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March 6, 2026Journal of Xenobiotics0 citationsOpen Access

Cyclophosphamide-Induced Nephrotoxicity and Nephroprotection in Rodent Models: A Systematic Review and Random-Effects Meta-Analysis (2010–2025)

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DOD. A. OberiukhtinACA. E. ChernitskiyDHDesheng Hu

Key Points

  • Evaluate the nephrotoxic effects of cyclophosphamide and potential protective interventions in rodent models.
  • Systematic review of in vivo rodent studies from 2010 to 2025.
  • Meta-analysis of outcomes such as serum creatinine, serum urea, and oxidative stress markers.
  • Separation of model effects (cyclophosphamide vs. control) and treatment effects (intervention + CP vs. CP-only).
  • Random-effects synthesis to analyze core outcome data.
  • Cyclophosphamide increased serum creatinine by 1.059 mg/dL and serum urea by 39.852 mg/dL.
  • Protective interventions were most effective in reducing oxidative stress markers like MDA/TBARS and preserving glutathione.
  • Functional recovery estimates varied, often limited by reporting inconsistencies and study differences.

Abstract

Cyclophosphamide (CP) is extensively used in oncology and as an immunosuppressant, but dose-limiting renal injury remains a major constraint. We systematically reviewed in vivo rodent models of CP nephrotoxicity (2010–2025) and meta-analysed core outcomes while separating the model effect (CP vs. control) from the treatment effect (intervention + CP vs. CP-only). Fifty-four studies met eligibility criteria, and random-effects syntheses were feasible for serum creatinine, serum urea, and renal oxidative stress markers. CP produced a marked functional deterioration, increasing serum creatinine by 1.059 mg/dL (95% CI 0.517–1.601; k = 9) and serum urea by 39.852 mg/dL (95% CI 6.557–73.148; k = 9). Across intervention studies, protective effects were most consistently expressed in oxidative endpoints (MDA/TBARS reduction and glutathione preservation), whereas functional recovery estimates were more variable and frequently limited by incomplete reporting and between-study heterogeneity. Overall, the evidence base supports CP as a robust preclinical model of combined functional and redox-mediated renal injury and indicates that multiple mechanistic classes of interventions can partially mitigate injury, but current reporting and design heterogeneity preclude reliable ranking of candidate agents. The protocol was registered on OSF.

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Cite This Study

Oberiukhtin et al. (2026) studied this question.

synapsesocial.com/papers/69aa70a9531e4c4a9ff5aa7fhttps://doi.org/10.3390/jox16020048
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