Astrocyte priming enhances microglial AÃ clearance and is compromised by APOE4
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https://www.ncbi.nlm.nih.gov/sra/SRP526446
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The innate immune system can develop a form of memory called priming, where prior exposure to a stimulus enhances subsequent responses. While well-characterized in peripheral immunity, its function in brain-resident cells such as astrocytes under non-disease conditions remains unclear. Here we show that human astrocytes derived from the induced pluripotent stem cells of healthy female donors, but not microglia, acquire a primed state following transient immune stimulations. Upon subsequent exposure to amyloid-Ã (AÃ), these astrocytes secrete elevated levels of cytokines and promote microglial AÃ uptake. In contrast, astrocytes carrying the Alzheimer's disease (AD) risk allele APOE4 exhibit reduced priming and fail to support microglial phagocytosis. These findings are validated in astrocyte-microglial co-cultures, cerebral organoids, and male mice, where astrocyte priming enhances AÃ clearance in an APOE4-sensitive manner. Our findings identify astrocytic immune memory as a modulator of microglial function and AÃ pathology, providing insights into how early protective responses in AD may be disrupted by genetic risk factors. Overall design: To investigate transcriptomic profiles in human microglia cell lines treated with ACM from AÃ-treated or non-treated primed astrocytes
创建时间:
2025-10-06



