| Literature DB >> 33378671 |
Thomas Morville1, Ronni E Sahl2, Thomas Moritz1, Jørn W Helge3, Christoffer Clemmensen4.
Abstract
The mechanisms by which exercise benefits human health remain incompletely understood. With the emergence of omics techniques, mapping of the molecular response to exercise is increasingly accessible. Here, we perform an untargeted metabolomics profiling of plasma from a randomized, within-subjects, crossover study of either endurance exercise or resistance exercise, two types of skeletal muscle activity that have differential effects on human physiology. A high-resolution time-series analyses reveal shared as well as exercise-mode-specific perturbations in a multitude of metabolic pathways. Moreover, the analyses reveal exercise-induced changes in metabolites that are recognized to act as signaling molecules. Thus, we provide a metabolomic signature of how dissimilar modes of exercise affect the organism in a time-resolved fashion.Entities:
Keywords: endurance exercise; exercise; exerkine; metabolome; metabolomics; resistance exercise; skeletal muscle
Year: 2020 PMID: 33378671 DOI: 10.1016/j.celrep.2020.108554
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423