Exercise-induced skeletal muscle angiogenesis: impact of age, sex, angiocrines and cellular mediators

被引:0
作者
Mark Ross
Christopher K. Kargl
Richard Ferguson
Timothy P. Gavin
Ylva Hellsten
机构
[1] Heriot-Watt University,School of Energy, Geoscience, Infrastructure and Society
[2] University of Pittsburgh,Department of Sports Medicine and Nutrition
[3] Loughborough University,School of Sport, Exercise and Health Sciences
[4] Purdue University,Department of Health and Kinesiology, Max E. Wastl Human Performance Laboratory
[5] University of Copenhagen,Department of Nutrition, Exercise and Sports
来源
European Journal of Applied Physiology | 2023年 / 123卷
关键词
Exercise; Angiogenesis; Capillarisation; VEGF; Endothelial cells; Vascular smooth muscle; Muscle blood flow; Extracellular vesicles;
D O I
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中图分类号
学科分类号
摘要
Exercise-induced skeletal muscle angiogenesis is a well-known physiological adaptation that occurs in humans in response to exercise training and can lead to endurance performance benefits, as well as improvements in cardiovascular and skeletal tissue health. An increase in capillary density in skeletal muscle improves diffusive oxygen exchange and waste extraction, and thus greater fatigue resistance, which has application to athletes but also to the general population. Exercise-induced angiogenesis can significantly contribute to improvements in cardiovascular and metabolic health, such as the increase in muscle glucose uptake, important for the prevention of diabetes. Recently, our understanding of the mechanisms by which angiogenesis occurs with exercise has grown substantially. This review will detail the biochemical, cellular and biomechanical signals for exercise-induced skeletal muscle angiogenesis, including recent work on extracellular vesicles and circulating angiogenic cells. In addition, the influence of age, sex, exercise intensity/duration, as well as recent observations with the use of blood flow restricted exercise, will also be discussed in detail. This review will provide academics and practitioners with mechanistic and applied evidence for optimising training interventions to promote physical performance through manipulating capillarisation in skeletal muscle.
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页码:1415 / 1432
页数:17
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