...
首页> 外文期刊>Sports medicine >The roles of exercise-induced immune system disturbances in the pathology of heat stroke : the dual pathway model of heat stroke.
【24h】

The roles of exercise-induced immune system disturbances in the pathology of heat stroke : the dual pathway model of heat stroke.

机译:运动诱发的免疫系统紊乱在中暑病理中的作用:中暑的双重途径模型。

获取原文
获取原文并翻译 | 示例
           

摘要

Heat stroke is a life-threatening condition that can be fatal if not appropriately managed. Although heat stroke has been recognised as a medical condition for centuries, a universally accepted definition of heat stroke is lacking and the pathology of heat stroke is not fully understood. Information derived from autopsy reports and the clinical presentation of patients with heat stroke indicates that hyperthermia, septicaemia, central nervous system impairment and cardiovascular failure play important roles in the pathology of heat stroke. The current models of heat stroke advocate that heat stroke is triggered by hyperthermia but is driven by endotoxaemia. Endotoxaemia triggers the systemic inflammatory response, which can lead to systemic coagulation and haemorrhage, necrosis, cell death and multi-organ failure. However, the current heat stroke models cannot fully explain the discrepancies in high core temperature (Tc) as a trigger of heat stroke within and between individuals. Research on the concept of critical Tc as a limitation to endurance exercise implies that a high Tc may function as a signal to trigger the protective mechanisms against heat stroke. Athletes undergoing a period of intense training are subjected to a variety of immune and gastrointestinal (GI) disturbances. The immune disturbances include the suppression of immune cells and their functions, suppression of cell-mediated immunity, translocation of lipopolysaccharide (LPS), suppression of anti-LPS antibodies, increased macrophage activity due to muscle tissue damage, and increased concentration of circulating inflammatory and pyrogenic cytokines. Common symptoms of exercise-induced GI disturbances include diarrhoea, vomiting, gastrointestinal bleeding, and cramps, which may increase gut-related LPS translocation.This article discusses the current evidence that supports the argument that these exercise-induced immune and GI disturbances may contribute to the development of endotoxaemia and heat stroke. When endotoxaemia can be tolerated or prevented, continuing exercise and heat exposure will elevate Tc to a higher level (>42 degrees C), where heat stroke may occur through the direct thermal effects of heat on organ tissues and cells. We also discuss the evidence suggesting that heat stroke may occur through endotoxaemia (heat sepsis), the primary pathway of heat stroke, or hyperthermia, the secondary pathway of heat stroke. The existence of these two pathways of heat stroke and the contribution of exercise-induced immune and GI disturbances in the primary pathway of heat stroke are illustrated in the dual pathway model of heat stroke. This model of heat stroke suggests that prolonged intense exercise suppresses anti-LPS mechanisms, and promotes inflammatory and pyrogenic activities in the pathway of heat stroke.
机译:中暑是危及生命的疾病,如果管理不当,可能会致命。尽管中暑已被公认是一种医疗条件,但尚缺乏普遍公认的中暑定义,而且中暑的病理还没有得到充分理解。从尸检报告和中暑患者的临床表现中得出的信息表明,高热,败血病,中枢神经系统损伤和心血管衰竭在中暑的病理中起重要作用。当前的中暑模型主张中暑是由体温过高引发的,但由内毒素血症驱动。内毒素血症触发全身性炎症反应,可导致全身性凝血和出血,坏死,细胞死亡和多器官衰竭。但是,当前的中暑模型不能完全解释高核心温度(Tc)的差异,这是个体内部和个体之间中暑的触发因素。对极限Tc作为耐力运动限制的概念的研究表明,高Tc可能会作为触发中暑保护机制的信号。经过一段时间的严格训练的运动员会受到各种免疫和胃肠道(GI)的干扰。免疫障碍包括免疫细胞及其功能的抑制,细胞介导的免疫的抑制,脂多糖(LPS)的转运,抗LPS抗体的抑制,由于肌肉组织损伤引起的巨噬细胞活性增加以及循环性炎症和炎症的浓度增加热原细胞因子。运动引起的胃肠道疾病的常见症状包括腹泻,呕吐,胃肠道出血和抽筋,这可能会增加与肠道有关的LPS移位。本文讨论了当前证据,这些证据支持这些运动引起的免疫和胃肠道疾病可能有助于内毒素血症和中暑的发展。当可以容忍或预防内毒素血症时,持续的运动和热暴露会将Tc升高到更高的水平(> 42摄氏度),在此热量可能通过热量对器官组织和细胞的直接热效应而发生中暑。我们还讨论了表明中暑可能通过内毒素血症(热败血症)(中暑的主要途径)或体温过高(中暑的次要途径)发生的证据。在中暑的双重途径模型中说明了这两种中暑途径的存在以及运动诱发的免疫和胃肠道干扰在中暑主要途径中的贡献。这种中暑模型表明,长时间的剧烈运动会抑制抗LPS机制,并促进中暑途径中的炎症和热原活动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号