Rapid mitochondrial repolarization upon reperfusion after cardiac ischemia
- PMID: 41381906
- PMCID: PMC12708349
- DOI: 10.1038/s44161-025-00752-9
Rapid mitochondrial repolarization upon reperfusion after cardiac ischemia
Abstract
The mitochondrial membrane potential (ΔΨm) drives oxidative phosphorylation and alterations contribute to cardiac pathologies, but real-time assessment of ΔΨm has not been possible. Here we describe noninvasive measurements using mitochondrial heme bL and bH absorbances, which rapidly respond to ΔΨm. Multi-wavelength absorbance spectroscopy enabled their continuous monitoring in isolated mitochondria and the perfused heart. Calibration of heme b absorbance in isolated mitochondria revealed that reduced heme bL relative to total reduced heme b (fbL = bL/(bL + bH)) exhibits a sigmoidal relationship with ΔΨm. Extrapolating this relationship to the heart enabled estimation of ΔΨm as 166 ± 18 mV (n = 25, mean ± s.d.). We used this approach to assess how ΔΨm changes during ischemia-reperfusion injury, an unknown limiting the understanding of ischemia-reperfusion injury. In perfused hearts, ΔΨm declined during ischemia and rapidly reestablished upon reperfusion, supported by oxidation of the succinate accumulated during ischemia. These findings expand our understanding of ischemia-reperfusion injury.
© 2025. The Author(s).
Conflict of interest statement
Competing interests: T.K. and M.P.M. are founders and officers of Camoxis Pharmaceuticals. The other authors declare no competing interests.
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