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基于多丙烯酸酯的基因传递载体系统的物理化学性质和生物学性能:氨基官能度的影响。

Physicochemical Properties and Biological Performance of Polymethacrylate Based Gene Delivery Vector Systems: Influence of Amino Functionalities.

机构信息

Institute of Polymers, Bulgarian Academy of Sciences, Acad. G. Bonchev st. bl.103A, Sofia, 1113, Bulgaria.

Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vass. Constantinou Ave., Athens, 11635, Greece.

出版信息

Macromol Biosci. 2021 Feb;21(2):e2000352. doi: 10.1002/mabi.202000352. Epub 2020 Dec 6.

Abstract

Physicochemical characteristics and biological performance of polyplexes based on two identical copolymers bearing tertiary amino or quaternary ammonium groups are evaluated and compared. Poly(2-(dimethylamino)ethyl methacrylate)-b-poly(oligo(ethylene glycol) methyl ether methacrylate) block copolymer (PDMAEMA-b-POEGMA) is synthesized by reversible addition fragmentation chain transfer polymerization. The tertiary amines of PDMAEMA are converted to quaternary ammonium groups by quaternization with methyl iodide. The two copolymers spontaneously formed well-defined polyplexes with DNA. The size, zeta potential, molar mass, aggregation number, and morphology of the polyplex particles are determined. The parent PDMAEMA-b-POEGMA exhibits larger buffering capacity, whereas the corresponding quaternized copolymer (QPDMAEMA-b-POEGMA) displays stronger binding affinity to DNA, yielding invariably larger in size and molar mass particles bearing greater number of DNA molecules per particle. Experiments revealed that QPDMAEMA-b-POEGMA is more effective in transfecting pEGFP-N1 than the parent copolymer, attributed to the larger size, molar mass, and DNA cargo, as well as to the effective cellular traffic, which dominated over the enhanced ability for endo-lysosomal escape of PDMAEMA-b-POEGMA.

摘要

评价并比较了基于两种带叔氨基或季铵基的同型嵌段共聚物的聚电解质复合物的物理化学特性和生物性能。通过可逆加成-断裂链转移聚合合成了聚[2-(二甲氨基)乙基甲基丙烯酸酯]-b-聚[聚(乙二醇)甲基醚甲基丙烯酸酯]嵌段共聚物(PDMAEMA-b-POEGMA)。PDMAEMA 的叔胺通过与碘甲烷季铵化转化为季铵盐。两种共聚物可自发与 DNA 形成具有明确形态的聚电解质复合物。测定了聚电解质复合物颗粒的粒径、Zeta 电位、数均分子量、聚集数和形态。原始 PDMAEMA-b-POEGMA 具有更大的缓冲能力,而相应的季铵化共聚物(QPDMAEMA-b-POEGMA)与 DNA 具有更强的结合亲和力,导致粒径和数均分子量始终更大,每个颗粒携带更多的 DNA 分子。实验表明,QPDMAEMA-b-POEGMA 比原始共聚物更有效地转染 pEGFP-N1,这归因于更大的粒径、数均分子量和 DNA 载量,以及有效的细胞转运,这超过了 PDMAEMA-b-POEGMA 增强的内体/溶酶体逃逸能力。

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