Novel CH25H + and OASL + microglia subclusters play distinct roles in cerebral ischemic stroke
Microglial polarization is one of the most promising therapeutic targets for multiple central nervous system (CNS) disorders, including ischemic stroke. However, detailed transcriptional alteration of microglia following cerebral ischemic stroke remains largely unclear. Focal cerebral ischemia was i...
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Veröffentlicht in: | Journal of neuroinflammation 2023-05, Vol.20 (1), p.115-115, Article 115 |
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Sprache: | eng |
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Zusammenfassung: | Microglial polarization is one of the most promising therapeutic targets for multiple central nervous system (CNS) disorders, including ischemic stroke. However, detailed transcriptional alteration of microglia following cerebral ischemic stroke remains largely unclear.
Focal cerebral ischemia was induced by transient middle cerebral artery occlusion (tMCAO) for 60 min in mice. Single-cell RNA sequencing (scRNA-seq) was performed using ischemic brain tissues from tMCAO and sham mice 3 days after surgery. Ch25h
mice were used to investigate the role of specific microglia subcluster on post-stroke infarct volume and neuroinflammation.
We identified a relatively homeostatic subcluster with enhanced antigen processing and three "ischemic stroke associated microglia" (ISAM): MKI67
, CH25H
and OASL
subclusters. We found the MKI67
subcluster undergo proliferation and differentiation into CH25H
and OASL
subclusters. CH25H
microglia was a critical subcluster of ISAM that exhibited increased phagocytosis and neuroprotective property after stroke. Ch25h
mice developed significantly increased infarct volume following ischemic stroke compared to Ch25h
. Meanwhile, the OASL
subcluster accumulated in the ischemic brain and was associated with the evolving of neuroinflammation after stroke, which was further aggravated in the aged mice brain.
Our data reveal previously unrecognized roles of the newly defined CH25H
and OASL
microglia subclusters following ischemic stroke, with novel insights for precise microglia modulation towards stroke therapy. |
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ISSN: | 1742-2094 1742-2094 |
DOI: | 10.1186/s12974-023-02799-6 |