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快速简便地定量分析多聚物的内吞运输。

Rapid and facile quantitation of polyplex endocytic trafficking.

机构信息

Department of Chemical and Biomolecular Engineering, University of Illinois, Urbana, IL 61801, USA.

Department of Chemical and Materials Engineering, University of Kentucky, Lexington, KY 40506, USA; Department of Pharmaceutical Sciences, University of Kentucky, Lexington, KY 40536, USA.

出版信息

J Control Release. 2017 Feb 10;247:19-27. doi: 10.1016/j.jconrel.2016.12.035. Epub 2016 Dec 31.

Abstract

Design of safe and effective synthetic nucleic acid delivery vectors such as polycation/DNA or polycation/siRNA complexes (polyplexes) will be facilitated by quantitative understanding of the mechanisms by which such materials escort cargo from the cell surface to the nucleus. In particular, the mechanisms of cellular internalization by various endocytosis pathways and subsequent endocytic vesicle trafficking have been shown to strongly affect nucleic acid delivery efficiency. Fluorescence microscopy and subcellular fractionation methods are commonly employed to follow intracellular trafficking of biomolecules and nanoparticulate delivery systems such as polyplexes. However, it is difficult to obtain quantitative data from microscopy and subcellular fractionation is experimentally difficult and low throughput. We have developed a method for quantifying the transport of polyplexes through important endocytic vesicles. The method is based on polymerization of 3,3'-diaminobenzidine by endocytosed horseradish peroxidase, causing an increase in the vesicle density, resistance to being solubilized by detergent and quenching of fluorophores within the vesicles, which makes them easy to separate and quantify. Using this method in HeLa cells, we have observed polyethylenimine/siRNA polyplexes initially appearing in early endosomes and rapidly moving to other compartments within 30min post-transfection. At the same time, we observed the kinetics of accumulation of the polyplexes in lysosomes at a similar rate. The results from the new method are consistent with similar measurements by confocal fluorescence microscopy and subcellular fractionation of endocytic vesicles on a Percoll gradient. The relative ease of this new method will aid investigation of gene delivery mechanisms by providing the means to rapidly quantify endocytic trafficking of polyplexes and other vectors.

摘要

设计安全有效的合成核酸传递载体,如聚阳离子/DNA 或聚阳离子/siRNA 复合物(多聚物),将通过定量理解这些材料如何将货物从细胞表面护送至细胞核的机制来促进。特别是,各种内吞途径的细胞内化机制以及随后的内吞小泡运输机制已被证明强烈影响核酸传递效率。荧光显微镜和亚细胞分级分离方法通常用于跟踪生物分子和纳米颗粒传递系统(如多聚物)的细胞内运输。然而,从显微镜获得定量数据很困难,并且亚细胞分级分离在实验上具有难度且通量低。我们已经开发出一种定量测量多聚物通过重要内吞小泡运输的方法。该方法基于内吞的辣根过氧化物酶聚合 3,3'-二氨基联苯胺,导致小泡密度增加、对去污剂的溶解性降低以及小泡内荧光团猝灭,从而使它们易于分离和定量。在 HeLa 细胞中使用该方法,我们观察到聚乙基亚胺/siRNA 多聚物最初出现在早期内体中,并在转染后 30 分钟内迅速移动到其他隔室。同时,我们以相似的速率观察到多聚物在溶酶体中的积累动力学。新方法的结果与共聚焦荧光显微镜和 Percoll 梯度上内吞小泡的亚细胞分级分离的类似测量结果一致。这种新方法相对容易,将有助于通过提供快速定量多聚物和其他载体的内吞运输的方法来研究基因传递机制。

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