Biological Research (Oct 2023)

Focal ischemic stroke modifies microglia-derived exosomal miRNAs: potential role of mir-212-5p in neuronal protection and functional recovery

  • Si-si Li,
  • Jia-jia Wu,
  • Xiang-xin Xing,
  • Yu-lin Li,
  • Jie Ma,
  • Yu-jie Duan,
  • Jun-peng Zhang,
  • Chun-lei Shan,
  • Xu-yun Hua,
  • Mou-xiong Zheng,
  • Jian-guang Xu

DOI
https://doi.org/10.1186/s40659-023-00458-x
Journal volume & issue
Vol. 56, no. 1
pp. 1 – 20

Abstract

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Abstract Background Ischemic stroke is a severe type of stroke with high disability and mortality rates. In recent years, microglial exosome-derived miRNAs have been shown to be promising candidates for the treatment of ischemic brain injury and exert neuroprotective effects. Mechanisms underlying miRNA dysregulation in ischemic stroke are still being explored. Here, we aimed to verify whether miRNAs derived from exosomes exert effects on functional recovery. Methods MiR-212-5p agomir was employed to upregulate miR-212-5p expression in a rat model of middle cerebral artery occlusion/reperfusion (MCAO/R) as well as an oxygen-glucose deprivation/reoxygenation (OGD/R) in vitro. Western blot analysis, qRT–PCR and immunofluorescence staining and other methods were applied to explore the underlying mechanisms of action of miR-212-5p. Results The results of our study found that intervention with miR-212-5p agomir effectively decreased infarct volume and restored motor function in MCAO/R rats. Mechanistically, miR-212-5p agomir significantly reduced the expression of PlexinA2 (PLXNA2). Additionally, the results obtained in vitro were similar to those achieved in vivo. Conclusion In conclusion, the present study indicated that PLXNA2 may be a target gene of miR-212-5p, and miR-212-5p has great potential as a target for the treatment and diagnosis of ischemic stroke.

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