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用于质粒DNA转染的亲核试剂响应型电荷反转聚阳离子

Nucleophile responsive charge-reversing polycations for pDNA transfection.

作者信息

Lewis Reece W, Muralidharan Aswin, Klemm Benjamin, Boukany Pouyan E, Eelkema Rienk

机构信息

Department of Chemical Engineering, Delft University of Technology 2629 HZ Delft The Netherlands

Department of Bionanoscience, Delft University of Technology 2629 HZ Delft The Netherlands.

出版信息

Polym Chem. 2023 Mar 9;14(14):1591-1601. doi: 10.1039/d3py00075c. eCollection 2023 Apr 4.

Abstract

Polycationic carriers promise low cost and scalable gene therapy treatments, however inefficient intracellular unpacking of the genetic cargo has limited transfection efficiency. Charge-reversing polycations, which transition from cationic to neutral or negative charge, can offer targeted intracellular DNA release. We describe a new class of charge-reversing polycation which undergoes a cationic-to-neutral conversion by a reaction with cellular nucleophiles. The deionization reaction is relatively slow with primary amines, and much faster with thiols. In mammalian cells, the intracellular environment has elevated concentrations of amino acids (∼10×) and the thiol glutathione (∼1000×). We propose this allows for decationization of the polymeric carrier slowly in the extracellular space and then rapidly in the intracellular milleu for DNA release. We demonstrate that in a lipopolyplex formulation this leads to both improved transfection and reduced cytotoxicity when compared to a non-responsive polycationic control.

摘要

聚阳离子载体有望实现低成本且可扩展的基因治疗,但基因货物在细胞内低效解包限制了转染效率。电荷反转聚阳离子从阳离子转变为中性或负电荷,可实现靶向细胞内DNA释放。我们描述了一类新型的电荷反转聚阳离子,它通过与细胞亲核试剂反应实现阳离子到中性的转变。去离子反应与伯胺反应相对较慢,与硫醇反应则快得多。在哺乳动物细胞中,细胞内环境中氨基酸浓度升高(约10倍),硫醇谷胱甘肽浓度升高(约1000倍)。我们认为,这使得聚合物载体在细胞外空间缓慢去阳离子化,然后在细胞内环境中快速去阳离子化以释放DNA。我们证明,与无反应性的聚阳离子对照相比,在脂质多聚体配方中,这既能提高转染效率,又能降低细胞毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a152/10071491/66cb0b76844a/d3py00075c-f1.jpg

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