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骨骼肌在运动性热射病发病机制中的作用。

The Role of Skeletal Muscles in Exertional Heat Stroke Pathophysiology.

机构信息

Department of Nutrition, Food and Exercise Sciences, Florida State University, Tallahassee, United States.

Thermal & Mountain Medicine Devision, United States Army Research Institute of Environmental Medicine, Natick, United States.

出版信息

Int J Sports Med. 2021 Jun;42(8):673-681. doi: 10.1055/a-1400-9754. Epub 2021 Mar 26.

Abstract

The active participation of skeletal muscles is a unique characteristic of exertional heat stroke. Nevertheless, the only well-documented link between skeletal muscle activities and exertional heat stroke pathophysiology is the extensive muscle damage (e. g., rhabdomyolysis) and subsequent leakage of intramuscular content into the circulation of exertional heat stroke victims. Here, we will present and discuss rarely explored roles of skeletal muscles in the context of exertional heat stroke pathophysiology and recovery. This includes an overview of heat production that contributes to severe hyperthermia and the synthesis and secretion of bioactive molecules, such as cytokines, chemokines and acute phase proteins. These molecules can alter the overall inflammatory status from pro- to anti-inflammatory, affecting other organ systems and influencing recovery. The activation of innate immunity can determine whether a victim is ready to return to physical activity or experiences a prolonged convalescence. We also provide a brief discussion on whether heat acclimation can shift skeletal muscle secretory phenotype to prevent or aid recovery from exertional heat stroke. We conclude that skeletal muscles should be considered as a key organ system in exertional heat stroke pathophysiology.

摘要

骨骼肌的积极参与是劳力性热射病的一个独特特征。然而,骨骼肌活动与劳力性热射病病理生理学之间唯一有充分记录的联系是广泛的肌肉损伤(例如横纹肌溶解症)和随后的肌肉内物质泄漏到劳力性热射病患者的循环中。在这里,我们将介绍和讨论骨骼肌在劳力性热射病病理生理学和恢复中的鲜为人知的作用。这包括对严重高热产生的热量概述,以及生物活性分子(如细胞因子、趋化因子和急性期蛋白)的合成和分泌。这些分子可以改变整体炎症状态,从促炎转变为抗炎,影响其他器官系统并影响恢复。先天免疫的激活可以决定受害者是否准备好恢复体力活动,还是经历长时间的康复。我们还简要讨论了热适应是否可以改变骨骼肌的分泌表型,以预防或帮助从劳力性热射病中恢复。我们的结论是,骨骼肌应该被视为劳力性热射病病理生理学中的一个关键器官系统。

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