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Publication : Liver X Receptor Alpha Is Important in Maintaining Blood-Brain Barrier Function.

First Author  Wouters E Year  2019
Journal  Front Immunol Volume  10
Pages  1811 PubMed ID  31417573
Mgi Jnum  J:297009 Mgi Id  MGI:6468857
Doi  10.3389/fimmu.2019.01811 Citation  Wouters E, et al. (2019) Liver X Receptor Alpha Is Important in Maintaining Blood-Brain Barrier Function. Front Immunol 10:1811
abstractText  Dysfunction of the blood-brain barrier (BBB) contributes significantly to the pathogenesis of several neuroinflammatory diseases, including multiple sclerosis (MS). Potential players that regulate BBB function are the liver X receptors (LXRs), which are ligand activated transcription factors comprising two isoforms, LXRalpha, and LXRbeta. However, the role of LXRalpha and LXRbeta in regulating BBB (dys)function during neuroinflammation remains unclear, as well as their individual involvement. Therefore, the goal of the present study is to unravel whether LXR isoforms have different roles in regulating BBB function under neuroinflammatory conditions. We demonstrate that LXRalpha, and not LXRbeta, is essential to maintain barrier integrity in vitro. Specific knockout of LXRalpha in brain endothelial cells resulted in a more permeable barrier with reduced expression of tight junctions. Additionally, the observed dysfunction was accompanied by increased endothelial inflammation, as detected by enhanced expression of vascular cell adhesion molecule (VCAM-1) and increased transendothelial migration of monocytes toward inflammatory stimuli. To unravel the importance of LXRalpha in BBB function in vivo, we made use of the experimental autoimmune encephalomyelitis (EAE) MS mouse model. Induction of EAE in a constitutive LXRalpha knockout mouse and in an endothelial specific LXRalpha knockout mouse resulted in a more severe disease score in these animals. This was accompanied by higher numbers of infiltrating leukocytes, increased endothelial VCAM-1 expression, and decreased expression of the tight junction molecule claudin-5. Together, this study reveals that LXRalpha is indispensable for maintaining BBB integrity and its immune quiescence. Targeting the LXRalpha isoform may help in the development of novel therapeutic strategies to prevent BBB dysfunction, and thereby neuroinflammatory disorders.
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