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Updated: Mar 17, 2026

Acute Kidney Injury Model Induced by Cisplatin in Adult Zebrafish
Published on: May 15, 2021
Bardoxolone methyl modulates efflux transporter and detoxifying enzyme expression in cisplatin-induced kidney cell
Amandla Atilano-Roque1, Lauren M Aleksunes2, Melanie S Joy3
1Department of Pharmaceutical Sciences, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of Colorado, Aurora, CO, United States.
Abstract:
Cisplatin is prescribed for the treatment of solid tumors and elicits toxicity to kidney tubules, which limits its clinical use. Nuclear factor erythroid 2-related factor 2 (Nrf2, NFE2L2) is a critical transcription factor that has been shown to protect against kidney injury through activation of antioxidant mechanisms. We aimed to evaluate the ability of short-term treatment with the Nrf2 activator bardoxolone methyl (CDDO-Me) to protect against cisplatin-induced kidney cell toxicity. Cell viability was assessed in human kidney proximal tubule epithelial cells (hPTCs) exposed to low, intermediate, and high cisplatin concentrations in the presence and absence of CDDO-Me, administered either prior to or after cisplatin. Treatment with cisplatin alone resulted in reductions in hPTC viability, while CDDO-Me administered prior to or after cisplatin exposure yielded significantly higher cell viability (17%-71%). Gene regulation (mRNA expression) studies revealed the ability of CDDO-Me to modify protective pathways including Nrf2 induced detoxifying genes [GCLC (increased 1.9-fold), NQO1 (increased 9.3-fold)], and an efflux transporter [SLC47A1 (increased 4.5-fold)] at 12h. Protein assessments were in agreement with gene expression. Immunofluorescence revealed localization of GCLC and NQO1 to the nucleus and cytosol, respectively, with CDDO-Me administered prior to or after cisplatin exposure. The findings of enhanced cell viability and increased expression of detoxifying enzymes (GCLC and NQO1) and the multidrug and toxin extrusion protein 1 (MATE1) efflux transporter (SLC47A1) in hPTCs exposed to CDDO-Me, suggest that intermittent treatment with CDDO-Me prior to or after cisplatin exposure may be a promising approach to mitigate acute kidney injury.
Insights
Bardoxolone methyl (CDDO-Me) protects kidney cells from cisplatin damage by activating protective pathways. This Nrf2 activator significantly improved cell viability and boosted detoxifying gene expression, offering a promising strategy against acute kidney injury.
Area of Science:
- Nephrology
- Pharmacology
- Molecular Biology
Background:
- Cisplatin chemotherapy is effective against solid tumors but causes kidney tubule toxicity, limiting its use.
- Nuclear factor erythroid 2-related factor 2 (Nrf2) activation is a key mechanism for protecting against kidney injury.
- Bardoxolone methyl (CDDO-Me) is an Nrf2 activator with potential therapeutic benefits.
Purpose of the Study:
- To evaluate the protective effects of short-term bardoxolone methyl (CDDO-Me) treatment against cisplatin-induced kidney cell toxicity.
- To assess CDDO-Me's impact on cell viability and the expression of protective genes and proteins in kidney cells.
Main Methods:
- Human kidney proximal tubule epithelial cells (hPTCs) were exposed to cisplatin with or without CDDO-Me treatment.
- Cell viability was measured using standard assays.
- Gene expression (mRNA) and protein levels of key protective molecules were analyzed, including Nrf2-induced detoxifying enzymes and efflux transporters.
Main Results:
- CDDO-Me treatment, administered before or after cisplatin, significantly increased hPTC viability by 17%-71% compared to cisplatin alone.
- CDDO-Me upregulated Nrf2-induced detoxifying genes, such as GCLC (1.9-fold) and NQO1 (9.3-fold), and the efflux transporter SLC47A1 (4.5-fold).
- Protein expression and cellular localization of GCLC and NQO1 confirmed the gene expression findings.
Conclusions:
- Short-term administration of bardoxolone methyl (CDDO-Me) effectively mitigates cisplatin-induced kidney cell toxicity.
- CDDO-Me enhances cell viability by upregulating critical detoxifying enzymes and efflux transporters via Nrf2 activation.
- Intermittent CDDO-Me treatment represents a potential therapeutic strategy to reduce acute kidney injury in cancer patients receiving cisplatin.

