生物
人脑
地图集(解剖学)
细胞
神经科学
人细胞
脑细胞
脑图谱
电池类型
大脑定位
解剖
人类疾病
计算生物学
细胞迁移
细胞功能
细胞生物学
中枢神经系统
哺乳动物大脑
作者
Jerry C. Wang,Damian Sanchez,Santhosh Arul,Belda Gülsuyu,Adnan Gopinadhan,Tanzila Mukhtar,Joseph Kim,John Andrews,Marcus A. C. Williams,Yewon Jung,Mana L. Hashimoto,Chang N. Kim,Shubhang Bhalla,Nathan Ewing-Crystal,John M. Bernabei,Vijay Letchuman,Alexander F. Haddad,Kafi Hemphill,Shantel M. Weinsheimer,Helen Kim
出处
期刊:Cell
[Cell Press]
日期:2026-07-01
标识
DOI:10.1016/j.cell.2026.07.007
摘要
The brain vasculature comprises diverse specialized cells that are essential for brain function, yet their spatial organization remains poorly understood. Here, we construct a comprehensive cerebrovascular cell atlas encompassing 314,535 transcriptomes that captures the arteriovenous axis and defines consensus cell states. We then perform spatial transcriptomics to map 1,529,740 cells across the human temporal cortex and hippocampus, uncovering stereotyped micro-communities termed vascular cell ensembles. These ensembles comprise specialized subsets of endothelial cells, mural cells, fibroblasts, and perivascular macrophages that align with the arteriovenous architecture to coordinate segment-specific functions, such as neurovascular coupling, blood-brain barrier transport, and immune surveillance. By overlaying genetic risk and pharmacologic reactivity, we identify ensemble-specific susceptibilities and candidate therapeutic targets across neurological diseases, including small vessel disease and stroke. This study provides a resource to dissect the spatial and functional logic underlying human cerebrovascular biology and establishes a blueprint for decoding neurological disease susceptibility and therapeutic response.
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