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首页> 外文期刊>Biomacromolecules >Poly[(5-methyl-5-allyloxycarbonyl-trimethylene carbonate)-co-(5,5-dimethyl-trimethylene carbonate)] with Grafted Polyethylenimine as Biodegradable Polycations for Efficient Gene Delivery
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Poly[(5-methyl-5-allyloxycarbonyl-trimethylene carbonate)-co-(5,5-dimethyl-trimethylene carbonate)] with Grafted Polyethylenimine as Biodegradable Polycations for Efficient Gene Delivery

机译:聚[(5-甲基-5-烯丙氧基羰基-三亚甲基碳酸酯)-共-(5,5-二甲基-三亚甲基碳酸酯)]与接枝的聚乙烯亚胺作为可生物降解的聚阳离子,用于高效基因传递

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摘要

In this paper, biodegradable polycations based on polycarbonates with grafted polyethylenimine (PE1) were synthesized as a nonviral vector for gene delivery. Immobilized porcine pancreas lipase (IPPL) was employed to perform the copolymerization of 5-methyl-5-allyloxy carbonyl-trimethylenecarbonate (MAC) with 5,5-dimethyl-trimethylene carbonate (DTC). The DTC molar percent X was equal to 6.7, 12.5, and 45.4, respectively. The resulting copolymers with different compositions (P(MAC-co-DTCx) underwent additional allyl epoxidation and thereby grafted by low molecular weight PEI1800. The MWs of P(MAC-co-DTCx)-g-PEI, measured by GPC-MALLS, were 21980.0, 179100, and 51700 g/mol with polydispersities of 1.5, 1.4, and 1.2, respectively. Physicochemical properties of these vectors were characterized and the DNA loading was evaluated. P(MAC-co-DTCx)-g-PEI could form nanosized particles (less than 100 nm) with pDNA. The three P(MAC-co-DTCx)-g-PEI/DNA polyplexes had similar buffer capabilities that were better than that of PEI25K and PMAC-g-PEI. Despite a slightly lower DNA binding ability, the PEI-grafted polycarbonates, especially P(MAC-co-DTC45.4)-g-PEI, presented apparently low cytotoxicity and much higher gene transfection efficiency in comparison with PEI25K in 293T cells. Moreover, preincubation of P(MAC-co-DTC6.7)-g-PEI showed a quickly weakening DNA binding capacity, while a suitable degradation rate of vectors would facilitate the efficient release of pDNA from polyplexes after cellular uptake and also reduce cell cytotoxicity. The results of this study demonstrated the promise of P(MAC-co-DTGx)-g-PEI copolymers for efficient gene delivery.
机译:在本文中,基于聚碳酸酯与接枝聚乙烯亚胺(PE1)的可生物降解的聚阳离子被合成为用于基因传递的非病毒载体。使用固定的猪胰腺脂肪酶(IPPL)进行5-甲基-5-烯丙氧基羰基-三亚甲基碳酸酯(MAC)与5,5-二甲基-三亚甲基碳酸酯(DTC)的共聚。 DTC的摩尔百分比X分别等于6.7、12.5和45.4。所得的具有不同组成的共聚物(P(MAC-co-DTCx)进行额外的烯丙基环氧化,从而通过低分子量PEI1800接枝。通过GPC-MALLS测定的P(MAC-co-DTCx)-g-PEI的分子量,分别为21980.0、179100和51700 g / mol,多分散度分别为1.5、1.4和1.2,对这些载体的理化性质进行了表征,并评估了DNA的负载量,可以形成P(MAC-co-DTCx)-g-PEI具有pDNA的纳米级颗粒(小于100 nm)三个P(MAC-co-DTCx)-g-PEI / DNA复合物具有相似的缓冲能力,优于PEI25K和PMAC-g-PEI。 DNA结合能力,PEI接枝的聚碳酸酯,尤其是P(MAC-co-DTC45.4)-g-PEI,与PEI25K在293T细胞中相比,表现出低的细胞毒性和更高的基因转染效率。 MAC-co-DTC6.7)-g-PEI显示出快速减弱的DNA结合能力,而适当的ve降解率细胞吸收后将促进多聚体中pDNA的有效释放,并降低细胞的细胞毒性。这项研究的结果证明了P(MAC-co-DTGx)-g-PEI共聚物有望有效地传递基因。

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