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◆ Cell Reports2026-01-01· Neuroscience

Chimeric brain models to study human glial-neuronal and macroglial-microglial interactions

Mengmeng Jin, Ziyuan Ma, Haiwei Zhang, Rui Dang, Ava V. Papetti, Alessandro C. Stillitano, Lisa Zou, Steven A. Goldman, Peng Jiang

原始摘要(英文原文)· Original abstract
Chimeric brain models generated by transplanting human pluripotent stem cell (hPSC)-derived neural cells are valuable for studying the development and function of human neural cells in vivo. To explore glial-neuronal and glial-glial interactions, we co-engraft hPSC-derived primitive neural progenitor cells and primitive macrophage progenitors into neonatal mouse brains, generating chimeric brains containing human microglia, macroglia, and neurons. Using super-resolution imaging and 3D reconstruction, we observe human microglia pruning synapses and engulfing neurons. Single-cell RNA sequencing reveals human glial progenitor populations and dynamic stages of astroglial development resembling those in the human brain. Cell-cell communication analysis identifies strong human neural interactions, including NRXN-NLGN3 signaling between neurons and astrocytes and SPP1- and PTN-MK-mediated communication between microglia and astroglia. This co-transplantation model provides a powerful approach to study complex human glial-neuronal interactions and mechanisms underlying neurological diseases.
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Chimeric brain models to study human glial-neuronal and macroglial-microglial interactions — 科研速览 Science Skim