转录组
电池类型
CD44细胞
神经科学
小胶质细胞
基因敲除
脑缺血
生物
计算生物学
细胞
缺血
神经炎症
细胞生物学
医学
基因表达
炎症
免疫学
基因
遗传学
内科学
作者
Bing Han,Shunheng Zhou,Yuan Zhang,Sina Chen,Xi Wen,Chenchen Liu,Xu Zhou,Mengqin Yuan,Xiaoyu Yu,Lu Li,Yu Wang,Hui Ren,Jian Xie,Bin Li,Minzi Ju,You Zhou,Ziqi Liu,Zhongli Xiong,Ling Shen,Yuan Zhang,Ying Bai,Jun Chen,Wei Jiang,Honghong Yao
出处
期刊:Science Translational Medicine
[American Association for the Advancement of Science (AAAS)]
日期:2024-02-07
卷期号:16 (733)
被引量:7
标识
DOI:10.1126/scitranslmed.adg1323
摘要
Neuroinflammation is acknowledged as a pivotal pathological event after cerebral ischemia. However, there is limited knowledge of the molecular and spatial characteristics of nonneuronal cells, as well as of the interactions between cell types in the ischemic brain. Here, we used spatial transcriptomics to study the ischemic hemisphere in mice after stroke and sequenced the transcriptomes of 19,777 spots, allowing us to both visualize the transcriptional landscape within the tissue and identify gene expression profiles linked to specific histologic entities. Cell types identified by single-cell RNA sequencing confirmed and enriched the spatial annotation of ischemia-associated gene expression in the peri-infarct area of the ischemic hemisphere. Analysis of ligand-receptor interactions in cell communication revealed galectin-9 to cell-surface glycoprotein CD44 (LGALS9-CD44) as a critical signaling pathway after ischemic injury and identified microglia and macrophages as the main source of galectins after stroke. Extracellular vesicle–mediated Lgals9 delivery improved the long-term functional recovery in photothrombotic stroke mice. Knockdown of Cd44 partially reversed these therapeutic effects, inhibiting oligodendrocyte differentiation and remyelination. In summary, our study provides a detailed molecular and cellular characterization of the peri-infact area in a murine stroke model and revealed Lgals9 as potential treatment target that warrants further investigation.
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