Mesenchymal stem cell-derived exosomal microRNA-367-3p mitigates lower limb ischemia/reperfusion injury in mouse skeletal muscle via EZH2 targeting

Author:

Sun Huanhuan1,Wang Jueqiong2,Bi Wei1,Zhang Feng1,Zhang Kai3,Tian Xitao4,Gao Xiang1,Zhang Yanrong5ORCID

Affiliation:

1. Department of Vascular Surgery, The Second Hospital of Hebei Medical University , Shijiazhuang 050000, Hebei , China

2. Department of Neurology, Neurological Laboratory of Hebei Province, The Second Hospital of Hebei Medical University , Shijiazhuang 050000, Hebei , China

3. Department of Vascular Surgery, Shijiazhuang Hospital of Traditional Chinese Medicine 050000 , Hebei , China

4. The Department of Orthopedic, Wuqiang County People’s Hospital , Hengshui, Hebei 053300 , China

5. Department of Vascular Surgery, The Third Hospital of Hebei Medical University , Shijiazhuang, Hebei 050000 , China

Abstract

Abstract Objective This study aimed to investigate the protective effect of bone marrow mesenchymal stem cell-derived exosomes (BMSCs-exo) against lower limb ischemia/reperfusion (I/R) injury-induced pyroptosis in skeletal muscle. Methods A mouse model of lower limb I/R injury was utilized to assess the impact of BMSCs-exo, particularly when loaded with microRNA-367-3p (miR-367-3p), on pyroptosis. Histological examination, wet weight/dry weight ratio measurements, and luciferase assays were employed to elucidate the mechanisms involved. Key findings BMSCs-exo effectively suppressed pyroptosis in injured skeletal muscle tissue. Loading BMSCs-exo with miR-367-3p enhanced this protective effect by downregulating key pyroptosis-related proteins. Luciferase assays identified enhancer of zeste homolog 2 (EZH2) as a direct target of miR-367-3p in BMSCs-exo. Conclusions BMSCs-exo loaded with miR-367-3p safeguarded mouse skeletal muscle against pyroptosis-induced I/R injury by targeting EZH2. These findings offer valuable insights into potential therapeutic strategies for lower limb I/R injuries, emphasizing the therapeutic potential of BMSCs-exo in mitigating tissue damage caused by pyroptosis.

Funder

Hebei Province Medical Science Research

Hebei Natural Science Foundation

Publisher

Oxford University Press (OUP)

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