Five star polymers based on the positively ionizable hydrophilic 2-(dimethylamino)ethyl methacrylate (DMAEMA) and the hydrophobic but hydrolyzable tetrahydropyranyl methacrylate (THPMA) were prepared by group-transfer polymerization (GTP) using ethylene glycol dimethacrylate (EGDMA) as the coupling agent. In particular, four isomeric star copolymers (one heteroarm, two star block, and the statistical star), all with a 3:1 DMAEMA:THPMA molar ratio, plus one star homopolymer of DMAEMA, with degrees of polymerization of the arms equal to 15, were synthesized. After star polymer preparation and preliminary characterization, the THPMA units were hydrolyzed to negatively ionizable hydrophilic methacrylic acid (MAA) untis, thus yielding star polyampholytes. All the star polyampholytes as well as the commercially available transfection reagent SuperFect were evaluated for their ability to transfect human cervical HeLa cancer cells with the modified plasmid pRLSV40 bearing the enhanced green fluorescent protein (EGFP) as the reporter gene. The transfection efficiency was affected by star architecture. The DMAEMA15-star-MAA5 polyampholyte presented the highest transfection efficiency of all the star polymers tested but lower than that of SuperFect at its optimum conditions. All four star copolymers showed decreased toxicity compared to the DMAEMA star homopolymer for the same amounts of star polymer tested and also compared to the SuperFect at its optimum conditions.

译文

以乙二醇二甲基丙烯酸酯 (EGDMA) 为偶联剂,通过基团转移聚合 (GTP) 制备了基于正离子化亲水性甲基丙烯酸2-(二甲基氨基) 乙酯 (DMAEMA) 和疏水但可水解的甲基丙烯酸四氢吡喃基酯 (THPMA) 的五星聚合物。特别是,合成了四种同质星形共聚物 (一个杂臂,两个星形嵌段和统计星形),均具有3:1的DMAEMA:THPMA摩尔比,加上一种DMAEMA的星形均聚物,臂的聚合度等于15。经过星形聚合物的制备和初步表征,将THPMA单元水解为可负离子的亲水性甲基丙烯酸 (MAA),从而产生星形多两性电解质。评估了所有星形多两性电解质以及市售转染试剂SuperFect用带有增强绿色荧光蛋白 (EGFP) 作为报告基因的修饰质粒pRLSV40转染人子宫颈HeLa癌细胞的能力。转染效率受到星形结构的影响。DMAEMA15-star-MAA5在所有测试的star聚合物中,聚两性电解质具有最高的转染效率,但在最佳条件下低于SuperFect。对于相同数量的star聚合物,与DMAEMA star均聚物相比,所有四种star共聚物均显示出降低的毒性,并且在最佳条件下与SuperFect相比。

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