Idiopathic inflammatory myopathy human derived cells retain their ability to increase mitochondrial function

Author:

Basualto-Alarcón Carla,Urra Félix A.,Bozán María Francisca,Jaña FabiánORCID,Trangulao Alejandra,Bevilacqua Jorge A.ORCID,Cárdenas J. CésarORCID

Abstract

Idiopathic Inflammatory Myopathies (IIMs) have been studied within the framework of autoimmune diseases where skeletal muscle appears to have a passive role in the illness. However, persiting weakness even after resolving inflammation raises questions about the role that skeletal muscle plays by itself in these diseases. "Non-immune mediated" hypotheses have arisen to consider inner skeletal muscle cell processes as trigger factors in the clinical manifestations of IIMs. Alterations in oxidative phosphorylation, ATP production, calcium handling, autophagy, endoplasmic reticulum stress, among others, have been proposed as alternative cellular pathophysiological mechanisms. In this study, we used skeletal muscle-derived cells, from healthy controls and IIM patients to determine mitochondrial function and mitochondrial ability to adapt to a metabolic stress when deprived of glucose. We hypothesized that mitochondria would be dysfunctional in IIM samples, which was partially true in normal glucose rich growing medium as determined by oxygen consumption rate. However, in the glucose-free and galactose supplemented condition, a medium that forced mitochondria to function, IIM cells increased their respiration, reaching values matching normal derived cells. Unexpectedly, cell death significantly increased in IIM cells under this condition. Our findings show that mitochondria in IIM is functional and the decrease respiration observed is part of an adaptative response to improve survival. The increased metabolic function obtained after forcing IIM cells to rely on mitochondrial synthesized ATP is detrimental to the cell’s viability. Thus, therapeutic interventions that activate mitochondria, could be detrimental in IIM cell physiology, and must be avoided in patients with IIM.

Funder

fondecyt

fondap

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference24 articles.

1. Classification of myositis;IE Lundberg;Nat Rev Rheumatol,2018

2. Idiopathic inflammatory myopathies: pathogenic mechanisms of muscle weakness;S Rayavarapu;Skeletal muscle,2013

3. Activation of the endoplasmic reticulum stress response in autoimmune myositis: potential role in muscle fiber damage and dysfunction;K Nagaraju;Arthritis rheum,2005

4. Role of non-immune mechanisms of muscle damage in idiopathic inflammatory myopathies;W Coley;Arthritis Res Ther,2012

5. Activation of the ubiquitin proteasome pathway in a mouse model of inflammatory myopathy: a potential therapeutic target;S Rayavarapu;Arthritis Rheum,2013

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