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神经元-胶质细胞网络作为中枢神经系统整合的基础。

Neuronal-glial networks as substrate for CNS integration.

作者信息

Verkhratsky A, Toescu E C

机构信息

Faculty of Life Sciences, The University of Manchester, Manchester, UK.

出版信息

J Cell Mol Med. 2006 Oct-Dec;10(4):826-36. doi: 10.1111/j.1582-4934.2006.tb00527.x.

Abstract

Astrocytes have been considered, for a long time, as the support and house-keeping cells of the nervous system. Indeed, the astrocytes play very important metabolic roles in the brain, but the catalogue of nervous system functions or activities that involve directly glial participation has extended dramatically in the last decade. In addition to the further refining of the signalling capacity of the neuroglial networks and the detailed reassessment of the interactions between glia and vascular bed in the brain, one of the important salient features of the increased glioscience activity in the last few years was the morphological and functional demonstration that protoplasmic astrocytes occupy well defined spatial territories, with only limited areas of morphological overlapping, but still able to communicate with adjacent neighbours through intercellular junctions. All these features form the basis for a possible reassessment of the nature of integration of activity in the central nervous system that could raise glia to a role of central integrator.

摘要

长期以来,星形胶质细胞一直被视为神经系统的支持性和维持性细胞。的确,星形胶质细胞在大脑中发挥着非常重要的代谢作用,但在过去十年中,直接涉及神经胶质参与的神经系统功能或活动的范畴已大幅扩展。除了对神经胶质网络信号传导能力的进一步细化以及对大脑中神经胶质与血管床之间相互作用的详细重新评估外,过去几年神经胶质科学活动增加的一个重要显著特征是形态学和功能学证明,即原浆性星形胶质细胞占据明确的空间区域,形态重叠区域有限,但仍能够通过细胞间连接与相邻细胞进行通讯。所有这些特征构成了可能重新评估中枢神经系统活动整合本质的基础,这可能会使神经胶质发挥中枢整合器的作用。

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