首页> 外文期刊>Journal of Evolutionary Biochemistry and Physiology: A Journal of Original Papers and Reviews on Evolutionary, Comparative, and Ecological Aspects of Physiology, Biochemistry, and Morphology >Changes of Activity of the Protein-Synthesizing System of Brain Neurons of the Ground Squirrel Citellus undulates during Hibernation and Hypothermia
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Changes of Activity of the Protein-Synthesizing System of Brain Neurons of the Ground Squirrel Citellus undulates during Hibernation and Hypothermia

机译:冬眠和体温过低时,地松鼠大脑神经元蛋白合成系统活性的变化呈波浪状。

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摘要

Using fluorescent and electron microscopy a comparative analysis was performed of components of the protein-synthesizing system of hippocampal neurons both in ground squirrels in various phases of the torpor-activity cycle and in rats cooled under the hypoxia-hypercapnia conditions.Results of the study have shown that in hippocampal neurons of the ground squirrels entering the natural torpor state and of rats under conditions of artificial hypothermia to 17 deg C,similar mechanisms might be possible to function,one of their obligatory components being a generalized decrease of activity of the protein-synthesizing system with its subsequent restoration at the exit from hypothermia.Cessation of hypoxia-hypercapnia even under conditions of a further temperature decrease restored the rat neuronal protein-synthesizing activity,which seems to indicate the presence of a potential possibility of adaptation of brain neurons in vivo to low temperatures,at which the integral organism of non-hibernating homoeothermic animals does not survive.
机译:使用荧光显微镜和电子显微镜对海豚神经元蛋白合成系统的成分进行了比较分析,无论是在松鼠活动周期各个阶段的地松鼠中,还是在低氧-高碳酸血症条件下冷却的大鼠中,海马神经元的蛋白质合成系统的成分均如此。表明在自然低温下至17摄氏度的条件下,在地面松鼠的海马神经元进入自然的热粥状状态和大鼠中,类似的机制可能起作用,它们的强制性成分之一是蛋白质活性的普遍降低-在低温下停止缺氧-高碳酸血症也恢复了大鼠神经元蛋白的合成活性,这似乎表明存在潜在的适应大脑神经元的能力。体内至低温,在此温度下非冬眠的有机体饲养等温动物无法生存。

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