Dental pulp mesenchymal stem cell-derived exosomes inhibit neuroinflammation and microglial pyroptosis in subarachnoid hemorrhage via the miRNA-197-3p/FOXO3 axis

被引:1
作者
Liang, Xin [1 ,9 ]
Miao, Yan [2 ]
Tong, Xin [3 ,10 ]
Chen, Jigang [4 ]
Liu, Hongyi [3 ,5 ]
He, Zilong [6 ]
Liu, Aihua [3 ,6 ,7 ,8 ]
Hu, Zhiqiang [1 ]
机构
[1] Capital Med Univ, Affiliated Beijing Shijitan Hosp, Dept Neurosurg, Beijing 100038, Peoples R China
[2] Cent South Univ, Xiangya Hosp 3, Dept Neurol, Changsha 410013, Peoples R China
[3] Capital Med Univ, Beijing Tiantan Hosp, Beijing Neurosurg Inst, Beijing 100070, Peoples R China
[4] Capital Med Univ, Beijing Childrens Hosp, Dept burn & plast Surg, Beijing 100045, Peoples R China
[5] Capital Med Univ, Sch Biomed Engn, Beijing 100069, Peoples R China
[6] Cent South Univ, Xiangya Hosp 3, Dept Neurosurg, Changsha 410013, Peoples R China
[7] Capital Med Univ, Beijing Tiantan Hosp, Dept Intervent Neuroradiol, Beijing 100070, Peoples R China
[8] China Natl Clin Res Ctr Neurol Dis, Beijing 100070, Peoples R China
[9] Capital Med Univ, Affiliated Beijing Jishuitan Hosp, Dept Neurosurg, Beijing, Peoples R China
[10] Capital Med Univ, Beijing Anzhen Hosp, Neurol Dis Ctr, Cerebrovasc Dis Dept, Beijing, Peoples R China
基金
国家重点研发计划;
关键词
Dental pulp stem cell; Exosomes; Pyroptosis; Subarachnoid hemorrhage; miRNA; FEASIBILITY; MECHANISMS; STROKE; SAFETY;
D O I
10.1186/s12951-024-02708-w
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Subarachnoid hemorrhage (SAH) is a severe stroke subtype that lacks effective treatment. Exosomes derived from human dental pulp stem cells (DPSCs) are a promising acellular therapeutic strategy for neurological diseases. However, the therapeutic effects of DPSC-derived exosomes (DPSC-Exos) on SAH remain unknown. In this study, we investigated the therapeutic effects and mechanisms of action of DPSC-Exos in SAH. Materials and methods SAH was established using 120 male Sprague-Dawley rats. One hour after SAH induction, DPSC-Exos were administered via tail vein injection. To investigate the effect of DPSC-Exos, SAH grading, short-term and long-term neurobehavioral assessments, brain water content, western blot (WB), immunofluorescence staining, Nissl staining, and HE staining were performed. The role of miR-197-3p/FOXO3 in regulating pyroptosis was demonstrated through miRNA sequencing, bioinformatics analysis, and rescue experiments. The SAH model in vitro was established by stimulating BV2 cells with hemoglobin (Hb) and the underlying mechanism of DPSC-Exos was investigated through WB and Hoechst/PI staining. Results The expressions of pro-inflammatory cytokines (IL-1 beta, IL-6, and TNF-alpha) were increased after SAH. DPSC-Exos alleviated brain edema and neuroinflammation by inhibiting the expression of FOXO3 and reducing NLRP3 inflammasome activation, leading to improved neurobehavioral functions at 24 h after SAH. In vitro, the expression of the NLRP3 inflammasome components (NLRP3 and caspase1-p20), GSDMD-N, and IL-18 was inhibited in BV2 cells pretreated with DPSC-Exos. Importantly, DPSC-Exos overexpressing miR-197-3p had a more obvious protective effect than those from NC-transfected DPSCs, while those from DPSCs transfected with the miR-197-3p inhibitor had a weaker protective effect. Functional studies indicated that miR-197-3p bound to the 3'-untranslated region of FOXO3, inhibiting its transcription. Furthermore, the overexpression of FOXO3 reversed the protective effects of miR-197-3p. Conclusions DPSC-Exos inhibited activation of the NLRP3 inflammasome and related cytokine release via the miR-197-3p/FOXO3 pathway, alleviated neuroinflammation, and inhibited microglial pyroptosis. These findings suggest that using DPSC-Exos is a promising therapeutic strategy for SAH. [GRAPHICS] .
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页数:19
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