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脐带间充质干细胞衍生的细胞外囊泡通过miR-191-5p/DAPK1/AKT轴减轻2型糖尿病中的氧化损伤。

Umbilical Cord Mesenchymal Stem Cell-Derived Extracellular Vesicles Attenuate Oxidative Damage via the miR-191-5p/DAPK1/AKT Axis in Type 2 Diabetes.

作者信息

Li Anran, Chen Cong, Zhang Tongjia, Tian Yuxin, Cao Yifan, Zhao Xiaoming, Wang Liping

机构信息

National Engineering Laboratory for AIDS Vaccine, Key Laboratory for Molecular Enzymology and Engineering, the Ministry of Education, School of Life Sciences, Jilin University, Changchun 130012, China.

Scientific Research Center, China-Japan Union Hospital of Jilin University, Changchun 130012, China.

出版信息

Biomater Res. 2025 Jul 3;29:0224. doi: 10.34133/bmr.0224. eCollection 2025.

Abstract

Human umbilical cord mesenchymal stem cell extracellular vesicles (hucMSC-EVs) exhibit remarkable potential for alleviating type 2 diabetes mellitus (T2DM). However, the role of hucMSC-EVs in T2DM, particularly concerning oxidative damage to pancreatic β cells, remains underexplored. This study utilized a high-fat diet and streptozotocin (STZ)-induced T2DM mouse model and an STZ-induced INS-1 cell damage model to investigate the effects and mechanisms of hucMSC-EVs. In the T2DM mouse model, hucMSC-EVs effectively lowered blood glucose levels, improved lipid metabolism disorders, and preserved liver function. Moreover, hucMSC-EVs enhanced insulin sensitivity and mitigated oxidative damage. Histological analysis confirmed that hucMSC-EVs marked alleviated liver, kidney, and pancreatic tissue damage. In vitro studies demonstrate that hucMSC-EVs enhance glucose absorption and glycogen synthesis in an insulin-resistant HepG2 model and stimulated insulin secretion in INS-1 cells under high-glucose conditions. In the STZ-induced INS-1 oxidative damage model, hucMSC-EVs protect against oxidative damage by increasing antioxidant enzyme activities, reducing reactive oxygen species production, and decreasing cell apoptosis. The effects were partially mediated by the activation of the phosphatidylinositol 3-kinase (PI3K)/AKT and signal transducer and activator of transcription (STAT) signaling pathways, as well as the up-regulation of key antioxidant proteins such as Nrf2, SOD1, and Bcl2. Further research revealed that miR-191-5p, which is enriched in hucMSC-EVs, targets DAPK1 to activate the PI3K/AKT pathway, thereby contributing to the protective effects against oxidative damage. These findings highlight the critical role and underlying mechanisms of hucMSC-EVs in ameliorating metabolic dysfunction in T2DM, particularly the protective effects against oxidative damage, thus providing a novel strategy for the treatment of T2DM.

摘要

人脐带间充质干细胞外泌体(hucMSC-EVs)在缓解2型糖尿病(T2DM)方面具有显著潜力。然而,hucMSC-EVs在T2DM中的作用,特别是关于胰腺β细胞氧化损伤的作用,仍未得到充分研究。本研究利用高脂饮食和链脲佐菌素(STZ)诱导的T2DM小鼠模型以及STZ诱导的INS-1细胞损伤模型,来研究hucMSC-EVs的作用及其机制。在T2DM小鼠模型中,hucMSC-EVs有效降低血糖水平,改善脂质代谢紊乱,并保护肝功能。此外,hucMSC-EVs增强胰岛素敏感性并减轻氧化损伤。组织学分析证实,hucMSC-EVs显著减轻肝脏、肾脏和胰腺组织损伤。体外研究表明,hucMSC-EVs在胰岛素抵抗的HepG2模型中增强葡萄糖吸收和糖原合成,并在高糖条件下刺激INS-1细胞分泌胰岛素。在STZ诱导的INS-1氧化损伤模型中,hucMSC-EVs通过增加抗氧化酶活性、减少活性氧生成和降低细胞凋亡来保护细胞免受氧化损伤。这些作用部分是通过磷脂酰肌醇3-激酶(PI3K)/蛋白激酶B(AKT)和信号转导及转录激活因子(STAT)信号通路的激活,以及关键抗氧化蛋白如核因子E2相关因子2(Nrf2)、超氧化物歧化酶1(SOD1)和B细胞淋巴瘤-2(Bcl2)的上调来介导的。进一步研究发现,hucMSC-EVs中富集的微小RNA-191-5p(miR-191-5p)靶向死亡相关蛋白激酶1(DAPK1)以激活PI3K/AKT通路,从而有助于发挥抗氧化损伤的保护作用。这些发现突出了hucMSC-EVs在改善T2DM代谢功能障碍中的关键作用及其潜在机制,特别是对氧化损伤的保护作用,从而为T2DM的治疗提供了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f967/12225837/3302b6df2d3a/bmr.0224.fig.001.jpg

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