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可重现的大规模分离脂肪组织来源间充质干细胞/基质细胞中的外泌体及其在急性肾损伤中的应用。

Reproducible Large-Scale Isolation of Exosomes from Adipose Tissue-Derived Mesenchymal Stem/Stromal Cells and Their Application in Acute Kidney Injury.

机构信息

ExoCoBio Exosome Institue (EEI), ExoCoBio Inc., Seoul 08594, Korea.

Knotus Co. Ltd., Incheon 22014, Korea.

出版信息

Int J Mol Sci. 2020 Jul 5;21(13):4774. doi: 10.3390/ijms21134774.

Abstract

Acute kidney injury (AKI) is a fatal medical episode caused by sudden kidney damage or failure, leading to the death of patients within a few hours or days. Previous studies demonstrated that exosomes derived from various mesenchymal stem/stromal cells (MSC-exosomes) have positive effects on renal injuries in multiple experimental animal models of kidney diseases including AKI. However, the mass production of exosomes is a challenge not only in preclinical studies with large animals but also for successful clinical applications. In this respect, tangential flow filtration (TFF) is suitable for good manufacturing practice (GMP)-compliant large-scale production of high-quality exosomes. Until now, no studies have been reported on the use of TFF, but rather ultracentrifugation has been almost exclusively used, to isolate exosomes for AKI therapeutic application in preclinical studies. Here, we demonstrated the reproducible large-scale production of exosomes derived from adipose tissue-derived MSC (ASC-exosomes) using TFF and the lifesaving effect of the ASC-exosomes in a lethal model of cisplatin-induced rat AKI. Our results suggest the possibility of large-scale stable production of ASC-exosomes without loss of function and their successful application in life-threatening diseases.

摘要

急性肾损伤(AKI)是由肾脏突然损伤或衰竭引起的致命医疗事件,可导致患者在数小时或数天内死亡。先前的研究表明,源自各种间充质干细胞/基质细胞(MSC-外泌体)的外泌体对包括 AKI 在内的多种肾脏疾病的实验动物模型中的肾脏损伤具有积极作用。然而,外泌体的大规模生产不仅在大型动物的临床前研究中是一个挑战,而且对于成功的临床应用也是一个挑战。在这方面,切向流过滤(TFF)适用于符合良好生产规范(GMP)的高质量外泌体的大规模生产。到目前为止,还没有关于使用 TFF 的研究报告,而是几乎专门使用超速离心法来分离 AKI 治疗应用的外泌体在临床前研究中。在这里,我们证明了使用 TFF 可重复性地大规模生产源自脂肪组织衍生的 MSC(ASC-外泌体),并且 ASC-外泌体在顺铂诱导的大鼠 AKI 致死模型中具有救生作用。我们的结果表明,有可能在不丧失功能的情况下大规模稳定地生产 ASC-外泌体,并将其成功应用于危及生命的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97fd/7370182/43ecacadef87/ijms-21-04774-g001.jpg

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