[BASIC PHYSIOLOGICAL MECHANISMS OF HUMAN ADAPTATION TO COLD].

M M Saltykova
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Abstract

The article provides an overview of the literature that focuses on the main types of human adaptation to cold and mechanisms for increasing heat production. It is shown that the studies in recent years, aimed at studying the molecular mechanisms of adaptation to cold, confirmed the results of previous physiological studies have demonstrated that the major contribution to adaptive thermogenesis during cooling made by oxidative fibers in skeletal muscle (birds, marsupials, large placental and people) and brown adipose tissue (small placenta, especially rodents). The main sources of thermoregulatory heat generation are the contractile activity (thermoregulatory shivering and muscle tone), the uncoupling of oxidative phosphorylation and decrease in thermodynamic efficiency of the ATP-powered pumps (ATPase), which are induced by noradrenaline and thyroid hormones and accompanied by an increase in the consumption of oxygen and energy substrates. During long-term adaptation to cold the number and activity of mitochondria increase to provide enhanced ATP consumption.

[人类适应寒冷的基本生理机制]。
本文提供了文献综述,重点介绍了人类适应寒冷的主要类型和增加产热的机制。结果表明,近年来旨在研究低温适应分子机制的研究证实了以往生理学研究的结果,即骨骼肌(鸟类、有袋动物、大胎盘动物和人)和棕色脂肪组织(小胎盘动物,尤其是啮齿动物)的氧化纤维在冷却过程中对适应性产热的主要贡献。热调节性热产生的主要来源是由去甲肾上腺素和甲状腺激素诱导的收缩活动(热调节性颤抖和肌肉张力)、氧化磷酸化的解耦和atp动力泵(atp酶)热力学效率的降低,这伴随着氧气和能量底物消耗的增加。在长期适应寒冷的过程中,线粒体的数量和活性增加,以提供更多的ATP消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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