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小胶质细胞:中枢神经系统中的神经保护和神经营养细胞。

Microglia: neuroprotective and neurotrophic cells in the central nervous system.

作者信息

Nakajima Kazuyuki, Kohsaka Shinichi

机构信息

Neurobiology Lab, Department of Bioinformatics, Faculty of Engineering, Soka University, Hachioji, Tokyo 192-8577, Japan.

出版信息

Curr Drug Targets Cardiovasc Haematol Disord. 2004 Mar;4(1):65-84. doi: 10.2174/1568006043481284.

Abstract

Microglia are currently accepted as sensor cells in the central nervous system that respond to injury and brain disease. The main function of microglia is believed to be brain defense, as they are known to scavenge invading microorganisms and dead cells, and also to act as immune or immunoeffector cells. However, microglia are also thought to contribute to the onset of or to exacerbate neuronal degeneration and/or inflammation in many brain diseases by producing deleterious factors including superoxide anions, nitric oxide and inflammatory cytokines. Nonetheless, microglia have also been shown to act neuroprotectively by eliminating excess excitotoxins in the extracellular space. Moreover, there is accumulating evidence that microglia produce neurotrophic and/or neuroprotective molecules; in particular, it has been suggested that they promote neuronal survival in cases of brain injury. In general, the question of whether microglia act as neurotoxic cells or as neuroprotective cells in vivo has gained much recent attention. In this paper, we provide a review of findings indicating that the microglia are basically neurotrophic/neuroprotective cells in the nervous system. In addition, the mechanism by which neurotrophic microglia become oriented to a neurotoxic state is discussed.

摘要

小胶质细胞目前被公认为中枢神经系统中的传感细胞,对损伤和脑部疾病作出反应。小胶质细胞的主要功能被认为是脑防御,因为它们已知会清除入侵的微生物和死亡细胞,并且还充当免疫或免疫效应细胞。然而,小胶质细胞也被认为在许多脑部疾病中通过产生包括超氧阴离子、一氧化氮和炎性细胞因子在内的有害因子,促成神经元变性和/或炎症的发生或使其加剧。尽管如此,小胶质细胞也已被证明通过消除细胞外空间中过量的兴奋性毒素而发挥神经保护作用。此外,越来越多的证据表明小胶质细胞会产生神经营养和/或神经保护分子;特别是,有人提出它们在脑损伤情况下促进神经元存活。总体而言,小胶质细胞在体内是作为神经毒性细胞还是神经保护细胞的问题最近备受关注。在本文中,我们综述了一些研究结果,这些结果表明小胶质细胞在神经系统中基本上是神经营养/神经保护细胞。此外,还讨论了神经营养性小胶质细胞转变为神经毒性状态的机制。

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