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TCRαβ+NK1.1-CD4-CD8- double-negative T cells inhibit central and peripheral inflammation and ameliorate ischemic stroke in mice

  • Dan Tian
  • , Yuhualei Pan
  • , Yushang Zhao
  • , Huan Wang
  • , Yue Tian
  • , Lu Yang
  • , Wen Shi
  • , Chengjie Zhang
  • , Yanbing Zhu
  • , Yongbo Zhang
  • , Songlin Wang
  • , Dong Zhang
  • Capital Medical University
  • Beijing Key Laboratory of Tolerance Induction and Organ Protection in Transplantation
  • Beijing Clinical Research Institute

科研成果: 期刊稿件文章同行评审

33 引用 (Scopus)

摘要

Background: Excessive immune activation leads to secondary injury and impedes injured brain recovery after ischemic stroke. However, few effective methods are currently used for equilibrating immune balance. CD3+NK1.1-TCRβ+CD4–CD8– double-negative T (DNT) cells which do not express NK cell surface markers are unique regulatory cells that maintain homeostasis in several immune-related diseases. However, the therapeutic potential and regulatory mechanism of DNT cells in ischemic stroke are still unknown. Methods: Mouse ischemic stroke is induced by occlusion of the distal branches of the middle cerebral artery (dMCAO). DNT cells were adoptively transferred intravenously into ischemic stroke mice. Neural recovery was evaluated by TTC staining and behavioral analysis. Using immunofluorescence, flow cytometry, and RNA sequencing, the immune regulatory function of DNT cells was investigated at different time points post ischemic stroke. Results: Adoptive transfer of DNT cells significantly reduces infarct volume and improves sensorimotor function after ischemic stroke. DNT cells suppress peripheral Trem1+ myeloid cell differentiation during the acute phase. Furthermore, they infiltrate the ischemic tissue via CCR5 and equilibrate the local immune balance during the subacute phase. During the chronic phase, DNT cells enhance Treg cell recruitment through CCL5, eventually developing an immune homeostatic milieu for neuronal recovery. Conclusions: DNT cell treatment renders the comprehensive anti-inflammatory roles in specific phases of ischemic stroke. Our study suggests that the adoptive transfer of regulatory DNT cells may be a potential cell-based therapy for ischemic stroke.

源语言英语
页(从-至)896-909
页数14
期刊Theranostics
13
3
DOI
出版状态已出版 - 2023

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