Neuroinflammatory disease disrupts the blood-CNS barrier via crosstalk between proinflammatory and endothelial-to-mesenchymal-transition signaling

神经炎症疾病通过促炎信号和内皮-间质转化信号之间的串扰破坏血液-中枢神经系统屏障

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作者:Zhonglou Sun, Helong Zhao, Daniel Fang, Chadwick T Davis, Dallas S Shi, Kachon Lei, Bianca E Rich, Jacob M Winter, Li Guo, Lise K Sorensen, Robert J Pryor, Nina Zhu, Samuel Lu, Laura L Dickey, Daniel J Doty, Zongzhong Tong, Kirk R Thomas, Alan L Mueller, Allie H Grossmann, Baowei Zhang, Thomas E Lan

Abstract

Breakdown of the blood-central nervous system barrier (BCNSB) is a hallmark of many neuroinflammatory disorders, such as multiple sclerosis (MS). Using a mouse model of MS, experimental autoimmune encephalomyelitis (EAE), we show that endothelial-to-mesenchymal transition (EndoMT) occurs in the CNS before the onset of clinical symptoms and plays a major role in the breakdown of BCNSB function. EndoMT can be induced by an IL-1β-stimulated signaling pathway in which activation of the small GTPase ADP ribosylation factor 6 (ARF6) leads to crosstalk with the activin receptor-like kinase (ALK)-SMAD1/5 pathway. Inhibiting the activation of ARF6 both prevents and reverses EndoMT, stabilizes BCNSB function, reduces demyelination, and attenuates symptoms even after the establishment of severe EAE, without immunocompromising the host. Pan-inhibition of ALKs also reduces disease severity in the EAE model. Therefore, multiple components of the IL-1β-ARF6-ALK-SMAD1/5 pathway could be targeted for the treatment of a variety of neuroinflammatory disorders.

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