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PMID: 41702507 Published · ppublish English

Anti-CLEC7A nanobody in situ engineering promotes amyloid-β oligomers clearance by CAR-microglia to alleviate Alzheimer's disease pathology in mice.

Yan C, Kong Z, Pan Y, Fu Z, Han K, Zhao X, Zhang J, Bo L, Sun W, Gao J, Dong X, Zheng Z, Yue X, Sun P, Jiang X, Chen C

Abstract

Chimeric antigen receptor microglia (CAR-M)-mediated amyloid-β oligomers (AβO) phagocytosis shows great promise in Alzheimer's disease (AD) treatment, however, the limited AβO degradation of CAR-M compromises their anti-AβO potency. This work here reports an in situ engineered agonistic anti-C-type lectin domain containing 7 A (CLEC7A) nanobody to accelerate AβO degradation of CAR-M, augmenting their anti-AβO efficacy. Specifically, with the intranasal-delivered microglia-targeting lipid nanoparticles (LNP), this work generates an AβO-specific degradation-potentiated CAR-M by introducing dual mRNAs encoding AβO-specific CAR and anti-CLEC7A nanobody into the cerebral microglia. These data show that these engineered CAR-M exhibited superior phagocytic function and promoted intracellular AβO degradation via activating CLEC7A-spleen tyrosine kinase (SYK) signaling pathway through the local secretion of anti-CLEC7A nanobody. In the APP/PS1 mouse model of AD, these in situ reprogrammed CAR-M significantly reduced cerebral Aβ levels, suppressed neuroinflammation, and restored cognitive function. In sum, these findings demonstrate that potentiating AβO degradation within CAR-M effectively alleviates AD pathology, providing a promising therapeutic strategy for AD with broad application in other neurodegenerative diseases.

Keywords
Alzheimer's disease Amyloid-β oligomers Anti-CLEC7A nanobody Chimeric antigen receptor microglia Lipid nanoparticle
Article Info
Journal
Journal of controlled release : official journal of the Controlled Release Society
Abbr.
J Control Release
ISSN
1873-4995
Published
2026-04-10
Language
English
Country/Region
Netherlands
NLM ID
8607908
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