Branched poly (trimethylphosphonium ethylacrylate-co-PEGA) by RAFT: alternative to cationic polyammoniums for nucleic acid complexation

Alexander B. Cook, Raoul Peltier, Tammie R. Barlow, Joji Tanaka, James A. Burns, Sébastien Perrier
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引用次数: 8

Abstract

Cationic and highly branched poly (trimethylphosphonium ethylacrylate-co-poly (ethylene glycol) acrylate) (p (TMPEA-co-PEGA)), and its ammonium equivalent, have been synthesised from post-polymerisation modification of a poly (bromo ethylacrylate-co-poly (ethylene glycol) acrylate) (p (BEA-co-PEGA)) precursor polymer produced using reversible addition fragmentation chain transfer (RAFT) polymerisation. The cationic polymers were evaluated for their ability to complex nucleic acids, their in vitro cytotoxicity and their GFP pDNA transfection efficiency. The results show RAFT copolymerisation of BEA and PEGA is a simple route to polyphosphoniums showing reduced cytotoxicities and higher transfection efficiencies than their polyammonium alternatives.

Abstract Image

RAFT支链聚(丙烯酸乙酯三甲基鏻-共-PEGA):用于核酸络合的阳离子聚铵的替代品
阳离子和高度支化的聚(丙烯酸乙酯三甲基鏻-聚(乙二醇)丙烯酸酯)(p(TMPEA-co-PEGA))及其铵当量,由使用可逆加成-断裂链转移(RAFT)聚合制备的聚(溴乙基丙烯酸酯-共-聚(乙二醇)丙烯酸酯)(p(BEA-co-PEGA))前体聚合物的聚合后改性合成。评价了阳离子聚合物复合核酸的能力、体外细胞毒性和GFP-pDNA转染效率。结果表明,BEA和PEGA的RAFT共聚是制备聚膦的一种简单途径,与它们的聚铵替代物相比,显示出降低的细胞毒性和更高的转染效率。
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