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The VCAM1-ApoE pathway directs microglial chemotaxis and alleviates Alzheimer's disease pathology.


ABSTRACT: In Alzheimer's disease (AD), sensome receptor dysfunction impairs microglial danger-associated molecular pattern (DAMP) clearance and exacerbates disease pathology. Although extrinsic signals, including interleukin-33 (IL-33), can restore microglial DAMP clearance, it remains largely unclear how the sensome receptor is regulated and interacts with DAMP during phagocytic clearance. Here, we show that IL-33 induces VCAM1 in microglia, which promotes microglial chemotaxis toward amyloid-beta (Aβ) plaque-associated ApoE, and leads to Aβ clearance. We show that IL-33 stimulates a chemotactic state in microglia, characterized by Aβ-directed migration. Functional screening identified that VCAM1 directs microglial Aβ chemotaxis by sensing Aβ plaque-associated ApoE. Moreover, we found that disrupting VCAM1-ApoE interaction abolishes microglial Aβ chemotaxis, resulting in decreased microglial clearance of Aβ. In patients with AD, higher cerebrospinal fluid levels of soluble VCAM1 were correlated with impaired microglial Aβ chemotaxis. Together, our findings demonstrate that promoting VCAM1-ApoE-dependent microglial functions ameliorates AD pathology.

SUBMITTER: Lau SF 

PROVIDER: S-EPMC10570140 | biostudies-literature | 2023 Oct

REPOSITORIES: biostudies-literature

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The VCAM1-ApoE pathway directs microglial chemotaxis and alleviates Alzheimer's disease pathology.

Lau Shun-Fat SF   Wu Wei W   Wong Hiu Yi HY   Ouyang Li L   Qiao Yi Y   Xu Jiahui J   Lau Jessica Hiu-Yan JH   Wong Carlton C   Jiang Yuanbing Y   Holtzman David M DM   Fu Amy K Y AKY   Ip Nancy Y NY  

Nature aging 20230921 10


In Alzheimer's disease (AD), sensome receptor dysfunction impairs microglial danger-associated molecular pattern (DAMP) clearance and exacerbates disease pathology. Although extrinsic signals, including interleukin-33 (IL-33), can restore microglial DAMP clearance, it remains largely unclear how the sensome receptor is regulated and interacts with DAMP during phagocytic clearance. Here, we show that IL-33 induces VCAM1 in microglia, which promotes microglial chemotaxis toward amyloid-beta (Aβ) p  ...[more]

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