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神经元与胶质细胞对谷氨酸的摄取:解开谜团

Neuronal vs glial glutamate uptake: Resolving the conundrum.

作者信息

Danbolt N C, Furness D N, Zhou Y

机构信息

The Neurotransporter Group, Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

School of Life Sciences, Keele University, Keele, Staffs. ST5 5BG, UK.

出版信息

Neurochem Int. 2016 Sep;98:29-45. doi: 10.1016/j.neuint.2016.05.009. Epub 2016 May 26.

Abstract

Neither normal brain function nor the pathological processes involved in neurological diseases can be adequately understood without knowledge of the release, uptake and metabolism of glutamate. The reason for this is that glutamate (a) is the most abundant amino acid in the brain, (b) is at the cross-roads between several metabolic pathways, and (c) serves as the major excitatory neurotransmitter. In fact most brain cells express glutamate receptors and are thereby influenced by extracellular glutamate. In agreement, brain cells have powerful uptake systems that constantly remove glutamate from the extracellular fluid and thereby limit receptor activation. It has been clear since the 1970s that both astrocytes and neurons express glutamate transporters. However the relative contribution of neuronal and glial transporters to the total glutamate uptake activity, however, as well as their functional importance, has been hotly debated ever since. The present short review provides (a) an overview of what we know about neuronal glutamate uptake as well as an historical description of how we got there, and (b) a hypothesis reconciling apparently contradicting observations thereby possibly resolving the paradox.

摘要

如果不了解谷氨酸的释放、摄取和代谢,就无法充分理解正常脑功能以及神经疾病所涉及的病理过程。原因如下:(a)谷氨酸是脑中含量最丰富的氨基酸;(b)它处于多种代谢途径的交叉点;(c)它是主要的兴奋性神经递质。事实上,大多数脑细胞都表达谷氨酸受体,因此会受到细胞外谷氨酸的影响。与此一致的是,脑细胞具有强大的摄取系统,能不断从细胞外液中清除谷氨酸,从而限制受体激活。自20世纪70年代以来就已明确,星形胶质细胞和神经元都表达谷氨酸转运体。然而,从那时起,神经元和胶质细胞转运体对总谷氨酸摄取活性的相对贡献及其功能重要性一直备受激烈争论。本简短综述提供了:(a)关于我们对神经元谷氨酸摄取的了解概述以及我们如何得出这些认识的历史描述;(b)一个调和明显相互矛盾的观察结果的假说,从而可能解决这一悖论。

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