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阳离子电荷密度和聚乙二醇化聚(氨基酸)三嵌段共聚物结构对其作为基因传递载体的影响。第 2 部分:DNA 保护、稳定性、细胞毒性和转染效率。

Impact of Cationic Charge Density and PEGylated Poly(Amino Acid) Tercopolymer Architecture on Their Use as Gene Delivery Vehicles. Part 2: DNA Protection, Stability, Cytotoxicity, and Transfection Efficiency.

机构信息

Department of Chemistry, University of Alabama in Huntsville, Department of Chemistry, University of Alabama in Huntsville, 301 Sparkman Drive, Huntsville, AL, 35899, USA.

出版信息

Macromol Biosci. 2018 Aug;18(8):e1800109. doi: 10.1002/mabi.201800109. Epub 2018 Jul 3.

DOI:10.1002/mabi.201800109
PMID:29969183
Abstract

The impact of the molecular architecture on the transfection efficiency of PEGylated poly(amino acid) block copolymers was investigated for PEG-b-p(l-Lys) -b-p(l-Leu) , PEG-b-p(l-Leu) -b-p(l-Lys) , and PEG-b-p((l-Leu) -co-(l-Lys) ). The block lengths of p(l-Lys) and p(l-Leu) were varied between 10, 20, and 40; and 10 and 20, respectively, to study the influence of the ionic/hydrophobic balance. The results show that ABC triblock copolymers form smaller and more stable polyplexes with plasmid DNA than AB diblock copolymers-as verified by long-term aggregation and ethidium bromide exclusion studies-protect the DNA more effectively against nucleases, and provide better transfection efficiencies, as indicated by total protein as well as luciferase expression. More detailed studies revealed that triblock copolymers with p(l-Leu) forming the C-block were most efficient in DNA complexation with a 2.3 times higher transfection rate. Furthermore, increasing the cationic character by increasing the p(l-Lys) chain length led to up to 25% higher transfection but at the same time induced some cytotoxicity. Diblock copolymers, where the amino acid-building blocks exist as a random copolymer, bind more loosely with DNA leading to less compact and less stable aggregates with lower transfection efficiencies.

摘要

研究了聚乙二醇化聚(氨基酸)嵌段共聚物的分子结构对转染效率的影响,用于 PEG-b-p(l-Lys)-b-p(l-Leu)、PEG-b-p(l-Leu)-b-p(l-Lys) 和 PEG-b-p((l-Leu)-co-(l-Lys))。p(l-Lys) 和 p(l-Leu) 的嵌段长度分别在 10、20 和 40 之间以及 10 和 20 之间变化,以研究离子/疏水性平衡的影响。结果表明,ABC 三嵌段共聚物比 AB 二嵌段共聚物形成更小且更稳定的与质粒 DNA 的聚集体 - 如通过长期聚集和溴化乙锭排除研究验证 - 更有效地保护 DNA 免受核酸酶的侵害,并提供更好的转染效率,如总蛋白和荧光素酶表达所示。更详细的研究表明,以 p(l-Leu) 形成 C 嵌段的三嵌段共聚物在与 DNA 的络合中最有效,转染率提高了 2.3 倍。此外,通过增加 p(l-Lys) 链长增加阳离子特性导致转染率提高了 25%,但同时也引起了一些细胞毒性。其中氨基酸构建块作为无规共聚物存在的二嵌段共聚物与 DNA 的结合较松散,导致更松散和不稳定的聚集物,转染效率更低。

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