Mimicking exercise in vitro: effects of myotube contractions and mechanical stretch on omics

Author:

Lautaoja J. H.12ORCID,Turner D. C.3,Sharples A. P.3,Kivelä R.1ORCID,Pekkala S.1,Hulmi J. J.1,Ylä-Outinen L.1ORCID

Affiliation:

1. Faculty of Sport and Health Sciences, NeuroMuscular Research Center, University of Jyväskylä, Jyväskylä, Finland

2. Faculty of Medicine, Research Unit of Internal Medicine, University of Oulu, Oulu, Finland

3. Institute for Physical Performance, Norwegian School of Sport Sciences (NIH), Oslo, Norway

Abstract

The number of studies using skeletal muscle (SkM) cell culture models to study exercise in vitro are rapidly expanding. Progressively, more comprehensive analysis methods, such as different omics approaches including transcriptomics, proteomics, and metabolomics have been used to examine the intra- and extracellular molecular responses to exercise mimicking stimuli in cultured myotubes. Among other techniques, exercise-like electrical pulse stimulation (EL-EPS) and mechanical stretch of SkM cells are the two most commonly used methods to mimic exercise in vitro. In this mini-review, we focus on these two approaches and their effects on the omics of myotubes and/or cell culture media. Furthermore, besides traditional two-dimensional (2-D) methods, the use of three-dimensional (3-D) SkM approaches are increasing in the field of in vitro exercise mimicry. Our aim with this mini-review is to provide the reader with an up-to-date overview of the 2-D and 3-D models and the use of omics approaches to study the molecular response to exercise in vitro.

Funder

Finnish Cultural Foundation

Emil Aaltonen Foundation

Research Council of Norway

Academy of Finland

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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