Related Experiment Video
Updated: Mar 31, 2026

Absolute Quantification of Plasma MicroRNA Levels in Cynomolgus Monkeys, Using Quantitative Real-time Reverse Transcription PCR
Published on: February 12, 2018
MicroRNA as biomarkers of mitochondrial toxicity
Bethany R Baumgart1, Katherine L Gray1, Jochen Woicke2
1Department of Toxicology, Drug Safety Evaluation, Bristol-Myers Squibb, 4401 Highway 62 East, Mount Vernon, IN 47620, USA.
Abstract:
Mitochondrial toxicity can be difficult to detect as most cells can tolerate reduced activity as long as minimal capacity for function is maintained. However, once minimal capacity is lost, apoptosis or necrosis occurs quickly. Identification of more sensitive, early markers of mitochondrial toxicity was the objective of this work. Rotenone, a mitochondrial complex I inhibitor, and 3-nitropropionic acid (3-NP), a mitochondrial complex II inhibitor, were administered daily to male Sprague-Dawley rats at subcutaneous doses of 0.1 or 0.3mg/kg/day and intraperitoneal doses of 5 or 10mg/kg/day, respectively, for 1week. Samples of kidney, skeletal muscle (quadriceps femoris), and serum were collected for analysis of mitochondrial DNA (mtDNA) copy number and microRNA (miRNA) expression patterns. MtDNA was significantly decreased with administration of rotenone at 0.3mg/kg/day and 3-NP at 5 and 10mg/kg/day in the quadriceps femoris and with 3-NP at 10mg/kg/day in the kidney. Additionally, rotenone and 3-NP treatment produced changes to miRNA expression that were similar in direction (i.e. upregulation, downregulation) to those previously linked to mitochondrial functions, such as mitochondrial damage and biogenesis (miR-122, miR-202-3p); regulation of ATP synthesis, abolished oxidative phosphorylation, and loss of membrane potential due to increased reactive oxygen species (ROS) production (miR-338-5p, miR-546, miR-34c); and mitochondrial DNA damage and depletion (miR-546). These results suggest that miRNAs may be sensitive biomarkers for early detection of mitochondrial toxicity.
Insights
MicroRNAs (miRNAs) show promise as early biomarkers for mitochondrial toxicity. This study found that specific miRNA expression changes correlated with mitochondrial damage in rats treated with toxins.
Area of Science:
- Biochemistry
- Toxicology
- Molecular Biology
Background:
- Mitochondrial toxicity is often detected late, after irreversible cell damage.
- Early detection of mitochondrial dysfunction is crucial for preventing severe cellular damage like apoptosis or necrosis.
Purpose of the Study:
- To identify sensitive, early biomarkers for mitochondrial toxicity.
- To investigate the impact of mitochondrial complex inhibitors on mitochondrial DNA (mtDNA) and microRNA (miRNA) expression.
Main Methods:
- Male Sprague-Dawley rats were administered rotenone (complex I inhibitor) or 3-nitropropionic acid (3-NP, complex II inhibitor) daily for one week.
- Kidney, skeletal muscle, and serum samples were analyzed for mtDNA copy number and miRNA expression.
- Changes in miRNA expression were compared to known mitochondrial functions and damage pathways.
Main Results:
- Significant decreases in mtDNA copy number were observed in skeletal muscle and kidney following rotenone and 3-NP administration.
- Both rotenone and 3-NP altered miRNA expression patterns.
- Observed miRNA changes mirrored those associated with mitochondrial damage, biogenesis, ATP synthesis disruption, and mtDNA depletion.
Conclusions:
- miRNAs may serve as sensitive biomarkers for the early detection of mitochondrial toxicity.
- miRNA profiling offers a potential strategy for monitoring mitochondrial health and identifying toxic insults at an early stage.

