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小胶质细胞再群体模型揭示了中枢神经系统髓样细胞替代的强大稳态过程。

Microglial repopulation model reveals a robust homeostatic process for replacing CNS myeloid cells.

机构信息

German Center for Neurodegenerative Diseases, DZNE, and Department of Cellular Neurology, Hertie Institute for Clinical Brain Research, University of Tuebingen, 72076 Tuebingen, Germany.

出版信息

Proc Natl Acad Sci U S A. 2012 Oct 30;109(44):18150-5. doi: 10.1073/pnas.1210150109. Epub 2012 Oct 15.

Abstract

Under most physiological circumstances, monocytes are excluded from parenchymal CNS tissues. When widespread monocyte entry occurs, their numbers decrease shortly after engraftment in the presence of microglia. However, some disease processes lead to focal and selective loss, or dysfunction, of microglia, and microglial senescence typifies the aged brain. In this regard, the long-term engraftment of monocytes in the microglia-depleted brain remains unknown. Here, we report a model in which a niche for myeloid cells was created through microglia depletion. We show that microglia-depleted brain regions of CD11b-HSVTK transgenic mice are repopulated with new Iba-1-positive cells within 2 wk. The engrafted cells expressed high levels of CD45 and CCR2 and appeared in a wave-like pattern frequently associated with blood vessels, suggesting the engrafted cells were peripheral monocytes. Although two times more numerous and morphologically distinct from resident microglia up to 27 wk after initial engraftment, the overall distribution of the engrafted cells was remarkably similar to that of microglia. Two-photon in vivo imaging revealed that the engrafted myeloid cells extended their processes toward an ATP source and displayed intracellular calcium transients. Moreover, the engrafted cells migrated toward areas of kainic acid-induced neuronal death. These data provide evidence that circulating monocytes have the potential to occupy the adult CNS myeloid niche normally inhabited by microglia and identify a strong homeostatic drive to maintain the myeloid component in the mature brain.

摘要

在大多数生理情况下,单核细胞被排除在实质中枢神经系统组织之外。当广泛的单核细胞进入时,它们的数量在与小胶质细胞共植入后不久就会减少。然而,一些疾病过程导致小胶质细胞的局灶性和选择性丧失或功能障碍,小胶质细胞衰老是衰老大脑的典型特征。在这方面,单核细胞在小胶质细胞耗竭的大脑中的长期植入仍然未知。在这里,我们报告了一种通过小胶质细胞耗竭创建髓系细胞龛的模型。我们表明,CD11b-HSVTK 转基因小鼠的小胶质细胞耗竭脑区在 2 周内被新的 Iba-1 阳性细胞重新填充。植入的细胞表达高水平的 CD45 和 CCR2,并以常与血管相关的波状模式出现,表明植入的细胞是外周单核细胞。尽管在最初植入后 27 周内,植入的细胞数量是常驻小胶质细胞的两倍,且形态明显不同,但植入细胞的总体分布与小胶质细胞非常相似。体内双光子成像显示,植入的髓系细胞向 ATP 源延伸其突起,并显示细胞内钙瞬变。此外,植入的细胞向海人酸诱导的神经元死亡区域迁移。这些数据提供了证据表明,循环单核细胞有可能占据由小胶质细胞正常占据的成年中枢神经系统髓系龛位,并确定了维持成熟大脑中髓系成分的强大稳态驱动力。

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