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Extracellular Vesicles: Evolving Factors in Stem Cell Biology

机译:细胞外囊泡:干细胞生物学中的进化因素。

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Stem cells are proposed to continuously secrete trophic factors that potentially serve as mediators of autocrine and paracrine activities, associated with reprogramming of the tumor microenvironment, tissue regeneration, and repair. Hitherto, significant efforts have been made to understand the level of underlying paracrine activities influenced by stem cell secreted trophic factors, as little is known about these interactions. Recent findings, however, elucidate this role by reporting the effects of stem cell derived extracellular vesicles (EVs) that mimic the phenotypes of the cells from which they originate. Exchange of genetic information utilizing persistent bidirectional communication mediated by stem cell-EVs could regulate stemness, self-renewal, and differentiation in stem cells and their subpopulations. This review therefore discusses stem cell-EVs as evolving communication factors in stem cell biology, focusing on how they regulate cell fates by inducing persistent and prolonged genetic reprogramming of resident cells in a paracrine fashion. In addition, we address the role of stem cell-secreted vesicles in shaping the tumor microenvironment and immunomodulation and in their ability to stimulate endogenous repair processes during tissue damage. Collectively, these functions ensure an enormous potential for future therapies.
机译:提出干细胞可以连续分泌营养因子,这些营养因子可能会作为自分泌和旁分泌活动的介质,与肿瘤微环境的重编程,组织再生和修复有关。迄今为止,人们对了解受干细胞分泌的营养因子影响的潜在旁分泌活动的水平做出了巨大的努力,因为对这些相互作用的了解甚少。然而,最近的发现通过报道模仿它们起源的细胞表型的干细胞衍生的细胞外囊泡(EVs)的作用阐明了这一作用。利用由干细胞电动车介导的持续双向通讯来交换遗传信息可以调节干细胞及其亚群的干性,自我更新和分化。因此,本篇综述讨论了干细胞电动汽车作为干细胞生物学中不断发展的交流因素,重点关注它们如何通过旁分泌方式诱导驻留细胞的持久性和长期遗传重编程来调控细胞命运。此外,我们研究了干细胞分泌的囊泡在塑造肿瘤微环境和免疫调节中的作用,以及它们在组织损伤过程中刺激内源性修复过程的能力。这些功能共同确保了将来治疗的巨大潜力。

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