Para‐inflammation‐mediated retinal recruitment of bone marrow‐derived myeloid cells following whole‐body irradiation is CCL2 dependent

小胶质细胞 CX3CR1型 CX3CL1型 生物 炎症 骨髓 趋化因子 细胞生物学 视网膜 整合素αM 下调和上调 免疫学 四氯化碳 免疫系统 神经科学 趋化因子受体 生物化学 基因
作者
Mei Chen,Jiawu Zhao,Chang Luo,Sudha Priya Soundara Pandi,Rosana Peñalva,Denise Fitzgerald,Heping Xu
出处
期刊:Glia [Wiley]
卷期号:60 (5): 833-842 被引量:64
标识
DOI:10.1002/glia.22315
摘要

Abstract Previous studies have shown that following whole‐body irradiation bone marrow (BM)‐derived cells can migrate into the central nervous system, including the retina, to give rise to microglia‐like cells. The detailed mechanism, however, remains elusive. We show in this study that a single‐dose whole‐body γ‐ray irradiation (8 Gy) induced subclinical damage (i.e., DNA damage) in the neuronal retina, which is accompanied by a low‐grade chronic inflammation, para‐inflammation, characterized by upregulated expression of chemokines (CCL2, CXCL12, and CX3CL1) and complement components (C4 and CFH), and microglial activation. The upregulation of chemokines CCL2 and CXCL12 and complement C4 lasted for more than 160 days, whereas the expression of CX3CL1 and CFH was upregulated for 2 weeks. Both resident microglia and BM‐derived phagocytes displayed mild activation in the neuronal retina following irradiation. When BM cells from CX3CR1 gfp/+ mice or CX3CR1 gfp/gfp mice were transplanted to wild‐type C57BL/6 mice, more than 90% of resident CD11b + cells were replaced by donor‐derived GFP + cells after 6 months. However, when transplanting CX3CR1 gfp/+ BM cells into CCL2‐deficient mice, only 20% of retinal CD11b + cells were replaced by donor‐derived cells at 6 month. Our results suggest that the neuronal retina suffers from a chronic stress following whole‐body irradiation, and a para‐inflammatory response is initiated, presumably to rectify the insults and maintain homeostasis. The recruitment of BM‐derived myeloid cells is a part of the para‐inflammatory response and is CCL2 but not CX3CL1 dependent. © 2012 Wiley Periodicals, Inc.

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