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The Journal of Sports Medicine and Physical Fitness 2021 March;61(3):489-96
DOI: 10.23736/S0022-4707.20.11316-1
Copyright © 2020 EDIZIONI MINERVA MEDICA
lingua: Inglese
Chronic swimming training resulted in more relaxed coronary arterioles in male and enhanced vasoconstrictor ability in female rats
Marianna TÖRÖK 1 ✉, Eszter M. HORVÁTH 2, Anna MONORI-KISS 3, Éva PÁL 3, Dóra GERSZI 1, Petra MERKELY 1, Alex A. SAYOUR 4, Csaba MÁTYÁS 4, Attila OLÁH 4, Tamás RADOVITS 4, Béla MERKELY 4, Nándor ÁCS 1, György L. NÁDASY 2, Szabolcs VÁRBÍRÓ 1
1 Department of Obstetrics and Gynecology, Semmelweis University, Budapest, Hungary; 2 Department of Physiology, Semmelweis University, Budapest, Hungary; 3 Institute of Clinical Experimental Research, Semmelweis University, Budapest, Hungary; 4 Heart and Vascular Center, Semmelweis University, Budapest, Hungary
BACKGROUND: Exercise training is associated with hypertrophy of left ventricle (LV). The aim of the present study is to evaluate sex differences in the adaptation of the coronary contractile function in physiological left ventricular hypertrophy induced by long-term swim training.
METHODS: Thirty-two Wistar rats were randomly divided into 4 groups: exercised male (ExM), exercised female (ExF), untrained control male (CoM), and untrained control female (CoF). The trained animals underwent a 12-week-long swim training program. After finishing the training program, LV morphology and function were checked by echocardiography. The spontaneous tone, thromboxane (TxA
RESULTS: The LV mass index was significantly higher in the ExM and ExF groups, furthermore the LV mass index was significantly higher in female than in male animals. ExM animals had lower spontaneous tone than ExF. TxA
CONCLUSIONS: Both sexes broaden their range of contractility following chronic swimming, but the vessel tone shifted toward contraction in exercised female rats, while these values shifted toward relaxation in males. These observations underline the significance of identifying potential gender differences in the chronic exercise-induced coronary vascular remodeling in human athletes.
KEY WORDS: Exercise; Coronary vessels; Myocardial contractility; Sex; Sports