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Updated: Jul 7, 2026

Early Detection of Drug-Induced Renal Hemodynamic Dysfunction Using Sonographic Technology in Rats
Published on: March 11, 2016
Validation of putative genomic biomarkers of nephrotoxicity in rats
Er-Jia Wang1, Ronald D Snyder, Mark R Fielden
1Department of Genetic and Molecular Toxicology, Drug Safety and Metabolism Division, Schering-Plough Corporation, Summit, NJ 07901, USA.
Abstract:
Drug-induced renal injury is a common finding in the early preclinical phase of drug development. But the specific genes responding to renal injury remain poorly defined. Identification of drug-induced gene changes is critical to provide insights into molecular mechanisms and detection of renal damage. To identify genes associated with the development of drug-induced nephrotoxicity, a literature survey was conducted and a panel of 48 genes was selected based on gene expression changes in multiple published studies. Male Sprague-Dawley rats were dosed daily for 1, 3 or 5 days to the known nephrotoxicants gentamicin, bacitracin, vancomycin and cisplatin, or the known hepatotoxicants ketoconazole, 1-naphthyl isothiocyanate and 4,4-diaminodiphenylmethane. Histopathological evaluation and clinical chemistry revealed renal proximal tubular necrosis in rats treated with the nephrotoxicants, but not from those treated with the hepatotoxicants. RNA was extracted from the kidney, and RT-PCR was performed to evaluate expression profiles of the selected genes. Among the genes examined, 24 genes are confirmed to be highly induced or repressed in rats treated with nephrotoxicants; further investigation identified that 5 of the 24 genes were also altered by hepatotoxicants. These data led to the identification of a set of genomic biomarker candidates whose expression in kidney is selectively regulated only by nephrotoxicants. Among those genes displaying the highest expression changes specifically in nephrotoxicant-treated rats were kidney injury molecule 1 (Kim1), lipocalin 2 (Lcn2), and osteopontin (Spp1). The establishment of such a genomic marker set offers a new tool in our ongoing quest to monitor nephrotoxicity.
Insights
Researchers identified key genes in the kidney that indicate drug-induced renal injury. This discovery offers a new method for monitoring drug toxicity during preclinical development.
Area of Science:
- Toxicology
- Genomics
- Preclinical Drug Development
Background:
- Drug-induced renal injury is a frequent preclinical observation.
- The specific genes involved in drug-induced kidney damage are not well understood.
- Identifying these genes is crucial for understanding molecular mechanisms and detecting renal damage.
Purpose of the Study:
- To identify genes associated with the development of drug-induced nephrotoxicity.
- To discover genomic biomarkers that selectively indicate kidney damage from drug exposure.
Main Methods:
- A literature survey identified 48 candidate genes.
- Rats were treated with known nephrotoxicants or hepatotoxicants.
- Gene expression in kidney tissue was analyzed using RT-PCR.
Main Results:
- Histopathology confirmed renal proximal tubular necrosis in nephrotoxicant-treated rats.
- 24 genes showed significant induction or repression in response to nephrotoxicants.
- Five genes were altered by both nephrotoxicants and hepatotoxicants, while others were specific to nephrotoxicity.
Conclusions:
- A set of genomic biomarkers selectively regulated by nephrotoxicants was identified.
- Kidney Injury Molecule 1 (Kim1), Lipocalin 2 (Lcn2), and Osteopontin (Spp1) showed significant specific changes.
- This genomic marker set provides a novel tool for monitoring nephrotoxicity in drug development.
