Kidney-Targeted Redox Scavenger Therapy Prevents Cisplatin-Induced Acute Kidney Injury

  • Front Pharmacol. 2022 Jan 3:12:790913. doi: 10.3389/fphar.2021.790913.
Ryan M Williams  1  2 Janki Shah  2 Elizabeth Mercer  2 Helen S Tian  2 Vanessa Thompson  2 Justin M Cheung  2 Madeline Dorso  2  3 Jaclyn M Kubala  2  3 Lorraine J Gudas  4 Elisa de Stanchina  2 Edgar A Jaimes  2  3 Daniel A Heller  2  3
Affiliations
  • 1. The City College of New York Department of Biomedical Engineering, New York, NY, United States.
  • 2. Memorial Sloan Kettering Cancer Center, New York, NY, United States.
  • 3. Weill Cornell Medical College, New York, NY, United States.
  • 4. Department of Pharmacology, Weill Cornell Medical College, New York, NY, United States.
Abstract

Cisplatin-induced acute kidney injury (CI-AKI) is a significant co-morbidity of chemotherapeutic regimens. While this condition is associated with substantially lower survival and increased economic burden, there is no pharmacological agent to effectively treat CI-AKI. The disease is hallmarked by acute tubular necrosis of the proximal tubular epithelial cells primarily due to increased oxidative stress. We investigated a drug delivery strategy to improve the pharmacokinetics of an approved therapy that does not normally demonstrate appreciable efficacy in CI-AKI, as a preventive intervention. In prior work, we developed a kidney-selective mesoscale nanoparticle (MNP) that targets the renal proximal tubular epithelium. Here, we found that the nanoparticles target the kidneys in a mouse model of CI-AKI with significant damage. We evaluated MNPs loaded with the Reactive Oxygen Species scavenger edaravone, currently used to treat stroke and ALS. We found a marked and significant therapeutic benefit with edaravone-loaded MNPs, including improved renal function, which we demonstrated was likely due to a decrease in tubular epithelial cell damage and death imparted by the specific delivery of edaravone. The results suggest that renal-selective edaravone delivery holds potential for the prevention of acute kidney injury among patients undergoing cisplatin-based chemotherapy.

Keywords
acute kidney injury; cisplatin; drug repurposing; nanomedicine; pharmacology; redox scavenger.
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