Related Experiment Video
Updated: Mar 9, 2026

Unveiling Xenobiotic Transport and Effects in Isolated Mitochondria: Insights from Respirometric and Enzymatic Assays
Published on: March 7, 2025
Effects of 31 FDA approved small-molecule kinase inhibitors on isolated rat liver mitochondria
Jun Zhang1, Alec Salminen1,2, Xi Yang1
1Division of Systems Biology, National Center for Toxicological Research, Food and Drug Administration, 3900 NCTR Road, Jefferson, AR, 72079, USA.
Abstract:
The FDA has approved 31 small-molecule kinase inhibitors (KIs) for human use as of November 2016, with six having black box warnings for hepatotoxicity (BBW-H) in product labeling. The precise mechanisms and risk factors for KI-induced hepatotoxicity are poorly understood. Here, the 31 KIs were tested in isolated rat liver mitochondria, an in vitro system recently proposed to be a useful tool to predict drug-induced hepatotoxicity in humans. The KIs were incubated with mitochondria or submitochondrial particles at concentrations ranging from therapeutic maximal blood concentrations (Cmax) levels to 100-fold Cmax levels. Ten endpoints were measured, including oxygen consumption rate, inner membrane potential, cytochrome c release, swelling, reactive oxygen species, and individual respiratory chain complex (I-V) activities. Of the 31 KIs examined only three including sorafenib, regorafenib and pazopanib, all of which are hepatotoxic, caused significant mitochondrial toxicity at concentrations equal to the Cmax, indicating that mitochondrial toxicity likely contributes to the pathogenesis of hepatotoxicity associated with these KIs. At concentrations equal to 100-fold Cmax, 18 KIs were found to be toxic to mitochondria, and among six KIs with BBW-H, mitochondrial injury was induced by regorafenib, lapatinib, idelalisib, and pazopanib, but not ponatinib, or sunitinib. Mitochondrial liability at 100-fold Cmax had a positive predictive power (PPV) of 72% and negative predictive power (NPV) of 33% in predicting human KI hepatotoxicity as defined by product labeling, with the sensitivity and specificity being 62% and 44%, respectively. Similar predictive power was obtained using the criterion of Cmax ≥1.1 µM or daily dose ≥100 mg. Mitochondrial liability at 1-2.5-fold Cmax showed a 100% PPV and specificity, though the NPV and sensitivity were 32% and 14%, respectively. These data provide novel mechanistic insights into KI hepatotoxicity and indicate that mitochondrial toxicity at therapeutic levels can help identify hepatotoxic KIs.
Insights
Hepatotoxic kinase inhibitors (KIs) can cause liver damage. This study found that mitochondrial toxicity at therapeutic levels, assessed using rat liver mitochondria, can predict which KIs are likely to cause liver injury in humans.
Area of Science:
- Biochemistry
- Pharmacology
- Toxicology
Background:
- 31 small-molecule kinase inhibitors (KIs) are approved for human use, with six having black box warnings for hepatotoxicity.
- The mechanisms and risk factors for KI-induced hepatotoxicity remain poorly understood.
- Isolated rat liver mitochondria offer a potential in vitro model for predicting drug-induced hepatotoxicity.
Purpose of the Study:
- To investigate the utility of isolated rat liver mitochondria in predicting KI-induced hepatotoxicity.
- To assess mitochondrial toxicity of 31 KIs at therapeutic and supra-therapeutic concentrations.
- To correlate mitochondrial dysfunction with human hepatotoxicity data from product labeling.
Main Methods:
- 31 KIs were incubated with isolated rat liver mitochondria or submitochondrial particles.
- Concentrations ranged from maximal blood concentrations (Cmax) to 100-fold Cmax.
- Ten endpoints were measured, including oxygen consumption, membrane potential, cytochrome c release, swelling, ROS production, and respiratory chain complex activities.
Main Results:
- Sorafenib, regorafenib, and pazopanib caused significant mitochondrial toxicity at Cmax concentrations.
- At 100-fold Cmax, 18 KIs showed mitochondrial toxicity; regorafenib, lapatinib, idelalisib, and pazopanib induced mitochondrial injury among those with black box warnings.
- Mitochondrial liability at therapeutic levels (1-2.5-fold Cmax) demonstrated 100% positive predictive power and specificity for predicting human KI hepatotoxicity.
Conclusions:
- Mitochondrial toxicity at therapeutic concentrations is a significant indicator of potential KI-induced hepatotoxicity.
- The in vitro mitochondrial assay provides mechanistic insights into KI-induced liver injury.
- This model can aid in identifying hepatotoxic KIs early in drug development.
Related Concept Videos
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
The Electron Transport Chain
Inhibitors of the electron transport chain
Rotenone, a widely used pesticide, prevents electron transfer from Fe-S cluster to ubiquinone or Q...

