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. 2021 Jan 11;14(Suppl 2):ii25-ii33.
doi: 10.1093/ckj/sfaa273. eCollection 2021 Apr.

Exercise training in dialysis patients: impact on cardiovascular and skeletal muscle health

Affiliations

Exercise training in dialysis patients: impact on cardiovascular and skeletal muscle health

Asterios Deligiannis et al. Clin Kidney J. .

Abstract

Dialysis patients show a high rate of reduced functional capacity, morbidity and mortality. Cardiovascular disorders, muscle atrophy and malnutrition play an essential role among the aetiological factors. Sedentary lifestyle characterizes them and contributes to the aggravation of the disorders. On the contrary, exercise training is an important preventive and therapeutic tool both for cardiovascular problems and for the appearance of muscle atrophy in dialysis patients. Regular exercise causes both central (cardiac) and peripheral (muscular) adaptations, improving functional capacity. In particular, circulatory system clinical trials in haemodialysis (HD) patients documented that exercise has favourable effects on heart function, promotes balance on the cardiac autonomic nervous system and contributes to the management of arterial hypertension. In the muscular system, it prevents muscle atrophy or contributes significantly to its treatment. The main preventive mechanisms of the beneficial effect of exercise on the muscles constitute the inhibition of the apoptotic processes and protein degradation. Exercise training in HD patients leads to an increase of muscle fibers, mitochondria and capillaries, and the combination of regular exercise and dietary strategies is even more effective in preventing or treating muscle atrophy. Finally, an improvement in functional capacity and quality of life was found also in peritoneal dialysis patients following exercise training.

Keywords: ESKD; cardiovascular disease; dialysis; exercise; muscle mass; nutrition; physical function.

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Figures

FIGURE 1:
FIGURE 1:
Possible mechanisms of interaction exerted by nutrition and physical exercise on muscle protein metabolism.

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