Affiliation:
1. Faculty of Health and Sport Sciences, University of Tsukuba, Japan
Abstract
Arterial compliance (AC) is an index of the elasticity of large arteries. Endothelial dysfunction has been reported to result in reduced arterial compliance, which represents increased arterial stiffness. A reduction in AC is elicited by high-intensity resistance training, however the mechanisms are obscure. Because a single bout of resistance exercise causes a transient increase in circulating plasma endothelin-1 in humans, some vasoconstrictors may play a role in the mechanisms. The present study aimed to investigate whether resistance training-induced decrease in AC is associated with changes in circulating vasoconstrictors levels in young men. Young sedentary men were assigned to control (n=5) or training (n=9) groups. The training group performed four-week high-intensity resistance training (weight training exercise; three sessions/week). We measured AC and plasma levels of endothelin-1, angiotensin II, and norepinephrine before and after intervention. Resistance training significantly decreased AC, whereas the changes in plasma levels of neither endothelin-1, nor angiotensin II, nor norepinephrine were significantly different between the control and the training groups. Moreover, we found no significant correlations between changes in circulating plasma levels (endothelin-1, angiotensin II, and norepinephrine) and in the AC. Despite of no alteration of the resting circulating plasma levels (endothelin-1, etc.), we cannot exclude a possibility that the tissue/local concentrations of vasoconstrictors (endothelin-1, etc.) around the vessels might be increased and also involved in a reduction of AC in the training group. Taken together, the present results suggest that circulating vasoconstrictors (endothelin-1, etc.) in plasma are not involved in a reduction in AC by the resistance training.
Publisher
Institute of Physiology of the Czech Academy of Sciences
Subject
General Medicine,Physiology
Reference53 articles.
1. ANGUS JA, HUGHES RJA, WRIGHT CE: Distortion of KB estimates of endothelin-1 ETA and ETB receptor antagonists in pulmonary arteries: possible role of an endothelin-1 clearance mechanism. Pharmacol Res Perspect 5: e00374, 2017.
2. BARTON M, YANAGISAWA M: Endothelin: 20 years from discovery to therapy. Can J Physiol Pharmacol 86: 485-498, 2008.
3. BEACHLE TR, EARLE RW, WATHEN D: Resistance training. In: Essentials of Strength Training and Conditioning. 3rd ed., BEACHLE TR, EARLE RW (eds), Human Kinetics, Champaign, 2008, pp 381-412.
4. BERTHIAUME N, YANAGISAWA M, LABONTÉ J, D'ORLÉANS-JUSTE P: Heterozygous knock-out of ET(B) receptors induces BQ-123-sensitive hypertension in the mouse. Hypertension 36: 1002-1007, 2000.
5. BURKHARDT M, BARTON M, SHAW SG: Receptor- and non-receptor-mediated clearance of big-endothelin and endothelin-1: differential effects of acute and chronic ETA receptor blockade. J Hypertens 18: 273-279, 2000.
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