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Published

APOE3 and APOE4 human astrocytes differentially modulate Alzheimer's disease pathology and microglial responses in chimeric mice

Authors

Joan Cruz-Sese, Marta Mirón-Alcala, María Alfonso-Triguero, Jon Olalde, Leire Ruiz, Nuria Galbis-Gramage, Lorea Cortes, Laura Escobar, Pranav Preman, An Snellinx, Takashi Saito, Takaomi C Saido, Laura Saiz-Aúz, Alberto Rábano-Gutiérrez, Ana M Aransay, Ibai Diez, Julia Tcw, Alison Goate, Bart De Strooper, Elena Alberdi, Amaia M Arranz

Abstract

Cell Rep. 2026 Aug 8;45(8):117803. doi: 10.1016/j.celrep.2026.117803. Online ahead of print.

ABSTRACT

Astrocytes and APOE are strongly implicated in Alzheimer's disease (AD), yet the impact of astrocytes carrying different APOE variants on AD hallmarks remains incompletely understood. Here, we generate a chimeric model of AD by transplanting isogenic APOE3 or APOE4 human induced pluripotent stem cell-derived astrocyte progenitors into neonatal AD mice. Donor cells differentiate into human astrocytes that integrate into the cortex and display morphologies consistent with interlaminar-like astrocytes. APOE3 and APOE4 astrocytes differ in expression of APOE, which associates differentially with Aβ plaques. Notably, APOE3 astrocytes are associated with reduced Aβ burden, Tau pathology, and neuritic dystrophy, whereas APOE4 astrocytes exacerbate these processes. They also induce distinct microglial responses: APOE4 astrocytes enhance microglial clustering around Aβ plaques and promote a disease-associated microglia-like state, whereas APOE3 astrocytes reduce clustering and support a more homeostatic profile. These findings highlight a role for human astrocytes and APOE-dependent astrocyte functions in modulating AD-related pathology.

PMID:42570239 | DOI:10.1016/j.celrep.2026.117803

UK DRI Authors

Prof Bart De Strooper

Group Leader

Investigating the cellular reaction to amyloid beta and tau protein in Alzheimer's disease

Prof Bart De Strooper