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纤维蛋白原诱导的血管周神经胶质细胞聚集是神经炎症中轴突损伤发展所必需的。

Fibrinogen-induced perivascular microglial clustering is required for the development of axonal damage in neuroinflammation.

机构信息

Gladstone Institute of Neurological Disease, University of California, San Francisco, 1650 Owens Street, San Francisco, CA 94158, USA.

出版信息

Nat Commun. 2012;3:1227. doi: 10.1038/ncomms2230.

Abstract

Blood-brain barrier disruption, microglial activation and neurodegeneration are hallmarks of multiple sclerosis. However, the initial triggers that activate innate immune responses and their role in axonal damage remain unknown. Here we show that the blood protein fibrinogen induces rapid microglial responses toward the vasculature and is required for axonal damage in neuroinflammation. Using in vivo two-photon microscopy, we demonstrate that microglia form perivascular clusters before myelin loss or paralysis onset and that, of the plasma proteins, fibrinogen specifically induces rapid and sustained microglial responses in vivo. Fibrinogen leakage correlates with areas of axonal damage and induces reactive oxygen species release in microglia. Blocking fibrin formation with anticoagulant treatment or genetically eliminating the fibrinogen binding motif recognized by the microglial integrin receptor CD11b/CD18 inhibits perivascular microglial clustering and axonal damage. Thus, early and progressive perivascular microglial clustering triggered by fibrinogen leakage upon blood-brain barrier disruption contributes to axonal damage in neuroinflammatory disease.

摘要

血脑屏障破坏、小胶质细胞激活和神经退行性变是多发性硬化症的标志。然而,激活先天免疫反应的初始触发因素及其在轴突损伤中的作用仍不清楚。在这里,我们表明血液蛋白纤维蛋白原诱导小胶质细胞对血管的快速反应,并且是神经炎症中轴突损伤所必需的。使用体内双光子显微镜,我们证明小胶质细胞在髓鞘丢失或瘫痪发作之前形成血管周围簇,并且在血浆蛋白中,纤维蛋白原特异性地在体内诱导快速和持续的小胶质细胞反应。纤维蛋白原漏出与轴突损伤区域相关,并诱导小胶质细胞中活性氧的释放。用抗凝剂治疗阻断纤维蛋白形成或通过基因消除小胶质细胞整合素受体 CD11b/CD18 识别的纤维蛋白原结合基序,可抑制血管周围小胶质细胞聚类和轴突损伤。因此,血脑屏障破坏时纤维蛋白原漏出引发的早期和进行性血管周围小胶质细胞聚类导致神经炎症性疾病中的轴突损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/274a/3514498/f09801c906b8/ncomms2230-f1.jpg

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