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预处理人脂肪来源的基质/干细胞的细胞外囊泡的特征。

Characterization of Extracellular Vesicles from Preconditioned Human Adipose-Derived Stromal/Stem Cells.

机构信息

Division of Nephrology, Department of Internal Medicine III, University Hospital, Goethe-University, 60596 Frankfurt/M., Germany.

Institute of Biochemistry II, Faculty of Medicine, Goethe-University, 60596 Frankfurt/M., Germany.

出版信息

Int J Mol Sci. 2021 Mar 12;22(6):2873. doi: 10.3390/ijms22062873.

Abstract

Cell-free therapy using extracellular vesicles (EVs) from adipose-derived mesenchymal stromal/stem cells (ASCs) seems to be a safe and effective therapeutic option to support tissue and organ regeneration. The application of EVs requires particles with a maximum regenerative capability and hypoxic culture conditions as an in vitro preconditioning regimen has been shown to alter the molecular composition of released EVs. Nevertheless, the EV cargo after hypoxic preconditioning has not yet been comprehensively examined. The aim of the present study was the characterization of EVs from hypoxic preconditioned ASCs. We investigated the EV proteome and their effects on renal tubular epithelial cells in vitro. While no effect of hypoxia was observed on the number of released EVs and their protein content, the cargo of the proteins was altered. Proteomic analysis showed 41 increased or decreased proteins, 11 in a statistically significant manner. Furthermore, the uptake of EVs in epithelial cells and a positive effect on oxidative stress in vitro were observed. In conclusion, culture of ASCs under hypoxic conditions was demonstrated to be a promising in vitro preconditioning regimen, which alters the protein cargo and increases the anti-oxidative potential of EVs. These properties may provide new potential therapeutic options for regenerative medicine.

摘要

使用脂肪来源间充质基质/干细胞(ASCs)的细胞外囊泡(EVs)进行无细胞治疗似乎是一种安全有效的治疗选择,可以支持组织和器官再生。EV 的应用需要具有最大再生能力的颗粒,并且缺氧培养条件作为体外预处理方案已被证明可以改变释放的 EV 的分子组成。然而,缺氧预处理后的 EV 货物尚未得到全面检查。本研究的目的是表征缺氧预处理的 ASC 的 EV。我们研究了 EV 蛋白质组及其对体外肾小管上皮细胞的影响。虽然缺氧对释放的 EV 数量及其蛋白质含量没有影响,但蛋白质的货物发生了变化。蛋白质组学分析显示,41 种蛋白质增加或减少,其中 11 种具有统计学意义。此外,还观察到上皮细胞中 EV 的摄取以及体外对氧化应激的积极影响。总之,证明 ASC 在缺氧条件下培养是一种很有前途的体外预处理方案,它改变了蛋白质货物,并增加了 EV 的抗氧化能力。这些特性可能为再生医学提供新的潜在治疗选择。

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