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Monoamine oxidase inhibition prevents mitochondrial dysfunction and apoptosis in myoblasts from patients with collagen VI myopathies

Academic Article
Publication Date:
2014
abstract:
Although mitochondrial dysfunction and oxidative stress have been proposed to play a crucial role in several types of muscular dystrophy (MD), whether a causal link between these two alterations exists remains an open question. We have documented that mitochondrial dysfunction through opening of the permeability transition pore plays a key role in myoblasts from patients as well as in mouse models of MD, and that oxidative stress caused by monoamine oxidases (MAO) is involved in myofiber damage. In the present study we have tested whether MAO-dependent oxidative stress is a causal determinant of mitochondrial dysfunction and apoptosis in myoblasts from patients affected by collagen VI myopathies. We find that upon incubation with hydrogen peroxide or the MAO substrate tyramine myoblasts from patients upregulate MAO-B expression and display a significant rise in reactive oxygen species (ROS) levels, with concomitant mitochondrial depolarization. MAO inhibition by pargyline significantly reduced both ROS accumulation and mitochondrial dysfunction, and normalized the increased incidence of apoptosis in myoblasts from patients. Thus, MAO-dependent oxidative stress is causally related to mitochondrial dysfunction and cell death in myoblasts from patients affected by collagen VI myopathies, and inhibition of MAO should be explored as a potential treatment for these diseases. © 2014 The Authors.
Iris type:
01.01 Articolo in rivista
Keywords:
Cell death; Mitochondria; Monoamine oxidases; Muscular dystrophy; Oxidative stress
List of contributors:
Bernardi, Paolo; DI LISA, Fabio; Sabatelli, PATRIZIA ANNA
Authors of the University:
SABATELLI PATRIZIA ANNA
Handle:
https://iris.cnr.it/handle/20.500.14243/226467
Published in:
FREE RADICAL BIOLOGY & MEDICINE
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http://www.scopus.com/inward/record.url?eid=2-s2.0-84905825640&partnerID=q2rCbXpz
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