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Bioprocessing of Mesenchymal Stem Cells and Their Derivatives: Toward Cell-Free Therapeutics

机译:间充质干细胞及其衍生物的生物加工:走向无细胞治疗。

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摘要

Mesenchymal stem cells (MSCs) have attracted tremendous research interest due to their ability to repair tissues and reduce inflammation when implanted into a damaged or diseased site. These therapeutic effects have been largely attributed to the collection of biomolecules they secrete (i.e., their secretome). Recent studies have provided evidence that similar effects may be produced by utilizing only the secretome fraction containing extracellular vesicles (EVs). EVs are cell-derived, membrane-bound vesicles that contain various biomolecules. Due to their small size and relative mobility, they provide a stable mechanism to deliver biomolecules (i.e., biological signals) throughout an organism. The use of the MSC secretome, or its components, has advantages over the implantation of the MSCs themselves: (i) signals can be bioengineered and scaled to specific dosages, and (ii) the nonliving nature of the secretome enables it to be efficiently stored and transported. However, since the composition and therapeutic benefit of the secretome can be influenced by cell source, culture conditions, isolation methods, and storage conditions, there is a need for standardization of bioprocessing parameters. This review focuses on key parameters within the MSC culture environment that affect the nature and functionality of the secretome. This information is pertinent to the development of bioprocesses aimed at scaling up the production of secretome-derived products for their use as therapeutics.
机译:间充质干细胞(MSCs)由于其在植入受损或患病部位时能够修复组织并减轻炎症的能力而引起了巨大的研究兴趣。这些治疗效果在很大程度上归因于它们分泌的生物分子(即它们的分泌组)的收集。最近的研究提供了证据,表明仅利用含细胞外囊泡(EVs)的分泌组组分可以产生类似的作用。电动汽车是细胞衍生的,膜结合的囊泡,其中包含各种生物分子。由于它们的体积小和相对移动性,它们提供了在整个生物体内传递生物分子(即生物信号)的稳定机制。与MSC本身的植入相比,使用MSC分泌蛋白组或其成分具有优势:(i)可以对生物信号进行生物工程处理并将其缩放至特定剂量,并且(ii)分泌蛋白组的无生命性质使其能够有效存储和运输。但是,由于分泌物组的组成和治疗益处会受到细胞来源,培养条件,分离方法和储存条件的影响,因此需要对生物加工参数进行标准化。这篇综述着重于MSC培养环境中影响分泌物组的性质和功能的关键参数。该信息与生物工艺的发展有关,该生物工艺旨在扩大分泌组衍生产品的生产,以用作治疗药物。

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