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神经元和神经胶质细胞对缺氧和高碳酸血症的反应。

Neuronal and glial responses to hypoxia and hypercapnia.

作者信息

Lehmenkühler A, Bingmann D, Speckmann E J

机构信息

Institut für Physiologie, Universität Münster, FRG.

出版信息

Biomed Biochim Acta. 1989;48(2-3):S155-60.

PMID:2499319
Abstract

Changes of membrane properties induced by hypoxia and hypercapnia and/or acidosis were tested on central neurons and glial cells in-vivo and on neurons of hippocampal slices as well as on cultured isolated sensory spinal ganglion (SSG) cells in-vitro. With hypoxia neocortical and spinal neurons as well as glial cells in-vivo depolarized. The same reaction was found in CA3 neurons of hippocampal slices located in layers remote from the bath fluid. The membrane potential of SSG cells were highly insensitive to lowering of bath pO2. The developing response was related to changes of K+ concentration in the extracellular fluid. With hypercapnia the overwhelming majority of neocortical and spinal neurons in-vivo hyperpolarized with the postsynaptic potentials being reduced. In these preparations glial cells depolarized. The extracellular K+ concentration increased which may in part be due to an increase in neuronal K+ conductance. When the extracellular milieu of superficial CA3 neurons in hippocampal slices was predominantly determined by the ionic composition of the bath fluid, hypercapnia depolarized these cells whereas neurons in the innermost layers of the slice hyperpolarized. SSG cells depolarized when pH in the bath was lowered. When pCO2 was elevated at constant bicarbonate concentrations in the bath, SSG cells depolarized as well. In bath fluid, however, containing buffer proteins SSG cells were found to hyperpolarize during hypercapnia. Hyperpolarization occurred also when the bicarbonate concentration in the bath fluid was raised during hypercapnic periods.

摘要

在体内对中枢神经元和神经胶质细胞、海马切片中的神经元以及体外培养的离体感觉脊髓神经节(SSG)细胞进行了缺氧、高碳酸血症和/或酸中毒诱导的膜特性变化测试。缺氧时,体内新皮质和脊髓神经元以及神经胶质细胞发生去极化。在远离浴液层的海马切片CA3神经元中也发现了相同的反应。SSG细胞的膜电位对浴液中pO2降低高度不敏感。发育中的反应与细胞外液中K+浓度的变化有关。高碳酸血症时,体内绝大多数新皮质和脊髓神经元发生超极化,突触后电位降低。在这些制剂中,神经胶质细胞发生去极化。细胞外K+浓度升高,这可能部分归因于神经元K+电导增加。当海马切片中浅层CA3神经元的细胞外环境主要由浴液的离子组成决定时,高碳酸血症使这些细胞去极化,而切片最内层的神经元发生超极化。当浴液pH降低时,SSG细胞去极化。当浴液中碳酸氢盐浓度恒定时pCO2升高,SSG细胞也会去极化。然而,在含有缓冲蛋白的浴液中,发现SSG细胞在高碳酸血症期间发生超极化。当在高碳酸血症期间提高浴液中的碳酸氢盐浓度时,也会发生超极化。

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