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杆状小胶质细胞及其在神经疾病中的作用。

Rod microglia and their role in neurological diseases.

机构信息

Wicking Dementia Research and Education Centre, College of Health and Medicine, University of Tasmania, Hobart, Tasmania, 7000, Australia.

Wicking Dementia Research and Education Centre, College of Health and Medicine, University of Tasmania, Hobart, Tasmania, 7000, Australia.

出版信息

Semin Cell Dev Biol. 2019 Oct;94:96-103. doi: 10.1016/j.semcdb.2019.02.005. Epub 2019 Mar 8.

Abstract

The striking morphology of microglia is one of their most prominent characteristics, with many studies categorising microglial function based on morphology e.g. ramified, hyper-ramified, activated, or amoeboid. Communications regarding rod microglia in neurological disease are scant, and where reported, these cells are rarely the focus of discussion. These factors make it difficult to determine how widespread these cells are not only through the brain but also across diseases. Studies in experimental diffuse brain injury are the first reports of not only significant numbers of rod microglia, but distinct arrangements of these cells, reminiscent of carriages of a train. This review summarises the available reports of rod microglia in vivo and rod-like microglia in vitro and eludes to possible functions and signalling cascades that may evoke this distinct morphology. More investigations are required to fully elucidate the function that rod microglia play in neurological diseases.

摘要

小胶质细胞的显著形态是其最突出的特征之一,许多研究根据形态将小胶质细胞的功能进行分类,例如分支状、超分支状、激活或阿米巴样。关于神经疾病中小胶质细胞的杆状形态的研究很少,而且在有报道的情况下,这些细胞很少成为讨论的焦点。这些因素使得很难确定这些细胞不仅在大脑中而且在各种疾病中是多么普遍。实验性弥漫性脑损伤的研究首次报告了不仅有大量的杆状小胶质细胞,而且还有这些细胞的独特排列,让人联想到火车车厢。这篇综述总结了体内杆状小胶质细胞和体外杆状小胶质细胞的现有报道,并暗示了可能引发这种独特形态的可能功能和信号级联。需要更多的研究来充分阐明杆状小胶质细胞在神经疾病中的作用。

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