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层层技术作为一种通用的基因传递应用工具。

Layer-by-Layer technique as a versatile tool for gene delivery applications.

机构信息

Laboratory of Micro-Encapsulation and Targeted Delivery of Biologically Active Compounds, Peter The Great St. Petersburg Polytechnic University, St. Petersburg, Russia.

Nanobiotechnology Laboratory, St. Petersburg Academic University, St. Petersburg, Russia.

出版信息

Expert Opin Drug Deliv. 2021 Aug;18(8):1047-1066. doi: 10.1080/17425247.2021.1879790. Epub 2021 Feb 18.

Abstract

: Gene therapy is a breakthrough medical field which focuses on the therapeutic delivery of recombinant nucleic acids in order to treat or prevent a broad spectrum of diseases. However, a number of important obstacles remain before its wide introduction into clinical practice can be envisaged. One of the biggest bottlenecks is the lack of efficient and safe delivery technologies, particularly, for distribution. Above and beyond standard requirements for carriers, the delivery systems for gene therapy ideally use a hit-and-run principle (to minimize off-target effect and display of immunogenic moieties). None of the currently used viral vectors fulfills all of these requirements. Therefore, the growing variety of non-viral delivery platforms represents a promising alternative.: This review summarizes the Layer-by-Layer (LbL) approaches that can be effectively used for the gene delivery, considering various examples with the transfer of pDNA, mRNA, siRNA as well as genome-editing tools. gene modification of clinically relevant cells and clinical aspects for possible application of LbL systems in gene therapy are also underlined.: The LbL technique provides broad opportunities for the delivery of genetic material for various purposes and offers promise for future clinical application in gene therapy.

摘要

基因治疗是一个突破性的医学领域,专注于重组核酸的治疗性传递,以治疗或预防广泛的疾病。然而,在将其广泛引入临床实践之前,仍然存在许多重要的障碍。最大的瓶颈之一是缺乏高效和安全的传递技术,特别是在分布方面。除了载体的标准要求外,基因治疗的传递系统理想地使用打了就跑的原则(以最小化脱靶效应和免疫原性部分的显示)。目前使用的任何病毒载体都不能满足所有这些要求。因此,越来越多的非病毒传递平台代表了一种有前途的替代方法。

这篇综述总结了可以有效地用于基因传递的层层(LbL)方法,考虑了各种例子,包括 pDNA、mRNA、siRNA 以及基因组编辑工具的转移。还强调了临床相关细胞的基因修饰以及 LbL 系统在基因治疗中可能应用的临床方面。

LbL 技术为各种目的的遗传物质传递提供了广泛的机会,并为基因治疗的未来临床应用提供了希望。

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