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Development of switchable polymers to address the dilemma of stability and cargo release in polycationic nucleic acid carriers

机译:开发可转换聚合物以解决聚阳离子核酸载体中稳定性和货物释放的难题

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摘要

Cationic polymer gene delivery vehicles that effectively resist premature serum degradation often have difficulty releasing their nucleic acid cargoes. In this work, we report a pH-sensitive polymer (SP), poly(oligo(ethylene glycol) monomethyl ether methacrylate)-co-poly(2-(dimethylamino)ethyl methacrylate)-block- poly(propargyl methacrylate-graft-propyl-(4-methoxy-benzylidene)-amine) (p(PMA-PMBA)–b-(p(OEGMA-DMAEMA)), for successful in vitro and in vivo gene transfer. In the physiological condition, the hydrophobization of p(OEGMA-DMAEMA) polycations by p(PMA-PMBA) significantly enhanced the stability of its polyplexes counterpart. In endosomes, the polymer undergoes an acid-triggered hydrophilic transition through the cleavage of benzoic imines, thus allowing the vector to quickly release nucleic acid cargo due to the loss of hydrophobic functionalization. Compared to a pH-insensitive polymer (IP), SP exhibited more significant luciferase plasmid delivery efficiency with HeLa cells in vitro and with in vivo intraventricular brain injections. Therefore, the polymer designed here is a good solution to address the dilemma of stability and cargo release in gene delivery, and may have broad potential applications in therapeutic agent delivery.
机译:有效抵抗血清过早降解的阳离子聚合物基因递送载体通常难以释放其核酸物质。在这项工作中,我们报告了一种对pH敏感的聚合物(SP),聚(低聚(乙二醇)一甲基醚甲基丙烯酸酯)-共聚(2-(二甲基氨基)甲基丙烯酸乙酯)-嵌段-聚(甲基丙烯酸炔丙酯-接枝-丙基) -(4-甲氧基-亚苄基)-胺)(p(PMA-PMBA)–b-(p(OEGMA-DMAEMA)),可在体内外成功进行基因转移。在生理条件下,p( p(PMA-PMBA)的OEGMA-DMAEMA)聚阳离子显着增强了其复合物对应物的稳定性,在核糖体中,聚合物通过苯甲亚胺的裂解经历了酸触发的亲水转变,从而使载体能够快速释放核酸货物与pH不敏感的聚合物(IP)相比,SP对HeLa细胞的体外和体内脑室内注射均显示出更高的荧光素酶质粒递送效率,因此,此处设计的聚合物是一种很好的解决方案解决稳定的困境货物在基因传递中释放,在治疗剂传递中可能具有广泛的潜在应用。

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