小胶质细胞
生物
类有机物
神经科学
人脑
体内
表型
转录组
异种移植
免疫学
炎症
医学
移植
基因表达
基因
遗传学
外科
作者
Simon T. Schafer,Abed AlFatah Mansour,Johannes C. M. Schlachetzki,Monique Pena,Saeed S. Ghassemzadeh,Lisa Mitchell,Amanda Mar,Daphne Quang,Sarah Stumpf,Irene Santisteban Ortiz,Addison J. Lana,Clara Baek,Raghad Zaghal,Christopher K. Glass,Axel Nimmerjahn,Fred H. Gage
出处
期刊:Cell
[Cell Press]
日期:2023-05-01
卷期号:186 (10): 2111-2126.e20
被引量:104
标识
DOI:10.1016/j.cell.2023.04.022
摘要
Microglia are specialized brain-resident macrophages that play crucial roles in brain development, homeostasis, and disease. However, until now, the ability to model interactions between the human brain environment and microglia has been severely limited. To overcome these limitations, we developed an in vivo xenotransplantation approach that allows us to study functionally mature human microglia (hMGs) that operate within a physiologically relevant, vascularized immunocompetent human brain organoid (iHBO) model. Our data show that organoid-resident hMGs gain human-specific transcriptomic signatures that closely resemble their in vivo counterparts. In vivo two-photon imaging reveals that hMGs actively engage in surveilling the human brain environment, react to local injuries, and respond to systemic inflammatory cues. Finally, we demonstrate that the transplanted iHBOs developed here offer the unprecedented opportunity to study functional human microglia phenotypes in health and disease and provide experimental evidence for a brain-environment-induced immune response in a patient-specific model of autism with macrocephaly.
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