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The Effect of Deflazacort Treatment on the Functioning of Skeletal Muscle Mitochondria in Duchenne Muscular Dystrophy

Mikhail V. Dubinin, Eugeny Yu. Talanov, Kirill S. Tenkov, Vlada S. Starinets, Natalia V. Belosludtseva, Konstantin N. Belosludtsev

2020International Journal of Molecular Sciences31 citationsDOIOpen Access PDF

Abstract

Duchenne muscular dystrophy (DMD) is a severe hereditary disease caused by a lack of dystrophin, a protein essential for myocyte integrity. Mitochondrial dysfunction is reportedly responsible for DMD. This study examines the effect of glucocorticoid deflazacort on the functioning of the skeletal-muscle mitochondria of dystrophin-deficient mdx mice and WT animals. Deflazacort administration was found to improve mitochondrial respiration of mdx mice due to an increase in the level of ETC complexes (complexes III and IV and ATP synthase), which may contribute to the normalization of ATP levels in the skeletal muscle of mdx animals. Deflazacort treatment improved the rate of Ca2+ uniport in the skeletal muscle mitochondria of mdx mice, presumably by affecting the subunit composition of the calcium uniporter of organelles. At the same time, deflazacort was found to reduce the resistance of skeletal mitochondria to MPT pore opening, which may be associated with a change in the level of ANT2 and CypD. In this case, deflazacort also affected the mitochondria of WT mice. The paper discusses the mechanisms underlying the effect of deflazacort on the functioning of mitochondria and contributing to the improvement of the muscular function of mdx mice.

Topics & Concepts

DeflazacortDuchenne muscular dystrophySkeletal musclemdx mouseDystrophinMitochondrionEndocrinologyInternal medicineUtrophinMuscular dystrophySarcolemmaMyogenesisMyocyteITGA7BiologyChemistryMedicineCell biologyMuscle Physiology and DisordersMitochondrial Function and PathologyAdipose Tissue and Metabolism
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