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Current Progress in Electrotransfection as a Nonviral Method for Gene Delivery

机译:电转染作为基因传递的非病毒方法的最新进展。

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摘要

Electrotransfection (ET) is a nonviral method for delivery of various types of molecules into cells both in vitro and in vivo. Close to 90 clinical trials that involve the use of ET have been performed, and approximately half of them are related to cancer treatment. Particularly, ET is an attractive technique for cancer immunogene therapy because treatment of cells with electric pulses alone can induce immune responses to solid tumors, and the responses can be further enhanced by ET of plasmid DNA (pDNA) encoding therapeutic genes. Compared to other gene delivery methods, ET has several unique advantages. It is relatively inexpensive, flexible, and safe in clinical applications, and introduces only naked pDNA into cells without the use of additional chemicals or viruses. However, the efficiency of ET is still low, partly because biological mechanisms of ET in cells remain elusive. In previous studies, it was believed that pDNA entered the cells through transient pores created by electric pulses. As a result, the technique is commonly referred to as electroporation. However, recent discoveries have suggested that endocytosis plays an important role in cellular uptake and intracellular transport of electrotransfected pDNA. This review will discuss current progresses in the study of biological mechanisms underlying ET and future directions of research in this area. Understanding the mechanisms of pDNA transport in cells is critical for the development of new strategies for improving the efficiency of gene delivery in tumors.
机译:电转染(ET)是一种非病毒方法,可以在体外和体内将各种类型的分子递送到细胞中。已经进行了近90项涉及使用ET的临床试验,其中大约一半与癌症治疗有关。特别地,ET是用于癌症免疫基因治疗的有吸引力的技术,因为仅用电脉冲处理细胞可以诱导对实体瘤的免疫应答,并且通过编码治疗基因的质粒DNA(pDNA)的ET可以进一步增强应答。与其他基因传递方法相比,ET具有几个独特的优势。它在临床应用中相对便宜,灵活且安全,并且仅将裸露的pDNA引入细胞,而无需使用其他化学药品或病毒。然而,ET的效率仍然很低,部分原因是ET在细胞中的生物学机制仍然难以捉摸。在以前的研究中,据信pDNA通过电脉冲产生的瞬时孔进入细胞。结果,该技术通常称为电穿孔。然而,最近的发现表明,内吞作用在电转染的pDNA的细胞摄取和细胞内运输中起重要作用。这篇综述将讨论ET基础生物学机制研究的最新进展以及该领域的未来研究方向。了解细胞中pDNA转运的机制对于开发新策略以提高肿瘤中基因传递效率至关重要。

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