Combined exercise hinders the progression of pulmonary and right heart harmful remodeling in monocrotaline-induced pulmonary arterial hypertension.

IF 3.3 3区 医学 Q1 PHYSIOLOGY Journal of applied physiology Pub Date : 2024-11-29 DOI:10.1152/japplphysiol.00379.2024
Luciano Bernardes Leite, Leôncio Lopes Soares, Alexandre Martins Oliveira Portes, Bruna Aparecida Fonseca da Silva, Tais Rodrigues Dias, Thayana Inácia Soares, Mirian Quintão Assis, Luiz Otávio Guimarães-Ervilha, Miguel Araújo Carneiro Júnior, Pedro Forte, Mariana Machado-Neves, Emily Correna Carlo Reis, Antônio José Natali
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Abstract

The aim of this study was to test whether combined physical exercise training of moderate intensity executed during the development of monocrotaline (MCT)-induced pulmonary arterial hypertension (PAH) hinders the progression of pulmonary and right heart harmful functional and structural remodeling in rats. Wistar rats were injected with MCT (60 mg/kg) and after 24 hours were exposed to a combined exercise training program: aerobic exercise (Treadmill running - 60 min/day; 60% of maximum running speed); and resistance exercise (Vertical ladder climbing - 15 climbs; 60% of maximum carrying load), on alternate days, 5 days/week, for approximately 3 weeks. After euthanasia, lung, and right ventricle (RV) were excised and processed for histological, single myocyte and biochemical analyses. Combined exercise increased the tolerance to physical effort (time until fatigue and relative maximum load), and prevented increases in pulmonary artery resistance (TA/TE) and reductions in RV function (TAPSE). Moreover, in myocytes isolated from the RV, combined exercise preserved contraction amplitude, as well as contraction and relaxation velocities, and inhibited reductions in the amplitude and maximum speeds to peak and to decay of the intracellular Ca2+ transient. Furthermore, combined exercise avoided RV (RV weight, cardiomyocyte, extracellular matrix, collagen, inflammatory infiltrate, and extracellular matrix) and lung (pulmonary alveoli and alveolar septum) harmful structural remodeling. Additionally, combined exercise restricted RV (NO and CP) and lung (CAT, GST, and NO) oxidative stress. In conclusion, the applied combined exercise regime hinders the progression of pulmonary and right heart functional and structural harmful remodeling in rats with MCT-induced PAH.

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CiteScore
6.00
自引率
9.10%
发文量
296
审稿时长
2-4 weeks
期刊介绍: The Journal of Applied Physiology publishes the highest quality original research and reviews that examine novel adaptive and integrative physiological mechanisms in humans and animals that advance the field. The journal encourages the submission of manuscripts that examine the acute and adaptive responses of various organs, tissues, cells and/or molecular pathways to environmental, physiological and/or pathophysiological stressors. As an applied physiology journal, topics of interest are not limited to a particular organ system. The journal, therefore, considers a wide array of integrative and translational research topics examining the mechanisms involved in disease processes and mitigation strategies, as well as the promotion of health and well-being throughout the lifespan. Priority is given to manuscripts that provide mechanistic insight deemed to exert an impact on the field.
期刊最新文献
Comparison of awake respiratory control versus sleep obstructive sleep apnea endotypes. The effects of inorganic nitrate supplementation on muscular power and endurance across the menstrual cycle. GDF15 associates with, but is not responsible for, exercise-induced increases in corticosterone and indices of lipid utilization in mice. Training volume and total energy expenditure of an Olympic and Ironman world champion: approaching the upper limits of human capabilities. Combined exercise hinders the progression of pulmonary and right heart harmful remodeling in monocrotaline-induced pulmonary arterial hypertension.
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