Author:
Li Xuan,Lyu Jingjun,Li Ran,Jain Vaibhav,Shen Yuntian,del Águila Ángela,Hoffmann Ulrike,Sheng Huaxin,Yang Wei
Abstract
Abstract
Background
Ischemic stroke is a medical emergency that primarily affects the elderly. A complex immune response in the post-stroke brain constitutes a key component of stroke pathophysiology. This study aimed to determine how stroke affects immune cell populations in the aged brain based on molecular profiles of individual cells.
Methods
Single-cell RNA sequencing and a new transient ischemic stroke mouse model with late reperfusion were used.
Results
We generated, for the first time, a composite picture of immune cell populations in the stroke aged brain at single-cell resolution. We discovered at least 6 microglial subsets in the stroke aged brain, including a potentially stroke-specific subtype. Moreover, we identified major cell subpopulations formed by infiltrated myeloid cells after stroke, and revealed their unique molecular profiles.
Conclusions
This study provided the first scRNA-seq data set for immune cells in the stroke aged brain, and offered novel insights into post-stroke immune cell heterogeneity.
Funder
National Institutes of Health
Publisher
Springer Science and Business Media LLC
Subject
Cellular and Molecular Neuroscience,Neurology,Immunology,General Neuroscience
Cited by
56 articles.
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