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使用外泌体作为载体来携带先进疗法。

Use of exosomes as vectors to carry advanced therapies.

作者信息

Sancho-Albero María, Medel-Martínez Ana, Martín-Duque Pilar

机构信息

Department of Chemical Engineering, Aragon Institute of Nanoscience (INA), Aragon Materials Science Institute (ICMA), University of Zaragoza Campus Río Ebro-Edificio I+D, C/Poeta Mariano Esquillor s/n 50018 Zaragoza Spain.

Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBERBBN) 28029 Madrid Spain

出版信息

RSC Adv. 2020 Jun 23;10(40):23975-23987. doi: 10.1039/d0ra02414g. eCollection 2020 Jun 19.

Abstract

Exosomes are microvesicles of nanometric size involved in the communication between cells and tissues. Inside their bilipidic membrane they carry nucleic acids such as cargos (DNA, miRNA, ). Some of the advantages that make exosomes very attractive therapeutic vehicles are (i) their tropism through different tissues, (ii) the ability to pass biological barriers and (iii) the protection of the encapsulated material from the immune system and degradation. Viruses are some of the most widely employed gene therapy vehicles; however, they are still facing many problems, such as inefficient tropism to damaged areas and their elimination by the immune system. One of the functions attributed to exosomes is the elimination of substances that could be harmful to the cell, including viruses. Recently it has been investigated whether complete viruses or part of them could be encapsulated in exosomes, for a new viral-exosome gene therapy approach. Moreover, nanotechnology is another type of advanced therapy (together with gene and cell therapies) that can be used, among other utilities, to transfer genetic material. Recently the field of encapsulation of nanomaterials in exosomes, with or without gene transfer, is increasing. In this review we will summarize all of those studies.

摘要

外泌体是纳米级的微囊泡,参与细胞与组织之间的通讯。在其双脂膜内,它们携带诸如货物(DNA、miRNA等)的核酸。使外泌体成为极具吸引力的治疗载体的一些优势在于:(i)它们对不同组织的趋向性;(ii)穿过生物屏障的能力;以及(iii)保护封装物质免受免疫系统攻击和降解。病毒是一些应用最为广泛的基因治疗载体;然而,它们仍面临许多问题,例如对受损区域的趋向性低效以及被免疫系统清除。归因于外泌体的功能之一是清除可能对细胞有害的物质,包括病毒。最近,人们研究了完整病毒或其部分是否可以封装在外泌体中,以实现一种新的病毒 - 外泌体基因治疗方法。此外,纳米技术是另一种先进疗法(与基因和细胞疗法一起),除其他用途外,可用于转移遗传物质。最近,无论有无基因转移,将纳米材料封装在外泌体中的领域正在不断发展。在这篇综述中,我们将总结所有这些研究。

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