Institute for Immunity and Transplantation, Stem Cell Biology and Regenerative Medicine, School of Medicine, Stanford University, Palo Alto, CA 94304, USA.
Molecular Medicine Department of Medicine, Stanford University, Palo Alto, CA 94304, USA.
Cells. 2022 Jun 21;11(13):1989. doi: 10.3390/cells11131989.
Extracellular vesicles (EVs) include a heterogeneous group of natural cell-derived nanostructures that are increasingly regarded as promising biotherapeutic agents and drug delivery vehicles in human medicine. Desirable intrinsic properties of EVs including the ability to bypass natural membranous barriers and to deliver their unique biomolecular cargo to specific cell populations position them as fiercely competitive alternatives for currently available cell therapies and artificial drug delivery platforms. EVs with distinct characteristics can be released from various cell types into the extracellular environment as a means of transmitting bioactive components and altering the status of the target cell. Despite the existence of a large number of preclinical studies confirming the therapeutic efficacy of different originated EVs for treating several pathological conditions, in this review, we first provide a brief overview of EV biophysical properties with an emphasis on their intrinsic therapeutic benefits over cell-based therapies and synthetic delivery systems. Next, we describe in detail different EVs derived from distinct cell sources, compare their advantages and disadvantages, and recapitulate their therapeutic effects on various human disorders to highlight the progress made in harnessing EVs for clinical applications. Finally, knowledge gaps and concrete hurdles that currently hinder the clinical translation of EV therapies are debated with a futuristic perspective.
细胞外囊泡 (EVs) 包括一组异质的天然细胞衍生的纳米结构,它们越来越被认为是人类医学中有前途的生物治疗剂和药物递送载体。EVs 具有内在的理想特性,包括能够绕过天然的膜性屏障,并将其独特的生物分子货物递送到特定的细胞群,这使它们成为目前可用的细胞治疗和人工药物递送平台的极具竞争力的替代品。具有不同特征的 EVs 可以从各种细胞类型释放到细胞外环境中,作为传递生物活性成分和改变靶细胞状态的一种方式。尽管有大量的临床前研究证实了不同来源的 EV 治疗多种病理状况的治疗效果,但在这篇综述中,我们首先简要概述了 EV 的生物物理特性,重点介绍了它们相对于基于细胞的治疗和合成递送系统的内在治疗益处。接下来,我们详细描述了来自不同细胞来源的不同 EVs,比较了它们的优缺点,并总结了它们对各种人类疾病的治疗效果,以突出利用 EV 进行临床应用所取得的进展。最后,从未来视角探讨了当前阻碍 EV 治疗临床转化的知识空白和具体障碍。