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Small RNA Sequencing to Discover Circulating MicroRNA Biomarkers of Testicular Toxicity in Dogs
Jennifer C Shing1, Kai Schaefer2, Shaun E Grosskurth1
1359181AbbVie, Inc. North Chicago, IL, USA.
Abstract:
Predictive indicators of testicular toxicity could improve drug development by allowing early in-life screening for this adverse effect before it becomes severe. We hypothesized that circulating microRNAs (miRNAs) could serve as testicular toxicity biomarkers in dogs. Herein, we describe the results of an exploratory study conducted to discover biomarkers of drug-induced testicular injury. Following a dose-selection study using the testicular toxicant ethylene glycol monomethyl ether (EGME), we chose a dose of 50 mg/kg/d EGME to avoid systemic toxicity and treated 2 groups of dogs (castrated, non-castrated) for 14 to 28 days. Castrated animals were used as negative controls to identify biomarkers specific for testicular toxicity because EGME can cause toxicity to organ systems in addition to the testis. Blood was collected daily during the dosing period, followed by recovery for 29 to 43 days with less frequent sampling. Dosing was well tolerated, resulting in mild-to-moderate degeneration in testes and epididymides. Global profiling of serum miRNAs at selected dosing and recovery time points was completed by small RNA sequencing. Bioinformatics data analysis using linear modeling demonstrated several circulating miRNAs that were differentially abundant during the dosing period compared with baseline and/or castrated control samples. Confirmatory reverse transcription quantitative polymerase chain reaction data in these animals was unable to detect sustained alterations of miRNAs in serum, except for 1 potential candidate cfa-miR-146b. Taken together, we report the results of a comprehensive exploratory study and suggest future directions for follow-up research to address the challenge of developing diagnostic biomarkers of testicular toxicity.
Insights
Researchers explored circulating microRNAs (miRNAs) as biomarkers for drug-induced testicular toxicity in dogs. While some miRNAs showed changes, only cfa-miR-146b emerged as a potential candidate, requiring further investigation.
Area of Science:
- Toxicology
- Biomarker Discovery
- Veterinary Medicine
Background:
- Drug development requires early screening for testicular toxicity.
- Circulating microRNAs (miRNAs) are potential biomarkers for adverse effects.
- Ethylene glycol monomethyl ether (EGME) is a known testicular toxicant.
Purpose of the Study:
- To discover circulating miRNA biomarkers for drug-induced testicular toxicity in dogs.
- To investigate the utility of miRNAs as early indicators of testicular injury.
- To differentiate testicular toxicity from systemic effects.
Main Methods:
- Dogs (castrated and intact) were treated with EGME (50 mg/kg/d) for 14-28 days.
- Serum samples were collected daily during dosing and recovery periods.
- Small RNA sequencing and bioinformatics analysis were used for miRNA profiling, with RT-qPCR for confirmation.
Main Results:
- EGME treatment caused mild-to-moderate testicular and epididymal degeneration.
- Bioinformatics analysis identified several differentially abundant circulating miRNAs.
- Confirmatory analysis revealed only cfa-miR-146b as a potential, albeit not consistently sustained, biomarker candidate.
Conclusions:
- Circulating miRNAs show potential as biomarkers for testicular toxicity.
- Further research is needed to validate cfa-miR-146b and identify other reliable biomarkers.
- Developing diagnostic biomarkers is crucial for improving drug safety and development.
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