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MAS RECEPTOR BLOCKADE IMPAIRS EXERCISE-INDUCED CARDIAC HYPERTROPHY

Christoffer Novais de Farias Silva, Amanda de Sá Martins de Bessa, Jaqueline Moura da Costa,Paulo Ricardo Lopes, Ângela Ribeiro Neves, Monique Machado Louredo Teles Bombardelli,Diego Basile Colugnati,Gustavo Rodrigues Pedrino,Elizabeth Pereira Mendes, Robson Augusto Sousa dos Santos, Manoel Francisco Biancard, Fernanda Cristina Alcantara dos Santos,Carlos Henrique Castro

Peptides(2024)

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摘要
Exercise training leads to physiological cardiac hypertrophy and the protective axis of the renin-angiotensin system composed of angiotensin-converting enzyme 2, angiotensin-(1–7), and Mas receptor seems involved in this process. However, the role of the basal activity of the Mas receptor in exercise-induced physiological cardiac hypertrophy is still unclear. We evaluated the effects of the Mas receptor blockade on the left ventricular structure and function of rats submitted to running training. Rats were assigned to 4 groups: sedentary (S), sedentary + A-779 (Mas receptor antagonist, 120µg/kg/day, i.p.; SA), trained (60-minute treadmill running sessions, five days a week, 8 weeks; T), and trained + A-779 (TA). Systolic blood pressure was higher in sedentary and trained rats treated with A-779 at the end of the experimental period. The A-779 treatment prevented the left ventricular hypertrophy evoked by physical exercise and increased collagen deposition in sedentary and trained rats. Cardiomyocytes from the SA group presented increased length and thickness of the sarcomeres, elongated mitochondria, glycogen deposits, and enlarged cisterns of the sarcoplasmic reticulum. TA group presented a reduced sarcomere thickness and cytoplasm with a degenerative aspect. These findings show that the basal activity of the Mas receptor is essential for the proper turnover of the extracellular matrix in the myocardium and the maintenance of the sarcomeric structure of cardiomyocytes.
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关键词
Angiotensin-(1-7),cardiac hypertrophy,fibrosis,exercise,renin-angiotensin system
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