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损伤大脑中星形胶质细胞、血管和髓鞘的修复:血单核细胞的可能作用。

Repair of astrocytes, blood vessels, and myelin in the injured brain: possible roles of blood monocytes.

机构信息

Neuroscience Graduate Program, Department of Biomedical Sciences, Ajou University School of Medicine, Suwon, Kyunggi-do 443-721, Korea.

出版信息

Mol Brain. 2013 Jun 10;6:28. doi: 10.1186/1756-6606-6-28.

Abstract

Inflammation in injured tissue has both repair functions and cytotoxic consequences. However, the issue of whether brain inflammation has a repair function has received little attention. Previously, we demonstrated monocyte infiltration and death of neurons and resident microglia in LPS-injected brains (Glia. 2007. 55:1577; Glia. 2008. 56:1039). Here, we found that astrocytes, oligodendrocytes, myelin, and endothelial cells disappeared in the damage core within 1-3 d and then re-appeared at 7-14 d, providing evidence of repair of the brain microenvironment. Since round Iba-1+/CD45+ monocytes infiltrated before the repair, we examined whether these cells were involved in the repair process. Analysis of mRNA expression profiles showed significant upregulation of repair/resolution-related genes, whereas proinflammatory-related genes were barely detectable at 3 d, a time when monocytes filled injury sites. Moreover, Iba-1+/CD45+ cells highly expressed phagocytic activity markers (e.g., the mannose receptors, CD68 and LAMP2), but not proinflammatory mediators (e.g., iNOS and IL1β). In addition, the distribution of round Iba-1+/CD45+ cells was spatially and temporally correlated with astrocyte recovery. We further found that monocytes in culture attracted astrocytes by releasing soluble factor(s). Together, these results suggest that brain inflammation mediated by monocytes functions to repair the microenvironment of the injured brain.

摘要

损伤组织中的炎症具有修复功能和细胞毒性后果。然而,大脑炎症是否具有修复功能的问题尚未得到关注。此前,我们已经证明了 LPS 注射后的大脑中存在单核细胞浸润和神经元及固有小胶质细胞的死亡(Glia. 2007. 55:1577;Glia. 2008. 56:1039)。在这里,我们发现星形胶质细胞、少突胶质细胞、髓鞘和内皮细胞在 1-3 天内消失在损伤核心区,然后在 7-14 天重新出现,为脑微环境的修复提供了证据。由于圆形的 Iba-1+/CD45+单核细胞在修复之前就已经浸润,我们检查了这些细胞是否参与了修复过程。对 mRNA 表达谱的分析显示,修复/解决相关基因显著上调,而在单核细胞充满损伤部位的 3 天时,几乎检测不到促炎相关基因。此外,Iba-1+/CD45+细胞高度表达吞噬活性标志物(例如甘露糖受体、CD68 和 LAMP2),而不表达促炎介质(例如 iNOS 和 IL1β)。此外,圆形的 Iba-1+/CD45+细胞的分布在空间和时间上与星形胶质细胞的恢复相关。我们进一步发现,培养中的单核细胞通过释放可溶性因子来吸引星形胶质细胞。总之,这些结果表明,单核细胞介导的大脑炎症有助于修复受损大脑的微环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35bb/3684510/bf5554563fa3/1756-6606-6-28-1.jpg

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