Secondary mitochondrial dysfunction across the spectrum of hereditary and acquired muscle disorders.

Mark Tarnopolsky, Gloria Mak, Jian-Qiang Lu

Journal: Mitochondrion 2024;78():101945

PMID: 39134108

Abstract

Mitochondria form a dynamic network within skeletal muscle. This network is not only responsible for producing adenosine triphosphate (ATP) through oxidative phosphorylation, but also responds through fission, fusion and mitophagy to various factors, such as increased energy demands, oxidative stress, inflammation, and calcium dysregulation. Mitochondrial dysfunction in skeletal muscle not only occurs in primary mitochondrial myopathies, but also other hereditary and acquired myopathies. As such, this review attempts to highlight the clinical and histopathologic aspects of mitochondrial dysfunction seen in hereditary and acquired myopathies, as well as discuss potential mechanisms leading to mitochondrial dysfunction and therapies to restore mitochondrial function.

Published by Elsevier B.V.

Address: University of Alberta, Department of Neurology, Edmonton, Alberta, Canada.; McMaster University, Department of Medicine and Pediatrics, Hamilton, Ontario, Canada.; McMaster University, Department of Pathology and Molecular Medicine, Hamilton, Ontario, Canada. Electronic address: [email protected].

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