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March 7, 2026Science15 citations

Targeting amyloid-β pathology by chimeric antigen receptor astrocyte (CAR-A) therapy

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YCYun ChenYLYizhou LiuKNKhai M. Nguyen

Key Points

  • The research aims to evaluate the effectiveness of CAR-A therapy in targeting amyloid-β pathology in Alzheimer's disease.
  • Introduced anti-amyloid chimeric antigen receptors in astrocytes (CAR-A)
  • Validated CAR-A function through in vitro assays
  • Examined effects of CAR-A on amyloid pathology in vivo
  • Utilized single-nucleus RNA sequencing to analyze glial response
  • CAR-A therapies reduced amyloid accumulation and associated pathology after plaque formation
  • Prevented early plaque deposition in animal models
  • Induced a distinct glial response involving astrocytes and microglia
  • Showed receptor-specific effects in astrocytes or microglia

Abstract

Alzheimer’s disease (AD) is the leading cause of dementia and is characterized by progressive amyloid accumulation followed by tau-mediated neurodegeneration. Despite advances in anti-amyloid immunotherapies, important limitations remain, highlighting the need for new therapeutic strategies. Here, we introduce anti-amyloid chimeric antigen receptors expressed in astrocytes (CAR-A) and validate their function in vitro. We show that two CAR-A designs reduce amyloid and associated pathology after plaque formation and prevent early plaque deposition in vivo. Single-nucleus RNA sequencing shows that CAR-A treatment induces a distinct glial response to amyloid pathology involving coordinated activity of astrocytes and microglia. Each construct additionally elicits distinctive, receptor-specific effects in astrocytes or microglia. Together, these findings support the therapeutic potential of CAR-A as a disease-modifying strategy for AD.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/69abc1645af8044f7a4ea025https://doi.org/10.1126/science.ads3972
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