Pomatto Margherita A C, Negro Federica, Camussi Giovanni
Department of Medical Sciences, University of Turin, Turin, Italy.
Methods Mol Biol. 2022;2504:219-230. doi: 10.1007/978-1-0716-2341-1_16.
Extracellular vesicles (EVs) are a population of particles naturally released by cells to transport biological messages, including nucleic acids. Thus, EVs represent an ideal vehicle to deliver therapeutic miRNAs. The current challenge is the development of efficient protocols to load EVs with exogenous miRNAs. Human plasma is an abundant source of EVs which can be manipulated for therapeutic applications. Despite numerous techniques are currently available to load EVs, all of them present issues which limit their clinical application. Among all, electroporation was shown to be superior to other protocols and to efficiently load plasma-derived EVs with miRNAs. However, also the electroporation procedure presents issues that can reduce the miRNA delivery. In this chapter, we describe a protocol to isolate EVs from human plasma, to load synthetic miRNA mimics using electroporation, to evaluate EV integrity and miRNA loading into EVs. Finally, the analysis of EV functionality allows to investigate the ability of engineered EVs to transfer the miRNAs to target cells and to exploit their biological effects.
细胞外囊泡(EVs)是细胞自然释放的一群颗粒,用于传递包括核酸在内的生物信息。因此,EVs是递送治疗性微小RNA(miRNAs)的理想载体。当前的挑战是开发有效的方案,以便用外源性miRNAs加载EVs。人血浆是丰富的EVs来源,可对其进行操控以用于治疗应用。尽管目前有多种加载EVs的技术,但所有这些技术都存在限制其临床应用的问题。其中,电穿孔被证明优于其他方案,并且能有效地用miRNAs加载血浆来源的EVs。然而,电穿孔过程也存在可能降低miRNA递送效果的问题。在本章中,我们描述了一种从人血浆中分离EVs的方案,用电穿孔加载合成的miRNA模拟物,评估EV的完整性以及miRNA加载到EVs中的情况。最后,对EV功能的分析能够研究工程化EVs将miRNAs转移到靶细胞并发挥其生物学效应的能力。