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利用来自脐带华通氏胶间充质干细胞的载脂联素小细胞外囊泡增强2型糖尿病患者的胰岛素敏感性:一种新型治疗方法。

Enhancing insulin sensitivity in type 2 diabetes mellitus using apelin-loaded small extracellular vesicles from Wharton's jelly-derived mesenchymal stem cells: a novel therapeutic approach.

作者信息

Cui Jing, Wang Mingkun, Zhang Wenhong, Sun Jiachen, Zhang Yan, Zhao Li, Hong Zhibo, Li Dongtao, Huang Yi Xiong, Zhang Ningkun, Chen Yu

机构信息

The Fifth School of Clinical Medicine, Navy Clinical College, Anhui Medical University, Hefei, Anhui, China.

Department of Cardiology, The Sixth Medical Center of Chinese People's Liberation Army General Hospital, Beijing, China·, China.

出版信息

Diabetol Metab Syndr. 2024 Apr 16;16(1):84. doi: 10.1186/s13098-024-01332-w.

Abstract

BACKGROUND

Type 2 diabetes mellitus (T2DM), characterized by β-cell dysfunction and insulin resistance (IR), presents considerable treatment challenges. Apelin is an adipocyte-derived factor that shows promise in improving IR; however, it is limited by poor targeting and a short half-life. In the present study, engineered small extracellular vesicles (sEVs) derived from Wharton's jelly-derived mesenchymal stem cells (WJ-MSCs) loaded with apelin were used to address the limitations of the therapeutic application of apelin.

METHODS

WJ-MSCs were transduced to obtain engineered sEVs loaded with overexpressed apelin (apelin-MSC-sEVs) and the control sEVs (MSC-sEVs). T2DM mice were injected with apelin-MSC-sEVs and MSC-sEVs, and blood glucose monitoring, glucose and insulin tolerance tests, confocal microscopy, and immunocytochemical analysis were performed. IR models of 3T3-L1 adipocytes were employed to detect GLUT4 expression in each group using western blotting; the affected pathways were determined by measuring the changes in Akt and AMPK signaling and phosphorylation.

RESULTS

Upon successful engineering, WJ-MSCs demonstrated significant overexpression of apelin. The genetic modification did not adversely impact the characteristics of sEVs, ranging from surface protein markers, morphology, to particle size, but generated apelin-overexpressed sEVs. Apelin-MSC-sEVs treatment resulted in notable enhancement of Akt and AMPK pathway activities within 3T3-L1 adipocytes and adipose tissues of T2DM mice. Furthermore, the apelin-loaded sEVs significantly reduced plasma glucose levels, increased pancreatic β-cell proliferation, improved insulin and glucose tolerance, and modulated pro-inflammatory cytokine profiles, compared to mice treated with the control sEVs.

CONCLUSION

Our study developed novel genetically engineered apelin-loaded sEVs derived from WJ-MSCs, and demonstrated their potent role in augmenting insulin sensitivity and regulating inflammatory responses, highlighting their therapeutic promise in T2DM management. The findings open new avenues for the development of clinically viable treatments for T2DM in humans using the apelin-loaded sEVs.

摘要

背景

2型糖尿病(T2DM)以β细胞功能障碍和胰岛素抵抗(IR)为特征,带来了相当大的治疗挑战。Apelin是一种脂肪细胞衍生因子,在改善IR方面显示出前景;然而,它受到靶向性差和半衰期短的限制。在本研究中,使用源自华通氏胶间充质干细胞(WJ-MSCs)的工程化小细胞外囊泡(sEVs)来解决Apelin治疗应用的局限性。

方法

转导WJ-MSCs以获得负载过表达Apelin的工程化sEVs(Apelin-MSC-sEVs)和对照sEVs(MSC-sEVs)。给T2DM小鼠注射Apelin-MSC-sEVs和MSC-sEVs,并进行血糖监测、葡萄糖和胰岛素耐量试验、共聚焦显微镜检查和免疫细胞化学分析。采用3T3-L1脂肪细胞的IR模型,通过蛋白质印迹法检测每组中葡萄糖转运蛋白4(GLUT4)的表达;通过测量Akt和AMPK信号传导及磷酸化的变化来确定受影响的途径。

结果

成功进行工程改造后,WJ-MSCs显示出Apelin的显著过表达。基因改造并未对sEVs的特性产生不利影响,从表面蛋白标志物、形态到粒径,但产生了过表达Apelin的sEVs。与用对照sEVs处理的小鼠相比,Apelin-MSC-sEVs处理导致3T3-L1脂肪细胞和T2DM小鼠脂肪组织内Akt和AMPK途径活性显著增强。此外,负载Apelin的sEVs显著降低血浆葡萄糖水平,增加胰腺β细胞增殖,改善胰岛素和葡萄糖耐量,并调节促炎细胞因子谱。

结论

我们的研究开发了源自WJ-MSCs的新型基因工程负载Apelin的sEVs,并证明了它们在增强胰岛素敏感性和调节炎症反应方面的强大作用,突出了它们在T2DM管理中的治疗前景。这些发现为使用负载Apelin的sEVs开发临床上可行治疗人类T2DM的方法开辟了新途径。

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