (urate + calcium-phosphate deposition). Cairo-Bishop (Cairo & Bishop, Br J Haematol 2004 — an academic classification, NOT a guideline body; since adopted/referenced by NCCN / ESMO / BSH. Regulators like DOH don't ratify diagnostic criteria — international guideline adoption is what gives it authority): Laboratory TLS = ≥2 of ↑urate / ↑K / ↑phosphate / ↓Ca, from 3 d before to 7 d after chemo. Clinical TLS = lab TLS + AKI, arrhythmia or seizure. ⚠ Cairo-Bishop DEFINES TLS — it says nothing about risk/triggers (risk stratification = the separate Coiffier 2008 JCO consensus / NCCN). TRIGGERS — risk is DISEASE-driven (bulk × proliferation × chemosensitivity), not drug-driven. But named culprits: venetoclax (BCL-2 inhibitor in CLL — notorious; mandates a dose RAMP-UP + prophylaxis) · rituximab (bulky CLL/lymphoma) · STEROIDS ALONE (can trigger it in lymphoma/leukaemia before any chemo — easily forgotten) · cytotoxic chemo in Burkitt/ALL/high-grade lymphoma · CAR-T / bispecifics. WHO ACTUALLY GETS IT: high tumour burden + rapidly proliferating + chemo-sensitive → Burkitt, ALL, high-grade/aggressive lymphoma, AML with high WBC; usually after starting chemo (spontaneous mainly in Burkitt/leukaemia). RARE in solid tumours (only bulky chemo-sensitive ones — small-cell, germ cell). ⚠⚠ THE OVER-CALL TRAP (the recurring inpatient consult): an isolated ↑uric acid is NOT TLS. High urate is common and usually gout, dehydration, CKD, diuretics, or diet. TLS needs the right tumour (high-turnover heme malignancy) + the right timing (peri-chemo) + the whole constellation (↑K, ↑phos, ↓Ca, ↑urate ± AKI) — not one number. Ask those three questions before calling TLS. Manage: IV hydration (the backbone) + allopurinol (prevention — blocks formation) or rasburicase (high-risk/established — destroys existing urate); correct electrolytes; no routine alkalinisation; renal/ICU input. |
| Malignant spinal cord compression (MSCC) | New back pain + neurology (weakness, sensory level, bladder/bowel change) → urgent whole-spine MRI + high-dose dexamethasone now → radiotherapy or surgical decompression within 24 h. Time = function. |
| SVC (superior vena cava) obstruction | Facial/arm swelling, distended neck veins, dyspnoea → CT; treat the cause (steroids, chemo/RT; endovascular stent if severe). |
| Hypercalcaemia of malignancy | Confusion, polyuria, constipation, AKI → aggressive IV fluids + a bisphosphonate (zoledronic acid) or denosumab (denosumab if renal impairment or bisphosphonate-refractory); treat the cancer. Steroids if lymphoma/myeloma-related. ⚠ ALWAYS THE CORRECTED CALCIUM (adjusted for albumin) — a hypoalbuminaemic cancer patient can be significantly hypercalcaemic at a normal total calcium. AND IT IS A REVERSIBLE CAUSE OF A DROWSY, CONFUSED PATIENT — check it BEFORE concluding someone cannot participate in their own decisions. Treating it can restore enough lucidity for the patient to take part in a goals-of-care conversation. Assessing capacity during untreated hypercalcaemia (or uraemia) is assessing a reversible state. |
| Raised intracranial pressure / brain metastases | Headache (worse on lying / in the morning), focal deficit, vomiting → dexamethasone + imaging → radiotherapy/surgery; antiepileptics only if seizures occur. |
The prognostic anchor comes first — it is what makes the conversation honest. In solid oncology, malignant hepatic dysfunction (rising bilirubin from extensive liver metastases) is one of the strongest short-term prognostic markers there is — median survival typically WEEKS. Add renal impairment and this is multi-organ failure from progressive disease. The conversation is then not "would she want CPR one day" but "she is dying now, and this is how we look after her." Framing it as a hypothetical is the commonest way these conversations fail.
| Step | What to do |
|---|---|
| ① Exclude the reversible first | Before accepting the trajectory — or judging capacity — check corrected calcium (hypercalcaemia: treatable, causes the confusion AND the AKI), biliary obstruction vs met infiltration (obstruction is stentable by ERCP/PTC and is the one finding that changes the trajectory rather than the comfort plan), and the cause of the renal impairment (pre-renal · obstructive/hydronephrosis · hypercalcaemia · drugs — the first two are actionable). |
| ② CPR outcome data, not opinion | Survival to discharge after in-hospital arrest in metastatic cancer with multi-organ failure and poor performance status is very low — low single digits at best. The point is not that we are withholding something that would work; it is that it does not work here, and attempting it means the final minutes are chest compressions rather than family. |
| ③ DNR ≠ withdrawal of care | The single commonest misunderstanding, especially for families. Say explicitly what CONTINUES: analgesia, antiemetics, oxygen, comfort-directed fluids, nursing, being kept clean and out of pain, presence. "Allowing a natural death" lands far better than "not for resuscitation", which families hear as abandonment. |
| ④ ⚠ UAE process — not a bedside call | DNR in the UAE sits under the Medical Liability Law (Federal Decree-Law 4/2016, as amended) and requires a formal, documented, consultant-level process — materially different from UK/US bedside practice. ⚠ The exact current requirement (signatories / committee) is NOT verified here — follow your institution's written policy and let the consultant lead it. Do not use this line as the authority. |
| ⑤ Whose conversation is it | If the patient has capacity, it is with HER. Families here frequently request non-disclosure — the governing principle is the patient's own stated information preference. Ask what she wants to know before deciding what to tell whom. |
| ⑥ Anticipatory prescribing | The thing that gets missed until 3am. Write up PRN cover NOW for pain · breathlessness · respiratory secretions · agitation/terminal restlessness · nausea, dosed for renal and hepatic impairment. Involve palliative care early, and stop every drug not serving comfort. |
| ⑦ ⚠ Opioids in organ failure | Morphine is renally cleared and its active metabolites (M3G/M6G) accumulate → sedation, confusion, myoclonus (the earliest warning — teach the family to report the twitching), respiratory depression. Prefer fentanyl or oxycodone; reduce dose and lengthen the interval. Hepatic impairment slows clearance of most opioids further. |
| Biomarker | Tumours | Drug |
|---|---|---|
| EGFR mutation | NSCLC | osimertinib |
| ALK / ROS1 fusion | NSCLC | alectinib / repotrectinib |
| BRAF V600 | melanoma, NSCLC, colorectal, thyroid | dabrafenib + trametinib (+ cetuximab in colorectal) |
| HER2 amplification | breast, gastric, biliary | trastuzumab / T-DXd |
| MSI-high / dMMR ★ | any (tumour-agnostic) | pembrolizumab |
| NTRK fusion ★ | any (tumour-agnostic) | larotrectinib / entrectinib |
| BRCA / HRD | breast, ovary, prostate, pancreas | PARP inhibitor (olaparib) |
| KRAS G12C | NSCLC, colorectal | sotorasib / adagrasib |
| RET fusion | NSCLC, thyroid | selpercatinib |
| FGFR alteration | urothelial, biliary | erdafitinib / pemigatinib |
| PD-L1 high / TMB-high | many | pembrolizumab |
| Check | Why / threshold |
|---|---|
| FBC (full blood count) | Counts must recover — typically ANC ≥1.0 and platelets ≥100 before dosing; otherwise delay or dose-reduce. |
| Renal + liver function | Dose-limits for cisplatin (CrCl [creatinine clearance]), capecitabine, many TKIs → adjust or hold. |
| Performance status + toxicity review | ECOG + grade the interval toxicities (CTCAE) — neuropathy, diarrhoea, mucositis → may dose-reduce. |
| Weight / BSA (body-surface area) | Re-dose by current BSA; significant weight change → recalculate. |
"Dose-dense" = shorter interval between cycles, NOT higher doses. Same drugs, same doses — given every 2 weeks (q14d) instead of every 3 (q21d). Rationale (Norton–Simon): tumour regrows between cycles → giving the next cycle sooner allows less regrowth → more net kill; improved survival in node-positive breast cancer (CALGB 9741). Requires G-CSF every cycle — the marrow can't recover neutrophils in 2 weeks unaided, so growth-factor support is what makes the q2wk interval possible (no G-CSF = no dose-dense). Classic example: dose-dense AC → paclitaxel. If counts still won't recover in the window → dose-reduce or stretch the interval (repeated delays erode the density benefit).
The rule: when the intent is CURE, the dose intensity is part of the cure. In curative regimens — BEP for germ-cell tumours, R-CHOP for lymphoma, curative-intent breast/CRC adjuvant chemo — cutting the dose to get around myelosuppression trades a toxicity problem for a relapse problem. So on the day, if counts are low: ① short DELAY until the ANC (absolute neutrophil count) recovers, then give the full dose; ② add G-CSF secondary prophylaxis (see Drug classes) for the remaining cycles so the next one lands on time; ③ do NOT dose-reduce and do not drop a drug. Contrast with palliative-intent treatment, where the goal is symptom control and quality of life → dose reduction is entirely appropriate to keep the patient on a tolerable therapy. Practical: a low total WBC is not the decision — get the ANC; and afebrile neutropenia is not treated with antibiotics (see Febrile neutropenia above).
| Grade | Action |
|---|---|
| 1 — mild | Usually continue + monitor closely. |
| 2 — moderate | Hold the checkpoint inhibitor + start corticosteroids; resume once settled to ≤ grade 1. |
| 3 — severe | Hold (often permanently) + high-dose steroids; if no response in 48–72 h add second-line immunosuppression (e.g. infliximab for colitis). |
| 4 — life-threatening | Permanently stop + IV high-dose steroids ± additional immunosuppression. |
A fungating wound is tumour that has broken through the skin — commonest on breast, head and neck, scalp and groin, and usually a sign of neglected, locally advanced or recurrent disease. It is rarely curable by dressings; the definitive treatment of the wound is treatment of the tumour (systemic therapy, or palliative RT, which is the single most useful local measure). Meanwhile four things need managing, and they are not equally urgent. 🔴 BLEEDING is the one that kills — these wounds are friable and can haemorrhage catastrophically. Have a plan before it happens: non-adherent dressings (never rip a dressing off a fungating tumour — soak it off), gentle irrigation rather than swabbing, topical tranexamic acid or adrenaline-soaked gauze / alginate for oozing, haemostatic (single-fraction) radiotherapy or embolisation for repeated bleeds, and dark towels plus a stated plan if a catastrophic bleed is a real possibility. Review anticoagulants and antiplatelets. ODOUR is what isolates the patient socially and it is anaerobic bacteria, not "dirt": topical metronidazole gel (or systemic metronidazole), charcoal-containing dressings, debridement of slough; odour responds, so treat it rather than masking it. EXUDATE and skin damage → absorbent, non-adherent dressings changed on a schedule, barrier film to protect the surrounding skin; keep the dressing change itself covered by analgesia given in advance. INFECTION — these wounds are always colonised, so treat symptoms and signs, not swab results; systemic antibiotics for cellulitis or systemic upset, not for routine colonisation. ⚠ The fifth problem is the one nobody documents: body image and disgust. Patients hide the wound, stop leaving the house, and stop reporting bleeding. Name it, involve the tissue-viability or palliative-care nurses early, and ask specifically about smell and leakage — they will not volunteer it.
The axis: hypothalamus (GnRH) → pituitary (LH/FSH) → ovary → estrogen. Each class blocks a different point — ovarian suppression at the top (premenopausal), aromatase inhibitors at peripheral androgen→estrogen conversion (postmenopausal), and the SERM/SERD at the receptor itself.
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Endometrial hyperplasia / carcinoma — uncommon but serious | agonist in the uterus | Tell every patient to report ANY vaginal bleeding — that instruction is what catches it |
| VTE — uncommon | agonist on hepatic clotting-factor synthesis | Caution around surgery / immobility |
| 🔴 Loss of efficacy with strong CYP2D6 inhibitors | it’s a prodrug — needs CYP2D6 to make endoxifen; fluoxetine / paroxetine block it | For a hot-flush antidepressant use venlafaxine, citalopram or escitalopram — not fluoxetine / paroxetine |
| Hot flushes, cataract — common | oestrogen antagonism | Supportive |
| Bone — PROTECTED after menopause | agonist in bone (the opposite of an AI) | A benefit, not a toxicity |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Arthralgia / myalgia — very common (the top reason women stop) | oestrogen is anti-nociceptive in joints; removing it unmasks pain | Counsel at the start (or adherence collapses) — not damage, often eases by 6 mo; switching between AIs helps |
| Bone loss → osteoporosis / fracture — common | oestrogen restrains osteoclasts | Baseline DEXA, calcium + vitamin D, ± a bone-modifying agent |
| Hot flushes, vaginal dryness, dyslipidaemia — common | oestrogen withdrawal | Supportive; check lipids |
| NO VTE, NO endometrial risk | no agonist activity anywhere (the inverse of tamoxifen) | — |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Fulvestrant — injection-site pain (two large IM injections) | large-volume intramuscular depot, one into each buttock | Warn; rotate sites |
| Elacestrant — nausea, dyslipidaemia, musculoskeletal pain | oral SERD | Take with food; check lipids |
| NO endometrial or thrombotic risk | pure antagonist, no agonism | — |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Initial FLARE — oestrogen surges for 1–2 weeks before it falls | an agonist stimulates before it desensitises the pituitary | Suppression is NOT immediate — if starting an AI alongside, confirm oestradiol is postmenopausal before relying on it |
| Surgical-grade menopause — hot flushes, sexual dysfunction, mood | abrupt oestrogen loss | Supportive |
| Bone loss — common (worse when paired with an AI) | oestrogen restrains osteoclasts; an AI removes what little remains | DEXA + calcium and vitamin D |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| 🔴 Testosterone FLARE (LHRH agonist) — surges for 1–2 weeks first | an agonist stimulates before it suppresses | Dangerous in cord compression / bladder outflow obstruction → cover with an anti-androgen first, or use an LHRH antagonist (degarelix, relugolix — no flare) |
| Abiraterone → hypertension, HYPOKALAEMIA, fluid overload | CYP17 block shunts precursors into the mineralocorticoid arm | MUST co-give prednisolone (physiological necessity, not an extra); empty stomach (food ↑ absorption ~10×); monitor K⁺, BP, LFTs |
| ADT class — hot flushes, fatigue, sexual dysfunction, bone loss, metabolic syndrome | castrate testosterone → ↑ cardiovascular risk | Check HbA1c / lipids / BP and co-manage; DEXA + calcium/vit D |
| ARPI (receptor blockers) — fatigue, FALLS / fractures, seizures | androgen-receptor blockade; lowered seizure threshold | Falls assessment; darolutamide doesn’t cross the BBB — switch to it if cognition / seizure risk |
| Enzalutamide — strong CYP3A4 INDUCER (drug interactions) | lowers levels of amlodipine, statins, warfarin/DOACs, opioids, antiepileptics | Review every co-prescription |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Neutropenia — common, but NOT like chemo (febrile neutropenia RARE) | it pauses marrow precursors (doesn’t destroy them) → rapidly reversible | Dose-interrupt then resume ± reduced dose — do not manage with chemo-level alarm |
| Diarrhoea — ABEMACICLIB (early, dose-limiting) | more CDK4-selective, dosed continuously | Hold + loperamide |
| QTc prolongation + hepatotoxicity — RIBOCICLIB (the only one needing an ECG) | — | Baseline ECG + electrolytes; monitor; LFTs |
| Raised transaminases, fatigue, a VTE signal — class-wide | — | LFTs; watch for VTE. (Palbociclib = mostly neutropenia; abemaciclib = best CNS penetration.) |
| Which TKI — adverse effect | Why (briefly) | What to do |
|---|---|---|
| EGFR-TKI → acneiform rash, diarrhoea, paronychia; osimertinib → ILD/pneumonitis, QTc | EGFR in skin/gut (same as the anti-EGFR antibodies) | Treat rash (doxycycline); ILD → hold/stop; ECG |
| VEGFR-TKI → hypertension, proteinuria, hand-foot skin reaction, bleeding, hypothyroidism | same VEGF-maintenance biology as bevacizumab, oral | Monitor BP, urine protein, TFTs; hold around surgery |
| FGFR-TKI → hyperphosphataemia, retinopathy, nail/skin | block FGF23 → kidney retains phosphate | Phosphate binders; eye checks |
| BRAF/MEK → pyrexia (dab/tram) or photosensitivity (vemurafenib); paradoxical cutaneous SCC | — | Manage pyrexia; skin surveillance |
| Class-wide → hepatotoxicity, QTc, fatigue; many are CYP3A4 substrates/inducers | — | LFTs, ECG, BP; review every co-prescription |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Hyperglycaemia — near-universal (on-target, not a “side” effect) | PI3K–AKT IS the insulin pathway → blocking it induces reversible insulin resistance | Check HbA1c + fasting glucose BEFORE starting; monitor; treat with METFORMIN first (works below the block); poorly-controlled DM = relative contraindication |
| Rash — common (can be severe with alpelisib) | — | Prophylactic antihistamine reduces it |
| Stomatitis / mouth ulcers — everolimus signature | mTOR effect on oral mucosa | PROPHYLACTIC steroid mouthwash markedly reduces it |
| Everolimus → non-infectious pneumonitis, immunosuppression, diarrhoea | — | Hold for pneumonitis; infection vigilance |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Anaemia — the signature, usually dose-limiting | marrow precursors divide constantly + depend on DNA repair → hit first | FBC monthly; transfuse / dose-reduce |
| Fatigue, nausea — common | — | Supportive (olaparib = more nausea) |
| Secondary MDS / AML — rare | accumulated unrepaired DNA damage | Know it; investigate persistent cytopenias |
| Class-specific — niraparib → thrombocytopenia + hypertension; talazoparib → most myelosuppression | talazoparib traps PARP hardest | Monitor platelets + BP (niraparib) |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Muscle spasms — very common (often the reason people stop) | hedgehog persists in adult muscle | Cumulative — planned drug holidays keep patients on treatment |
| Dysgeusia → weight loss — common | taste buds depend on the pathway | Nutritional support |
| Alopecia, fatigue — common | hair follicles | Supportive |
| 🔴 Teratogenicity — severe malformations / fetal death | hedgehog builds the embryo | Strict contraception; drug persists in semen → men use condoms, no semen donation; nobody donates blood. Long washout — counsel before the first dose |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Cardiotoxicity (LVEF drop) — reversible, NOT dose-related | HER2 is a myocyte survival signal — blocking removes protection (does NOT kill the cell, unlike anthracyclines) | Baseline LVEF + 3-monthly echo; hold for a significant drop and involve cardio-oncology rather than abandoning. Risk compounds if given with / straight after an anthracycline |
| Infusion reactions — common (first dose) | — | Premedicate; monitor the first infusion |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Acneiform rash — very common | EGFR in normal epidermis/follicles — on-target, not allergy | Rash intensity CORRELATES WITH RESPONSE (favourable) — treat it (doxycycline, emollients), don’t stop |
| Hypomagnesaemia — common | EGFR drives the renal TRPM6 magnesium channel → urinary Mg wasting | Check Mg regularly and replace |
| Paronychia, nail changes — common | on-target skin effect | Supportive |
| Cetuximab → severe infusion reactions | chimeric (part-mouse); pre-existing IgE to galactose-α-1,3-gal (tick bites / red-meat allergy) | Premedicate; panitumumab (fully human) does not — switch if needed |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Hypertension — common, dose-dependent, expected | VEGF drives endothelial nitric oxide → block loses vasodilatation | Treat the BP — do not reflexively stop the drug; check BP each cycle |
| Proteinuria — common | podocytes need VEGF to maintain the filtration barrier | Urine dipstick before each cycle (rarely a thrombotic microangiopathy) |
| Haemorrhage + impaired wound healing | endothelial repair / new vessels are exactly what healing needs | Hold 4–6 weeks either side of surgery; do not start until the wound is healed |
| GI perforation — uncommon but serious | compromised mucosal vasculature in an involved / recently-anastomosed bowel | Avoid stenting an obstructing colonic tumour if bevacizumab is planned; caution in fistula-prone disease (cervical) |
| Arterial thromboembolism | endothelial injury | Assess cardiovascular risk |
| ADC (payload) — adverse effect | Why (briefly) | What to do |
|---|---|---|
| T-DXd (topo-I) → 🔴 INTERSTITIAL LUNG DISEASE / pneumonitis (can be fatal); also emetogenic + myelosuppressive | payload effect on lung | Baseline + serial imaging; HOLD for ANY new respiratory symptom; NEVER rechallenge after grade ≥2 |
| Enfortumab vedotin (MMAE) → peripheral neuropathy, hyperglycaemia / DKA, severe skin (SJS/TEN) | anti-microtubule payload | Check glucose before every dose; watch skin; assess neuropathy |
| Sacituzumab govitecan (SN-38) → neutropenia + diarrhoea | SN-38 = irinotecan’s active metabolite; UGT1A1*28 higher risk | Manage as irinotecan (loperamide, FBC) |
| T-DM1 (DM1, non-cleavable) → thrombocytopenia + transaminitis | payload | FBC, LFTs |
| HER2 ADCs remain CARDIOTOXIC (the antibody’s own toxicity persists) | it’s still a HER2 antibody | LVEF monitoring continues |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| irAE, ANY organ — colitis, pneumonitis, hepatitis, skin | immune activation turned against normal tissue | Grade ≥2 → hold + steroids (grade → Tools irAE table); CTLA-4 combos add toxicity |
| Endocrine irAEs — thyroid, pituitary, adrenal, type-1 diabetes | immune attack on endocrine glands | Replace the hormone — often CONTINUE therapy |
| 🔴 Myocarditis + neurologic irAEs (encephalitis) — rare, high fatality | — | PERMANENTLY STOP even at low grade |
| Vitiligo / skin depigmentation | reflects anti-tumour immune activation — a FAVOURABLE prognostic sign | CONTINUE — a good sign, not a reason to stop |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Cytokine release syndrome (CRS) — fever, hypotension, hypoxia, first doses | mass T-cell activation → flood of IL-6, IFN-γ, TNF | TOCILIZUMAB (anti-IL-6R) ± steroids (spares the anti-tumour effect). A fever here is CRS until proven otherwise — but rule out infection in parallel |
| ICANS (neurotoxicity) — confusion, tremor, seizures, first doses | the same cytokines disrupt the blood–brain barrier | CORTICOSTEROIDS (tocilizumab penetrates the CNS poorly); grade + escalate early |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Nausea/vomiting — HIGHLY emetogenic (>90% if unprophylaxed) | serotonin (acute) then substance P / NK1 (delayed, peaks d2–3) | NK1 + 5-HT₃ antagonist + dexamethasone — all three (Antiemetics, Tools) |
| Nephrotoxicity — common (~20–30% unhydrated) | proximal-tubule uptake → tubular necrosis + renal Mg wasting | Aggressive IV hydration + forced diuresis; replace Mg; avoid if CrCl <60 |
| Ototoxicity — common, high-frequency, often permanent | cochlear hair-cell death; drug retained in cochlea for months | Baseline + serial AUDIOMETRY (starts above speech range — patient won’t notice); sodium thiosulfate in children |
| Peripheral neuropathy — dose-dependent, “coasts” | dorsal-root-ganglion damage; large-fibre sensory | Assess each cycle; grade & act → Tools grading table |
| Myelosuppression + hypomagnesaemia — common | — | FBC + Mg each cycle |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Myelosuppression, esp. THROMBOCYTOPENIA — dose-limiting | less reactive drug → marrow is the limiting organ | FBC incl. platelets; dose by Calvert: AUC × (GFR+25), cap GFR at 125; grade → Tools |
| Nausea/vomiting — moderate (HIGH if AUC ≥4) | — | Antiemetics by emetogenic risk (Tools) |
| Hypersensitivity — rises after ~6+ cycles / re-exposure | sensitisation on repeat platinum courses | Watch later cycles; premedicate / desensitise; switch if severe |
| Nephro-, oto-, neurotoxicity — much LESS than cisplatin | slow aquation, less reactive | the reason to pick carbo when kidney / ear / nerve matter |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Acute cold dysaesthesia — very common (~85–90%) | oxalate alters sensory-nerve Na-channels; transient, pathognomonic | Avoid cold drinks/air, gloves from the fridge; resolves in days — not a reason to stop |
| Cumulative sensory neuropathy — dose-limiting (grade 3 in ~10–15% at high cumulative dose) | dorsal-root-ganglion damage; “coasts” after stopping | Assess BEFORE every cycle; persistent G2 → reduce, G3 → stop (grade → Tools) |
| Liver — sinusoidal obstruction (“blue liver”); mild LFT rise COMMON | sinusoidal endothelial injury | A mild transaminase rise on FOLFOX is EXPECTED — do NOT stop; watch platelets/spleen; keep pre-hepatectomy to ~4–6 cycles |
| Nausea/vomiting — moderate | — | Antiemetics (Tools) |
| Myelosuppression — common | — | FBC each cycle |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Peripheral sensory neuropathy — common, cumulative, dose-limiting | microtubule-dependent axonal transport fails in the longest axons | Assess before every dose; weekly paclitaxel is less neurotoxic than 3-weekly; grade → Tools |
| Hypersensitivity — paclitaxel/docetaxel, first 1–2 doses | reaction to the SOLVENT (Cremophor / polysorbate 80), not the drug — a pseudoallergy | Premedicate: corticosteroid + H1 + H2 antihistamine. nab-paclitaxel is solvent-free → no routine premed |
| Fluid retention / oedema — docetaxel, cumulative | capillary-permeability effect | 3-day dexamethasone course with docetaxel |
| Neutropenia — common (docetaxel > paclitaxel) | — | FBC; grade → Tools; G-CSF if febrile-neutropenia risk high |
| Alopecia, arthralgia/myalgia, nail changes — common | — | Supportive (arthralgia worse with paclitaxel) |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| 🔴 DPD deficiency → fatal 5-FU / capecitabine toxicity — rare but lethal | DPD catabolises >80% of a 5-FU dose; deficient = massive overdose (catastrophic mucositis/diarrhoea/marrow, cycle 1–2) | GENOTYPE DPYD before the first dose (capecitabine carries the identical risk). Antidote: uridine triacetate <96 h |
| Mucositis + diarrhoea — very common (5-FU, capecitabine) | fast-dividing gut epithelium hit first | Supportive; hold for grade 3; grade → Tools |
| Hand-foot syndrome — common (capecitabine) | drug excreted in eccrine sweat, densest on palms/soles | Emollients, no friction/heat; dose-reduce; grade → Tools |
| Myelosuppression — common | — | FBC; pemetrexed needs FOLIC ACID + B12 to blunt it (no loss of efficacy) |
| Gemcitabine flu-like syndrome — common; rare HUS/TMA | — | Supportive; stop if thrombotic microangiopathy |
| Methotrexate — renal/3rd-space accumulation | renally cleared; effusions/ascites act as a reservoir → prolonged exposure | Leucovorin rescue (high-dose MTX); avoid in renal impairment / large effusions |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Irinotecan — EARLY diarrhoea (cholinergic), during / just after infusion | irinotecan inhibits acetylcholinesterase (cramps, sweating, salivation) | ATROPINE (loperamide is useless for this one) |
| Irinotecan — LATE diarrhoea (days later), can be severe/dehydrating | active metabolite SN-38 injures gut mucosa | HIGH-DOSE LOPERAMIDE + hydration (atropine useless here); grade → Tools |
| Irinotecan — severe neutropenia, worse in UGT1A1*28 (Gilbert’s) | poor SN-38 glucuronidation → it accumulates | Reduce starting dose if UGT1A1*28; FBC (see Pharmacogenomics) |
| Etoposide — SECONDARY AML (short 1–3 yr latency, NO preceding MDS) | topo-II breaks at the MLL (KMT2A) 11q23 fragile site → translocation | Know it; distinct from alkylator leukaemia (5–7 yr, MDS-preceded, chr 5/7) |
| Myelosuppression, alopecia — common (all three) | — | FBC; grade → Tools |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Anthracycline CARDIOTOXICITY — cumulative, dose-dependent, IRREVERSIBLE | free radicals + topo-IIβ injure antioxidant-poor myocytes, which do not regenerate | Lifetime cap ~450–500 mg/m² doxorubicin; baseline + serial LVEF; dexrazoxane (iron chelator) protects; risk ↑ with mediastinal RT / trastuzumab / age |
| Liposomal doxorubicin (PLD) → hand-foot syndrome (much less cardiotoxic, not zero) | PEG-liposome keeps drug away from myocardium | Emollients; still counts toward the cumulative anthracycline dose |
| Bleomycin → PULMONARY FIBROSIS | free radicals; lung lacks bleomycin hydrolase; oxygen fuels it | Ask cough/dyspnoea each dose; lifelong caution with high inspired O₂ — flag to any anaesthetist. Flagellate hyperpigmentation is benign |
| 🔴 Vincristine is FATAL if given INTRATHECALLY | — | IV ONLY, never in a syringe near an intrathecal drug. (Vinca also → neuropathy — assess each dose) |
| Vesicant extravasation (anthracycline, vinca, mitomycin) → tissue necrosis | direct tissue toxicity if it leaks from the vein | Anthracycline → COLD compress + dexrazoxane; vinca → WARM compress + hyaluronidase (opposite — do not swap) |
| Mitomycin → delayed myelosuppression (late nadir); rare HUS/TMA | — | Delayed FBC monitoring |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Haemorrhagic cystitis (cyclophosphamide, ifosfamide) — dose-related | the metabolite ACROLEIN concentrates in urine and burns the bladder urothelium | MESNA (binds acrolein in the urine) + hydration + frequent voiding |
| Ifosfamide ENCEPHALOPATHY — confusion, hallucinations, seizures | metabolite chloroacetaldehyde is neurotoxic; risk ↑ low albumin / renal impairment / pelvic disease | METHYLENE BLUE to treat / prevent |
| Ifosfamide → Fanconi-like tubular damage (esp. children) | proximal tubular injury → phosphate + bicarbonate wasting | Monitor phosphate / bicarbonate; replace |
| Gonadotoxicity / INFERTILITY — the most gonadotoxic class | cell-cycle non-specific → destroys resting eggs / spermatogonia | Fertility preservation BEFORE treatment — time-critical, cannot be done retrospectively |
| Secondary MDS / AML — long 5–7 yr latency, MDS-preceded | chromosome 5/7 deletions | Know it; distinct from topo-II leukaemia (short latency, MLL translocation) |
| Myelosuppression — dose-related | — | FBC; temozolomide → thrombocytopenia; grade → Tools |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Bone / back pain — common | marrow expansion | Usual, self-limiting; simple analgesia |
| Splenic enlargement / rupture — rare | extramedullary granulopoiesis | Investigate LUQ / left-shoulder pain |
| Pulmonary (capillary leak / ARDS) — rare | — | — |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Osteonecrosis of the jaw (ONJ) — uncommon | osteoclast suppression impairs jaw-bone healing | Dental clearance BEFORE starting; avoid invasive dental work on treatment |
| Hypocalcaemia — common | osteoclast resorption blocked | Replace calcium + vitamin D; check corrected calcium |
| Renal impairment — zoledronic acid | renally cleared bisphosphonate | Dose by renal function; infuse slowly |
| Denosumab → rebound hypercalcaemia / vertebral fractures if stopped abruptly | RANKL suppression rebounds when withdrawn | Do not stop abruptly — plan a transition |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| 🔴 Rasburicase CONTRAINDICATED in G6PD deficiency | the reaction makes hydrogen peroxide → severe haemolysis + methaemoglobinaemia | SCREEN G6PD BEFORE giving — critical in Middle-Eastern / Mediterranean / African / South-Asian patients (high local prevalence) |
| Rasburicase → anaphylaxis | recombinant enzyme | Monitor the infusion |
| Lab pitfall — falsely LOW uric acid readings on rasburicase | it keeps degrading urate inside the sample tube | Sample on ice, process immediately |
| Allopurinol → rash (rarely SJS/TEN, higher with HLA-B*58:01); raises 6-MP / azathioprine | xanthine-oxidase inhibition also blocks thiopurine breakdown | Dose-reduce thiopurines; stop for rash |
| Test — gates which drug | What a deficiency does | What to do |
|---|---|---|
| 🔴 DPYD (→ DPD enzyme) — fluoropyrimidines: 5-FU, capecitabine (a tablet, identical risk) | DPD clears >80% of a 5-FU dose; deficient = massive overdose → severe mucositis / diarrhoea / marrow in cycle 1–2, can be FATAL (~3–8% partial, ~0.1–0.5% complete) | Intermediate → start 50%; poor → avoid. Antidote uridine triacetate <96 h. EMA / UK mandate pre-testing; FDA does not |
| UGT1A1 — irinotecan | *28 (Gilbert’s) → poor SN-38 clearance → severe neutropenia + diarrhoea | Reduce the irinotecan starting dose |
| TPMT / NUDT15 — thiopurines (azathioprine, 6-MP) | life-threatening myelosuppression | Reduce / avoid. NUDT15 matters more in East-Asian ancestry, TPMT in European |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Paracetamol → hepatotoxicity | NAPQI metabolite | Antidote N-acetylcysteine; dose-cap in liver disease / low weight |
| NSAID → GI ulceration / haemorrhage | COX-1 inhibition removes gastric protection | Co-prescribe a PPI if older / on steroids / on anticoagulant; avoid in thrombocytopenia |
| NSAID → AKI | loss of prostaglandin renal autoregulation | Avoid the “triple whammy” (NSAID + ACEi/ARB + diuretic); avoid in CKD / heart failure |
| NSAID → cardiovascular events, fluid retention, hyperkalaemia | COX-2 effect on vasculature | Highest with diclofenac / COX-2; naproxen has the best CV profile |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Tramadol → seizures | lowers the seizure threshold | Avoid in epilepsy |
| Tramadol → serotonin syndrome; hyponatraemia | it is also an SNRI | Caution with SSRIs/SNRIs (duloxetine is used for neuropathic pain here) |
| Codeine → constipation (marked), nausea | still an opioid | Same bowel regimen as any opioid |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Metabolite accumulation in renal impairment → sedation, confusion, MYOCLONUS, respiratory depression | M6G (analgesic) + M3G (neurotoxic) are renally cleared | Check eGFR before, not after; myoclonus is the earliest warning — teach the family to report it; rotate to oxycodone / fentanyl |
| Constipation — universal, does not resolve | gut µ-receptors slow transit | Senna from day one (prophylactic, not PRN) |
| Nausea — first 3–5 days | central + gut | PRN antiemetic; settles |
| Respiratory depression, sedation, pinpoint pupils | central µ effect | Titrate carefully; naloxone if severe |
| Adverse effect — how often | Why (briefly) | What to do |
|---|---|---|
| Sedation, ataxia, confusion, myoclonus — stacks with opioids | gabapentin is ~100% renally excreted; additive with opioid CNS effects | Dose-adjust by CrCl; in renal impairment reduce BOTH gabapentin and opioid, not one |
| Falls / pathological fracture — compounded | gabapentin ataxia + opioid sedation + a weight-bearing lytic lesion | Falls assessment, mobility aid, orthopaedic review |
| Amitriptyline → anticholinergic; duloxetine → nausea, raised BP | — | Caution in the elderly; never stop a gabapentinoid abruptly — taper |
| Drug | Adverse effect | Why / what to do |
|---|---|---|
| Bexarotene | Hypertriglyceridaemia + CENTRAL hypothyroidism (low TSH AND low T4) | the signature pair — lipids + TFTs before and on treatment; treat with fibrate/statin + levothyroxine, dose by free T4 not TSH |
| Brentuximab vedotin | Peripheral neuropathy; neutropenia; infusion reactions | the MMAE payload — examine neuropathy each cycle, dose-modify; never combine with bleomycin (pulmonary toxicity) |
| Mogamulizumab | Rash (can mimic the CTCL itself); infusion reactions | biopsy separates drug rash from disease; worse GvHD if allogeneic transplant follows soon after |
| Vorinostat / romidepsin | Fatigue, GI upset, cytopenias; romidepsin → QT prolongation | ECG + K/Mg with romidepsin; monitor counts |
ATC — anaplastic thyroid carcinoma
MTC — medullary thyroid carcinoma (C-cell, calcitonin)
RAI — radioactive iodine (I-131)
Tg — thyroglobulin (differentiated-thyroid-cancer tumour marker)
DFSP — dermatofibrosarcoma protuberans (COL1A1–PDGFB fusion skin sarcoma)
MCC — Merkel cell carcinoma (neuroendocrine skin cancer)
MCPyV — Merkel-cell polyomavirus
CCR4 — C-C chemokine receptor 4 (mogamulizumab target)
CTCL — cutaneous T-cell lymphoma (mycosis fungoides / Sézary)
HDAC — histone deacetylase (inhibitors: vorinostat, romidepsin)
PUVA — psoralen + ultraviolet-A phototherapy
TSEBT — total-skin electron-beam therapy
5-FU — fluorouracil
5-HT3 — serotonin (5-hydroxytryptamine-3) receptor
AC — doxorubicin + cyclophosphamide (breast chemo)
AC → T — AC followed by a taxane
ACTH — adrenocorticotropic hormone (pituitary → adrenal signal)
ADC — antibody-drug conjugate
ADCC — antibody-dependent cellular cytotoxicity
ADT — androgen-deprivation therapy (prostate)
AFP — alpha-fetoprotein (tumour marker)
AI — aromatase inhibitor
AKI — acute kidney injury
ALBI — albumin-bilirubin grade (liver function)
ANC — absolute neutrophil count
ARPI — androgen-receptor pathway inhibitor
AUC — area-under-the-curve (carboplatin dosing)
BCG — bacillus Calmette-Guérin (bladder immunotherapy)
BCLC — Barcelona Clinic Liver Cancer (HCC staging)
BCC — basal cell carcinoma (skin; the "rodent ulcer")
BEP / EP — bleomycin+etoposide+cisplatin / etoposide+cisplatin
β-hCG — beta-human chorionic gonadotropin (marker)
BiTE — bispecific T-cell engager
BSA — body-surface area (chemo dosing)
BSO — bilateral salpingo-oophorectomy
CA 15-3 — breast tumour marker
CA 19-9 — biliary/pancreatic tumour marker
CA 125 — ovarian tumour marker
CAPOX / FOLFOX / FOLFIRI — colorectal chemo combinations
CDK4/6 — cyclin-dependent kinase 4/6
CEA — carcinoembryonic antigen (marker)
CK — creatine kinase (muscle enzyme)
Claudin 18.2 — gastric/GOJ target (zolbetuximab)
CNS — central nervous system
cSCC — cutaneous squamous cell carcinoma (skin)
COC — combined oral contraceptive
CPS — combined positive score (PD-L1)
CR / PR / SD / PD — complete / partial response, stable / progressive disease
CrCl — creatinine clearance
CRM — circumferential resection margin (rectal MRI)
CROSS — neoadjuvant chemoradiation regimen (oesophageal)
CRS — cytokine release syndrome
CT / PET / MRI — computed tomography / positron-emission tomography / magnetic resonance imaging
CTCAE — Common Terminology Criteria for Adverse Events (toxicity grades 1–5)
CTCL — cutaneous T-cell lymphoma (mycosis fungoides / Sézary)
ctDNA — circulating tumour DNA (blood test)
CTLA-4 — cytotoxic T-lymphocyte antigen-4
DKA — diabetic ketoacidosis
DVT — deep vein thrombosis
dMMR / MMR / MSI — mismatch-repair deficient / mismatch-repair / microsatellite instability
DPYD — dihydropyrimidine dehydrogenase (gene; 5-FU safety)
EBRT — external-beam radiotherapy
EBUS-TBNA — endobronchial ultrasound-guided needle biopsy
ECG — electrocardiogram (12-lead = the full diagnostic one; "strip" = rhythm only)
ECOG — performance-status scale
EGD — upper GI endoscopy
EGFR / ALK / ROS1 / BRAF / KRAS / MET / RET / NTRK — lung driver mutations
EMVI — extramural vascular invasion (rectal MRI)
ER / PR — estrogen / progesterone receptor
EUS — endoscopic ultrasound
EV — enfortumab vedotin
FGFR — fibroblast growth-factor receptor
FIGO — gynaecological-cancer staging system
FLOT — 5-FU + leucovorin + oxaliplatin + docetaxel (gastric)
FOLFIRINOX — 5-FU + folinic acid + irinotecan + oxaliplatin (pancreatic)
FRα — folate receptor alpha (ovarian; mirvetuximab)
G-CSF — granulocyte colony-stimulating factor (filgrastim)
GnRH — gonadotropin-releasing hormone
GOJ — gastro-oesophageal junction
HCC — hepatocellular carcinoma
HER2 — human epidermal growth-factor receptor 2
HIF — hypoxia-inducible factor (VHL pathway; belzutifan target)
HNSCC — head-and-neck squamous cell carcinoma
HPV — human papillomavirus (p16 = its surrogate marker)
HR+ — hormone-receptor-positive
HRCT — high-resolution CT (for lung)
HRD — homologous-recombination deficiency (PARP / ovarian)
HRR — homologous-recombination-repair genes (PARP)
HSV — herpes simplex virus
ICANS — immune-effector-cell-associated neurotoxicity
ICI — immune checkpoint inhibitor
IGCCCG — international germ-cell risk classification
IMDC — International Metastatic RCC Database Consortium (renal risk score)
IHC / ISH / FISH — immunohistochemistry / in-situ hybridisation
ILD — interstitial lung disease (pneumonitis)
INR — international normalised ratio (clotting)
IO — immuno-oncology, i.e. immunotherapy (checkpoint inhibitors). Heard as "chemo-IO", "IO maintenance", "IO-naïve"
irAE — immune-related adverse event
ISUP — International Society of Urological Pathology (prostate grade group)
Ki-67 — proliferation index
LAG-3 — immune checkpoint (relatlimab target)
LDH — lactate dehydrogenase
LI-RADS — liver-imaging reporting system
LVEF — left-ventricular ejection fraction (heart pump)
LVI — lymphovascular invasion
mHSPC / mCRPC — metastatic hormone-sensitive / castration-resistant prostate cancer
MASCC — febrile-neutropenia risk score
MOA — mechanism of action
MRCP — MR cholangiopancreatography
MSCC — malignant spinal cord compression
MSS — microsatellite stable
NGS — next-generation sequencing (gene panel)
NK1 — neurokinin-1 receptor
NMIBC / MIBC — non-muscle-invasive / muscle-invasive bladder cancer
NSCLC / SCLC — non-small-cell / small-cell lung cancer
NSGCT — non-seminomatous germ-cell tumour
NSMP — no specific molecular profile (endometrial class)
ONJ — osteonecrosis of the jaw
PARP — poly-ADP-ribose polymerase
PD-1 / PD-L1 — programmed death-1 / its ligand
PDAC — pancreatic ductal adenocarcinoma
PE — pulmonary embolism (clot in the lung)
PI3K / AKT / mTOR — cell-survival pathway (alpelisib / capivasertib / everolimus)
PJP — pneumocystis pneumonia (prophylaxis)
PLND — pelvic lymph-node dissection
POLE — DNA-polymerase-ε gene (endometrial molecular class)
PSA — prostate-specific antigen
PSMA — prostate-specific membrane antigen (PET / lutetium-177 target)
QTc — corrected QT interval (ECG)
RANKL — receptor activator of NF-κB ligand (denosumab target)
RCC — renal cell carcinoma
RECIST — Response Evaluation Criteria In Solid Tumours
RPLND — retroperitoneal lymph-node dissection
RT — radiotherapy
SABR — stereotactic ablative radiotherapy (early lung)
SBRT — stereotactic body radiotherapy
SERD / SERM — selective estrogen-receptor degrader / modulator
SJS/TEN — Stevens-Johnson syndrome / toxic epidermal necrolysis
SRS — stereotactic radiosurgery (brain metastases)
SVC — superior vena cava (obstruction)
TACE — transarterial chemoembolisation
TC — docetaxel + cyclophosphamide (breast chemo)
TCGA — The Cancer Genome Atlas (molecular classification)
TCHP — docetaxel + carboplatin + trastuzumab + pertuzumab
T-DXd / T-DM1 — trastuzumab deruxtecan / trastuzumab emtansine
TKI — tyrosine kinase inhibitor
TLS — tumour lysis syndrome
TMB — tumour mutational burden
TME — total mesorectal excision
TNBC — triple-negative breast cancer
TNM — tumour-node-metastasis staging
TNT — total neoadjuvant therapy
TPS — tumour proportion score (PD-L1)
TURBT — transurethral resection of bladder tumour
UGT1A1 — enzyme affecting irinotecan toxicity
UTUC — upper-tract urothelial carcinoma (ureter / renal pelvis)
VEGF / VEGFR — vascular endothelial growth factor / receptor
VHL — von Hippel-Lindau (clear-cell RCC pathway)
VTE — venous thromboembolism
Y90 — yttrium-90 radioembolisation