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Focus on Extracellular Vesicles: Therapeutic Potential of Stem Cell-Derived Extracellular Vesicles

机译:专注于细胞外囊泡:干细胞衍生的细胞外囊泡的治疗潜力

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摘要

The intense research focus on stem and progenitor cells could be attributed to their differentiation potential to generate new cells to replace diseased or lost cells in many highly intractable degenerative diseases, such as Alzheimer disease, multiple sclerosis, and heart diseases. However, experimental and clinical studies have increasingly attributed the therapeutic efficacy of these cells to their secretion. While stem and progenitor cells secreted many therapeutic molecules, none of these molecules singly or in combination could recapitulate the functional effects of stem cell transplantations. Recently, it was reported that extracellular vesicles (EVs) could recapitulate the therapeutic effects of stem cell transplantation. Based on the observations reported thus far, the prevailing hypothesis is that stem cell EVs exert their therapeutic effects by transferring biologically active molecules such as proteins, lipids, mRNA, and microRNA from the stem cells to injured or diseased cells. In this respect, stem cell EVs are similar to EVs from other cell types. They are both primarily vehicles for intercellular communication. Therefore, the differentiating factor is likely due to the composition of their cargo. The cargo of EVs from different cell types are known to include a common set of proteins and also proteins that reflect the cell source of the EVs and the physiological or pathological state of the cell source. Hence, elucidation of the stem cell EV cargo would provide an insight into the multiple physiological or biochemical changes necessary to affect the many reported stem cell-based therapeutic outcomes in a variety of experimental models and clinical trials.
机译:对干细胞和祖细胞的深入研究可能归因于它们的分化潜力,可以产生新的细胞来替代许多高度难治的变性疾病(例如阿尔茨海默氏病,多发性硬化症和心脏病)中患病或丢失的细胞。然而,实验和临床研究越来越将这些细胞的治疗功效归因于它们的分泌。尽管干细胞和祖细胞分泌了许多治疗性分子,但是这些分子中没有一个单独或组合在一起可以概括干细胞移植的功能作用。最近,有报道说细胞外囊泡(EVs)可以概括干细胞移植的治疗效果。基于迄今为止报道的观察,普遍的假设是干细胞电动车通过将生物活性分子(例如蛋白质,脂质,mRNA和microRNA)从干细胞转移到受伤或患病的细胞中来发挥治疗作用。在这方面,干细胞电动汽车类似于其他类型的电动汽车。它们都是主要的细胞间通讯的载体。因此,差异化因素可能是由于其货物的成分。已知来自不同细胞类型的EV货物包括一组共同的蛋白质以及反映EV的细胞来源和细胞来源的生理或病理状态的蛋白质。因此,阐明干细胞电动汽车的货物将提供对在各种实验模型和临床试验中影响许多报道的基于干细胞的治疗结果所必需的多种生理或生化变化的见解。

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