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Updated: Aug 19, 2026

Modeling Hypoxia/Reoxygenation Injury in Proximal Tubular Epithelial Cells
Published on: November 21, 2025
Tubular cell apoptosis and cidofovir-induced acute renal failure
Alberto Ortiz1, Pilar Justo, Ana Sanz
1Unidad de Diálisis, Fundación Jiménez Diaz, Universidad Autónoma, Madrid, Spain. aortiz@fjd.es
Abstract:
Cidofovir is an antiviral drug with activity against a wide array of DNA viruses including poxvirus. The therapeutic use of cidofovir is marred by a dose-limiting side effect, nephrotoxicity, leading to proximal tubular cell injury and acute renal failure. Treatment with cidofovir requires the routine use of prophylactic measures. A correct knowledge of the cellular and molecular mechanisms of cidofovir toxicity may lead to the development of alternative prophylactic strategies. We recently cared for a patient with irreversible acute renal failure due to cidofovir. Renal biopsy showed tubular cell apoptosis. Cidofovir induced apoptosis in primary cultures of human proximal tubular cells in a temporal (peak apoptosis at 7 days) and concentration (10-40 microg/ml) pattern consistent with that of clinical toxicity. Apoptosis was identified by the presence of hypodiploid cells, by the exposure of annexin V binding sites and by morphological features and was associated with the appearance of active caspase-3 fragments. Cell death was specific as it was also present in a human proximal tubular epithelial cell line (HK-2), but not in a human kidney fibroblast cell line, and was prevented by probenecid. An inhibitor of caspase-3 (DEVD) prevented cidofovir apoptosis. The survival factors present in serum, insulin-like growth factor-1 and hepatocyte growth factor, were also protective. The present data suggest that apoptosis induction is a mechanism contributing to cidofovir nephrotoxicity. The prophylactic administration of factors with survival activity for tubular epithelium should be further explored in cidofovir renal injury.
Insights
Cidofovir, an antiviral, causes kidney damage by inducing programmed cell death (apoptosis) in kidney tubules. Prophylactic strategies targeting tubular cell survival may mitigate this cidofovir nephrotoxicity.
Area of Science:
- Nephrology
- Pharmacology
- Cell Biology
Background:
- Cidofovir is a potent antiviral drug effective against DNA viruses like poxvirus.
- Nephrotoxicity, characterized by proximal tubular cell injury and acute renal failure, limits cidofovir's therapeutic use.
- Understanding cidofovir's toxicity mechanisms is crucial for developing effective prophylactic strategies.
Observation:
- A patient developed irreversible acute renal failure after cidofovir treatment, with renal biopsy revealing tubular cell apoptosis.
- Cidofovir induced apoptosis in primary human proximal tubular cells and HK-2 cells in a dose- and time-dependent manner.
- Apoptosis was confirmed by hypodiploid cells, annexin V binding, and caspase-3 activation, but not in kidney fibroblasts.
Findings:
- Cidofovir-induced apoptosis in renal tubular cells is mediated by caspase-3 activation.
- Probenecid, a known protective agent, prevented cidofovir-induced apoptosis.
- Survival factors like insulin-like growth factor-1 and hepatocyte growth factor demonstrated protective effects against cidofovir toxicity.
Implications:
- Apoptosis induction is a key mechanism underlying cidofovir nephrotoxicity.
- Exploring prophylactic administration of tubular epithelial survival factors could offer new strategies for managing cidofovir-induced kidney injury.
- Further research into these protective factors may lead to safer cidofovir therapies.
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