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January 1, 2000Japanese Circulation Journal-english Edition12 citationsOpen Access

Physiological Role of Endothelin-1 in Nonworking Muscles During Exercise in Healthy Subjects

KTKazuhiko TanabeAYAkiko YamamotoYYYasuhiro Yokoyama

Structured PICO

P
Population
36 healthy men, mean age 22.5 years
I
Intervention
Bicycle ergometer cardiopulmonary exercise test
C
Comparator
Resting state (baseline)
O
Outcome
ET-1 plasma concentration change ratio (immediately following exercise / resting state) and its correlation with exercise parameterssurrogate

An increase in ET-1 in nonworking muscles during exercise may participate in the physiological redistribution of blood flow to working muscles.

Abstract

Endothelin-1 (ET-1) is a potent vasoconstrictor peptide produced by vascular endothelial cells. However, the role of ET-1 in exercise-induced physiological responses is still to be investigated. The purpose of the present study was to investigate in healthy volunteers whether the ET-1 plasma concentration in nonworking muscles is changed by exercise and to investigate the physiological role of ET-1 during exercise. Bicycle ergometer cardiopulmonary exercise tests were performed in 36 healthy men (mean age, 22.5 years). Blood samples for measuring ET-1 were drawn from the cubital vein during rest and immediately after the exercise test. The ET-1 change ratio was calculated as ET-1 immediately following exercise/ET-1 during the resting state. Cardiac output (CO) was measured during the exercise test by the impedance method. Arterial venous oxygen difference (AVO2D) when CO reached 10L/min or 15L/min was calculated as AVO2D = VO2/CO. Results were as follows: (1) the ET-1 change ratio correlated inversely with exercise time at the anaerobic threshold (r = -0.37, p = 0.03) and peak exercise time (r = -0.35, p = 0.04); (2) the ET-1 change ratio tended toward an inverse correlation with deltaVO2/deltawork rate (r = -0.29, p = 0.09); (3) the ET-1 change ratio correlated positively with AVO2D when CO reached 10L/min (r = 0.42, p = 0.02) and tended toward a positive correlation with AVO2D when CO reached 15 L/min (r = 0.32, p = 0.08). These results indicate that an increase in ET-1 in nonworking muscles may participate in the exercise-induced redistribution of blood flow and in increasing the blood flow to working muscles.

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Cite This Study

Tanabe et al. (2000) studied this question.

synapsesocial.com/papers/6a895fb2f8670bac6e333f1ehttps://doi.org/10.1253/jcj.64.27
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