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首页> 外文期刊>BioMed research international >Umbilical Cord Blood-Derived Stem Cells Improve Heat Tolerance and Hypothalamic Damage in Heat Stressed Mice
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Umbilical Cord Blood-Derived Stem Cells Improve Heat Tolerance and Hypothalamic Damage in Heat Stressed Mice

机译:脐带血来源的干细胞改善热应激小鼠的耐热性和下丘脑损伤

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Heatstroke is characterized by excessive hyperthermia associated with systemic inflammatory responses, which leads to multiple organ failure, in which brain disorders predominate. This definition can be almost fulfilled by a mouse model of heatstroke used in the present study. Unanesthetized mice were exposed to whole body heating (41.2° C for 1 hour) and then returned to room temperature (26°C) for recovery. Immediately after termination of whole body heating, heated mice displayed excessive hyperthermia (body core temperature ~42.5°C). Four hours after termination of heat stress, heated mice displayed (i) systemic inflammation; (ii) ischemic, hypoxic, and oxidative damage to the hypothalamus; (iii) hypothalamo-pituitary-adrenocortical axis impairment (reflected by plasma levels of both adrenocorticotrophic-hormone and corticosterone); (iv) decreased fractional survival; and (v) thermoregulatory deficits (e.g., they became hypothermia when they were exposed to room temperature). These heatstroke reactions can be significantly attenuated by human umbilical cord blood-derived CD34~+ cells therapy. Our data suggest that human umbilical cord blood-derived stem cells therapy may improve outcomes of heatstroke in mice by reducing systemic inflammation as well as hypothalamo-pituitary-adrenocortical axis impairment.
机译:中暑的特征是与系统性炎症反应相关的过度体温过高,这会导致多器官功能衰竭,其中以脑部疾病为主。本研究中使用的中暑小鼠模型几乎可以满足这个定义。未麻醉的小鼠暴露于全身加热(41.2°C 1小时),然后回到室温(26°C)以恢复。终止全身加热后,受热的小鼠立即表现出过度的体温过高(身体核心温度〜42.5°C)。终止热应激四小时后,受热的小鼠表现出(i)全身性炎症; (ii)下丘脑的缺血,缺氧和氧化损伤; (iii)下丘脑-垂体-肾上腺皮质轴的损害(反映在肾上腺皮质营养激素和皮质酮的血浆水平上); (iv)存活率下降; (v)体温调节功能障碍(例如,暴露于室温时变成体温过低)。这些中暑反应可以通过人脐带血来源的CD34〜+细胞疗法大大减轻。我们的数据表明,人脐带血源性干细胞疗法可通过减少全身性炎症以及下丘脑-垂体-肾上腺皮质轴功能障碍来改善小鼠中暑的结局。

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