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Nitrosourea (alkylating)

Fotemustine

Muphoran · FTM

Nitrosourea (alkylating) · approved 1989 · 4 references

A lipophilic nitrosourea for melanoma and glioma whose class carries delayed, cumulative tubulointerstitial kidney injury — usually mild, but occasionally consequential.

Signature injury
Chronic Interstitial Nephropathy
Severity
Moderate
Reversibility
Partially reversible
Onset
Delayed — weeks to months, and cumulative with repeated cycles; chronic interstitial injury may appear after prolonged exposure.

Signature kidney injury & incidence

Chronic Interstitial Nephropathy.

Renal toxicity is generally reported as mild within fotemustine regimens, but, consistent with the nitrosourea class, delayed tubulointerstitial injury/ATN can occur; in one combination study renal toxicity was mild yet possibly contributed to two deaths. Drug-specific incidence is not well quantified and is often confounded by co-administered cisplatin.

Source: Semb et al., Melanoma Res 1998

Reported injury signatures: Acute Tubular Necrosis, Chronic Interstitial Nephropathy, Electrolyte Disturbance.

Renal toxicity profile

  1. Chronic Interstitial NephropathyPrimary
  2. Acute Tubular NecrosisSecondary
  3. Electrolyte DisturbanceSecondary

Onset timing & rechallenge

Delayed (>6 weeks / cumulative) — Weeks to months and cumulative with repeated cycles; chronic interstitial injury may appear after prolonged exposure.

Mechanism of kidney injury

As a chloroethyl-nitrosourea, fotemustine and its reactive metabolites can alkylate and carbamoylate renal tubular and interstitial proteins, producing the class-typical pattern of cumulative, dose-related tubulointerstitial nephritis and tubular (ATN-type) injury seen with other nitrosoureas (e.g., carmustine, lomustine, semustine). Injury is delayed and dose-dependent. Direct mechanistic data specific to fotemustine are limited, so the mechanism above is inferred at the nitrosourea class level.

Clinical presentation

Typically an insidious rise in serum creatinine, sometimes with tubular dysfunction; overt AKI is uncommon at standard exposure. With high cumulative nitrosourea dosing the class can progress to chronic interstitial fibrosis and CKD. In combination regimens, acute renal events are often driven by accompanying cisplatin.

Management

No specific antidote. Hold or discontinue with significant or progressive renal dysfunction, provide supportive care and volume repletion, and manage as drug-induced tubulointerstitial injury. Given the delayed/cumulative nature, monitor renal function beyond the active treatment window.

Risk factors

  • High cumulative nitrosourea dose
  • Pre-existing renal impairment
  • Concurrent nephrotoxins (notably cisplatin in melanoma regimens)
  • Volume depletion from nausea/vomiting

Prevention

  • Cap cumulative nitrosourea dose exposure

Renal dose adjustment

Use caution and consider dose reduction or avoidance in significant renal impairment; specific renal dosing thresholds are not well established for fotemustine. Withhold for evolving renal dysfunction and reassess cumulative exposure.

Dialyzability & ESKD dosing

Dialyzability is not well characterized; nitrosoureas are lipophilic and rapidly metabolized, so dialysis is not a relied-upon removal strategy. Manage by dose limitation and monitoring rather than dialysis timing.

Differential diagnosis

Distinguish delayed nitrosourea tubulointerstitial injury from cisplatin ATN/electrolyte wasting in combination regimens, prerenal azotemia, and tumor- or contrast-related causes. The hallmark of nitrosourea nephrotoxicity is its delayed, cumulative, dose-related interstitial pattern.

Monitoring

  • Serum creatinine / eGFR at baseline and before cycles, with delayed-onset surveillance
  • Urinalysis for tubular markers
  • CBC (thrombocytopenia/leukopenia are dominant, often delayed)
  • Running tally of cumulative nitrosourea dose

Key trials & series

  • Semb et al. 1998 — FCT (fotemustine, cisplatin, tamoxifen) in metastatic melanoma; renal toxicity generally mild but possibly contributed to two deaths
  • Scoccianti et al. 2008 — second-line single-agent fotemustine in temozolomide-pretreated glioblastoma (toxicity mainly hematologic)
  • Perez-Segura et al. 2015 (GEINOFOTE) — fotemustine in recurrent high-grade glioma with poor performance status (renal function part of safety assessment)

Clinical pearls

  • Nitrosourea kidney injury is characteristically delayed and cumulative — monitor renal function beyond the end of treatment.
  • In fotemustine melanoma combinations, much of the acute renal signal is really cisplatin.
  • Renal toxicity is usually mild but is not zero — it possibly contributed to deaths in the FCT regimen.
  • Glioma monotherapy series show predominantly hematologic, not renal, dose-limiting toxicity.

Anticancer mechanism

Fotemustine is a chloroethyl-nitrosourea alkylating agent. Its high lipophilicity allows central-nervous-system penetration; it alkylates and cross-links DNA (chloroethylation at the O6 position of guanine), causing interstrand cross-links and cytotoxicity independent of cell cycle. It is used for disseminated malignant melanoma (including cerebral metastases) and recurrent high-grade glioma.

Note

Single-drug glioma series (e.g., GEINOFOTE; Scoccianti second-line) report predominantly hematologic toxicity with renal function generally preserved; the clearest renal signal arises in cisplatin-containing melanoma combinations, complicating attribution.

Guidelines & consensus

Each recommendation below is this atlas's faithful summary of the source, not a quotation from it — follow the PubMed link for the wording the society published. Summaries may be superseded; consult the current full text and individualize to the patient.

  • ADQI (2026) — Conventional cytotoxic chemotherapy-associated nephrotoxicity: consensus report of the 34th Acute Disease Quality Initiative (ADQI) WorkgroupCisplatin is identified as a leading cytotoxic nephrotoxin; the workgroup details preventive measures (adequate isotonic hydration, correction of volume depletion, avoidance of concurrent nephrotoxins, attention to electrolyte/magnesium wasting) and management of cisplatin-associated AKI, with a research agenda for knowledge gaps.Kidney Int · PMID 41881107
  • ADQI (2026) — The nephrotoxic effects of anti-cancer therapies: consensus report of the 34th Acute Disease Quality Initiative workgroupProvides expert-based statements (modified Delphi) on preventing and managing cisplatin/platinum-associated AKI, including isotonic IV hydration, attention to volume status and concomitant nephrotoxins, and incorporates evidence that IV magnesium supplementation may reduce cisplatin-associated AKI; emphasizes risk stratification and standardized AKI definitions.Nat Rev Nephrol · PMID 41361704
  • SIRM (2022) — SIRM-SIN-AIOM: appropriateness criteria for evaluation and prevention of renal damage in the patient undergoing contrast medium examinations-consensus statements from Italian College of Radiology (SIRM), Italian College of Nephrology (SIN) and Italian Association of Medical Oncology (AIOM)Recommends eGFR-based renal risk assessment and pre/post-contrast isotonic saline or sodium bicarbonate hydration; advises maintaining a 5-7 day interval between iodinated contrast administration and cisplatin in cancer patients to reduce additive nephrotoxicity.Radiol Med · PMID 35303246
  • KDIGO (2020) — KDIGO Controversies Conference on onco-nephrology: understanding kidney impairment and solid-organ malignancies, and managing kidney cancerIdentifies platinum compounds (especially cisplatin) as leading cytotoxic causes of acute tubular injury, AKI, and electrolyte/magnesium wasting; calls for interdisciplinary onco-nephrology care, accurate GFR estimation, and individualized drug dosing in patients with reduced kidney function.Kidney Int · PMID 33126977
  • KDIGO (2020) — KDIGO Controversies Conference on onco-nephrology: kidney disease in hematological malignancies and the burden of cancer after kidney transplantationAddresses chemotherapy-associated AKI/CKD in hematologic cancer, GFR estimation and chemotherapy dosing in patients with reduced kidney function, and management priorities and research gaps for onco-nephrology care.Kidney Int · PMID 33276867
  • ADDIKD (2025) — Integrating International Consensus Guidelines for Anticancer Drug Dosing in Kidney Dysfunction (ADDIKD) into everyday practiceProvides GRADE-based, drug-specific dose-adjustment recommendations for anticancer agents in kidney dysfunction (illustrated for methotrexate, cisplatin, carboplatin and nivolumab); the recommendations build on Part 1's standardised CKD-EPI eGFR assessment rather than Cockcroft-Gault creatinine clearance.EClinicalMedicine · PMID 40290844
  • ADDIKD (2025) — Aligning kidney function assessment in patients with cancer to global practices in internal medicineThree consensus recommendations: assess kidney function by GFR (measured GFR or CKD-EPI eGFR), classify it using KDIGO categories, and use this uniform approach to dose anticancer drugs — moving cancer medicine away from Cockcroft-Gault estimated creatinine clearance.EClinicalMedicine · PMID 40290845
  • ADDIKD (2025) — A methodology for determining dosing recommendations for anticancer drugs in patients with reduced kidney functionEstablishes that, where RCT evidence is lacking, anticancer drug dosing recommendations in kidney dysfunction should be derived by critically appraising observational literature via GRADE combined with structured international multidisciplinary consensus voting.EClinicalMedicine · PMID 40290846
  • KDIGO (2013) — Diagnosis, evaluation, and management of acute kidney injury: a KDIGO summary (Part 1)Defines/stages AKI by serum creatinine and urine output; emphasizes avoiding nephrotoxins, maintaining euvolemia/perfusion, dose-adjusting drugs to kidney function, and monitoring high-risk patients — the framework applied to nephrotoxic anti-cancer agents.Crit Care · PMID 23394211
  • KDIGO (2024) — Executive summary of the KDIGO 2024 Clinical Practice Guideline for the Evaluation and Management of Chronic Kidney Disease: known knowns and known unknownsEvaluate and risk-stratify CKD, manage to delay progression and its complications, and practise explicit medication management and drug stewardship — the framework the atlas's G1–G5 eGFR banding and every renal dose-adjustment recommendation sit inside. Because the guideline excludes dialysis and transplant recipients by its own statement of scope, its recommendations do not carry to those settings, where this atlas's dialyzability and post-transplant guidance rests on other sources.Kidney Int · PMID 38519239
  • KDIGO (2021) — Executive summary of the KDIGO 2021 Guideline for the Management of Glomerular DiseasesProvides the staging/treatment framework for drug-associated glomerular lesions (e.g., bisphosphonate- and interferon-related collapsing FSGS, VEGF-inhibitor podocytopathy/proteinuria), including immunosuppression and supportive RAAS-blockade strategies.Kidney Int · PMID 34556300
  • KDIGO (2024) — Executive summary of the KDIGO 2024 Clinical Practice Guideline for the Management of ANCA-Associated VasculitisUpdates immunosuppressive induction (rituximab/cyclophosphamide), incorporates avacopan and lower-dose or glucocorticoid-sparing regimens — the management framework for drug- and checkpoint-inhibitor-associated ANCA/pauci-immune glomerulonephritis.Kidney Int · PMID 38388147
  • KDIGO (2024) — Executive summary of the KDIGO 2024 Clinical Practice Guideline for the Management of Lupus NephritisUpdates first-line lupus nephritis therapy to combination immunosuppression with the addition of belimumab or a calcineurin inhibitor (voclosporin) — informs management of immune-complex/lupus-like glomerulonephritis encountered with immunotherapy.Kidney Int · PMID 38182299
  • KDIGO (2025) — Executive summary of the KDIGO 2025 Clinical Practice Guideline for the Management of Immunoglobulin A Nephropathy (IgAN) and Immunoglobulin A Vasculitis (IgAV)Encourages liberal kidney biopsy and stricter proteinuria control (<0.5 g/d, ideally <0.3 g/d) with RAAS blockers, SGLT2 inhibitors, and targeted-release budesonide — the framework for IgA-dominant glomerular lesions, including those triggered by immune-modulating cancer therapy.Kidney Int · PMID 40975525

References

4 peer-reviewed references. Citation metadata via PubMed / NLM.

  1. 1.Clinical experience of fotemustine, cisplatin and high dose tamoxifen in patients with metastatic malignant melanoma.Semb KA et al. · Melanoma Res · 1998 · PMID 9918419
  2. 2.Second-line chemotherapy with fotemustine in temozolomide-pretreated patients with relapsing glioblastoma: a single institution experience.Scoccianti S et al. · Anticancer Drugs · 2008 · PMID 18525321
  3. 3.GEINOFOTE: efficacy and safety of fotemustine in patients with high-grade recurrent gliomas and poor performance status.Perez-Segura P et al. · Clin Transl Oncol · 2015 · PMID 26542177
  4. 4.[Renal complications of anti-cancer treatments].Kessler M et al. · Rev Med Interne · 1991 · PMID 1771317
Educational monograph from NephTox (nephtox.com). Not medical advice — verify against current guidelines before any clinical decision.