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Published on: July 17, 2016
Quantitative gene expression analysis in a nonhuman primate model of antibiotic-induced nephrotoxicity
John W Davis1, Federico M Goodsaid, Christopher M Bral
1Division of Drug Safety and Metabolism, Schering-Plough Research Institute, Lafayette, NJ 07848, USA. john.w.1.davis@pharmacia.com
Abstract:
Gene expression patterns using microarrays have been described for rodent models of nephrotoxicity. To determine if significant gene expression changes previously identified have application across multiple species, we studied quantitative gene expression changes in the kidneys of female cynomolgus monkeys after exposure to two nephrotoxicants. Animals were dosed with the aminoglycoside gentamicin (10 mg/kg), the experimental oligosaccharide antibiotic everninomicin (30 or 60 mg/kg), or a combination of gentamicin (10 mg/kg) and everninomicin (30 mg/kg) for 7 days. Monkeys receiving these drugs in combination developed renal lesions as early as Day 1. By Day 7, monkeys dosed with 60 mg/kg everninomicin alone also developed renal lesions, while the group exposed to both compounds had more extensive renal damage. The modulation of several genes previously reported to be associated with nephrotoxicity in rodent models was confirmed using quantitative real-time PCR. Among these, waf-1, matrix metalloproteinase-9, and vimentin exhibited changes consistent with the definition of a genomic indicator of toxicity. In addition, we identified three early gene biomarkers that may be predictive of drug-induced nephrotoxicity: clusterin, osteopontin, and hepatitis A virus cellular receptor-1. Logistic regression demonstrated a high degree of correlation between changes in gene expression and the probability of the development of histopathologic lesions. These results are the first confirming rodent gene expression changes associated with nephrotoxicity in a nonhuman primate model and provide preliminary evidence for identifying early gene expression changes predicting the onset of drug-induced renal tubular damage in cynomolgus monkeys.
Insights
This study confirms rodent gene expression changes in cynomolgus monkeys exposed to nephrotoxicants. Early gene biomarkers were identified, predicting drug-induced kidney damage.
Area of Science:
- Toxicology
- Genomics
- Primate Research
Background:
- Rodent models have provided insights into gene expression changes during nephrotoxicity.
- The applicability of these findings across species remains to be fully elucidated.
Purpose of the Study:
- To investigate if previously identified gene expression changes in rodent nephrotoxicity models are applicable to nonhuman primates.
- To identify early gene biomarkers predictive of drug-induced kidney damage in cynomolgus monkeys.
Main Methods:
- Cynomolgus monkeys were exposed to gentamicin, everninomicin, or a combination for 7 days.
- Quantitative real-time PCR was used to measure gene expression.
- Logistic regression analyzed the correlation between gene expression and renal lesions.
Main Results:
- Drug combinations and high-dose everninomicin induced renal lesions and damage.
- Gene expression changes for waf-1, matrix metalloproteinase-9, and vimentin were confirmed.
- Clusterin, osteopontin, and hepatitis A virus cellular receptor-1 emerged as potential early biomarkers for nephrotoxicity.
Conclusions:
- Confirms rodent-based gene expression changes in a nonhuman primate model of nephrotoxicity.
- Identifies potential early gene biomarkers for predicting drug-induced renal tubular damage in cynomolgus monkeys.
- Highlights the utility of gene expression profiling in toxicological assessments across species.
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