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评估核酸:阳离子纳米颗粒用于基因传递的相互作用。

Assessing Nucleic Acid: Cationic Nanoparticle Interaction for Gene Delivery.

机构信息

Nano-Gene and Drug Delivery Group, Discipline of Biochemistry, School of Life Sciences, University of KwaZulu-Natal, Durban, South Africa.

出版信息

Methods Mol Biol. 2021;2211:43-55. doi: 10.1007/978-1-0716-0943-9_4.

Abstract

The assessment of the efficient binding between a nucleic acid and its associated nanoparticle is crucial for gene delivery. Emerging from the extensive search for versatile gene carriers, are complexes formed between nucleic acids and nonviral nanocarriers that promise to be viable alternatives to the predominantly viral-based gene delivery vehicles. However, much is still to be known about the exact structure and physico-chemical properties of such nanocomplexes. This chapter will concentrate on cationic lipid, polymer, and functionalized metal nanoparticles and their interaction with nucleic acids by direct conjugation or electrostatic interaction. Methods commonly employed to evaluate the nature and extent of nucleic acid interactions with cationic nanocarriers, such a nucleic acid binding, nuclease protection, and dye displacement assays will be described. In addition, the ultrastructural morphology, size, and zeta potential of these nanocomplexes, which are crucial for their cellular uptake and intracellular trafficking, will be assessed using electron microscopy, fluorescent detection, and nanoparticle tracking analysis (NTA). These assays have the ability to visualize and quantify the interaction and can also be used to complement each other, in addition to providing confirmation of the formation of the relevant nanocomplexes.

摘要

评估核酸与其相关纳米颗粒之间的有效结合对于基因传递至关重要。在广泛寻找多功能基因载体的过程中,出现了核酸与非病毒纳米载体形成的复合物,它们有望成为基于病毒的主要基因传递载体的可行替代品。然而,对于这些纳米复合物的确切结构和物理化学性质,我们还有很多需要了解。本章将集中介绍阳离子脂质体、聚合物和功能化金属纳米粒子,以及它们通过直接共轭或静电相互作用与核酸的相互作用。将描述常用于评估核酸与阳离子纳米载体相互作用性质和程度的方法,如核酸结合、核酸酶保护和染料置换测定。此外,还将使用电子显微镜、荧光检测和纳米颗粒跟踪分析(NTA)评估这些纳米复合物的超微形态、大小和 zeta 电位,这些参数对于它们的细胞摄取和细胞内运输至关重要。这些测定法具有可视化和量化相互作用的能力,并且除了提供形成相关纳米复合物的确认外,还可以相互补充。

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