Effects of moderate-continuous and high-intensity interval aerobic training on cardiac function of spontaneously hypertensive rats

Author:

Suarez Pedro Z1,Natali Antônio J1,Mill José G2,de Rezende Leonardo MT1,Soares Leôncio L1ORCID,Drummond Filipe R3,Cardoso Lucas CC1,Reis Emily CC4,Lavorato Victor N5,Carneiro-Júnior Miguel A1ORCID

Affiliation:

1. Laboratory of Exercise Biology, Department of Physical Education, Universidade Federal de Viçosa (UFV), Viçosa 36570-000, Brazil

2. Department of Physiological Sciences, Universidade Federal do Espírito Santo (UFES), Vitória 29075-210, Brazil

3. Department of General Biology, Universidade Federal de Viçosa (UFV), Viçosa 36570-000, Brazil

4. Department of Veterinary Medicine, Universidade Federal de Viçosa (UFV), Viçosa 36570-000, Brazil

5. Department of Physical Education, Centro Universitário Governador Ozanam Coelho (UNIFAGOC), Ubá 36506-022, Brazil

Abstract

The aim of this study was to verify the effects of moderate-intensity continuous (MICT) and high-intensity interval (HIIT) aerobic training on cardiac morphology and function and the mechanical properties of single cardiomyocytes in spontaneously hypertensive rats (SHR) in the compensated phase of hypertension. Sixteen-week-old male SHR and normotensive Wistar (WIS) rats were allocated to six groups of six animals each: SHR CONT or WIS CONT (control); SHR MICT or WIS MICT (underwent MICT, 30 min/day, five days per week for eight weeks); and SHR HIIT or WIS HIIT (underwent HIIT, 30 min/day, five days per week for eight weeks). Total exercise time until fatigue and maximum running speed were determined using a maximal running test before and after the experimental period. Systolic (SAP), diastolic (DAP), and mean (MAP) blood pressures were measured using tail plethysmography before and after the experimental period. Echocardiographic evaluations were performed at the end of the experimental period. The rats were euthanized after in vivo assessments, and left ventricular myocytes were isolated to evaluate global intracellular Ca2+ transient ([Ca2+]i) and contractile function. Cellular measurements were performed at basal temperature (~37°C) at 3, 5, and 7 Hz. The results showed that both training programs increased total exercise time until fatigue and, consequently, maximum running speed. In hypertensive rats, MICT decreased SAP, DAP, MAP, interventricular septal thickness during systole and diastole, and the contraction amplitude at 5 Hz. HIIT increased heart weight and left ventricular wall thickness during systole and diastole and reduced SAP, MAP, and the time to peak [Ca2+]i at all pacing frequencies. In conclusion, both aerobic training protocols promoted beneficial adaptations to cardiac morphology, function, and mechanical properties of single cardiomyocytes in SHR.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

SAGE Publications

Subject

General Biochemistry, Genetics and Molecular Biology

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