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Updated: Jun 17, 2025

Determining the Contribution of the Energy Systems During Exercise
Published on: March 20, 2012
Charting the Molecular Terrain of Exercise: Energetics, Exerkines, and the Future of Multiomic Mapping
Daniel H Katz1, Maléne E Lindholm1, Euan A Ashley1
1Division of Cardiovascular MedicineStanford University School of Medicine, Stanford, California, United States.
Abstract:
Physical activity plays a fundamental role in human health and disease. Exercise has been shown to improve a wide variety of disease states, and the scientific community is committed to understanding the precise molecular mechanisms that underlie the exquisite benefits. This review provides an overview of molecular responses to acute exercise and chronic training, particularly energy mobilization and generation, structural adaptation, inflammation, and immune regulation. Furthermore, it offers a detailed discussion of known molecular signals and systemic regulators activated during various forms of exercise and their role in orchestrating health benefits. Critically, the increasing use of multiomic technologies is explored with an emphasis on how multiomic and multitissue studies contribute to a more profound understanding of exercise biology. These data inform anticipated future advancement in the field and highlight the prospect of integrating exercise with pharmacology for personalized disease prevention and treatment.

