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[缺氧预处理对脑神经元的适应性影响]

[Adaptive effects of hypoxic preconditioning in brain neurons].

作者信息

Samoĭlov M O, Lazarevich E V, Semenov D G, Mokrushin A A, Tiul'kova E I, Romanovskiĭ D Iu, Miliakova E A, Dudkin K N

机构信息

I. P. Pavlov Institute of Physiology, Russian Acad. Sci., 199034, St. Petersburg, Nab. Makarova, 6.

出版信息

Ross Fiziol Zh Im I M Sechenova. 2001 Jun;87(6):714-29.

Abstract

A preventive short-term hypoxia (preconditioning) increases neuronal resistance against subsequent strong hypoxic effects. Literature review and authors' own data on molecular-cellular mechanisms of the hypoxic preconditioning, are presented. Participation of intracellular signal transduction, genome, stress-proteins, and neuromodulating peptides in this process, is discussed. The role of glutamatergic as well as calcium and phosphoinositide regulatory systems and neuromodulating factors as the components of a "volume" signal transmission are analyzed in hypoxic precondition-associated induction of functional tolerance mechanisms against acute harmful effects in neurones of olfactory slices.

摘要

预防性短期缺氧(预处理)可增强神经元对随后强烈缺氧效应的抵抗力。本文综述了相关文献并介绍了作者自身关于缺氧预处理分子细胞机制的数据。讨论了细胞内信号转导、基因组、应激蛋白和神经调节肽在这一过程中的参与情况。分析了谷氨酸能以及钙和磷酸肌醇调节系统和神经调节因子作为“容积”信号传递组成部分在缺氧预处理相关诱导嗅球切片神经元对急性有害效应功能耐受性机制中的作用。

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