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首页> 外文期刊>Journal of biomaterials science >Chitosan derivatives for gene transfer: effect of phosphorylcholine and diethylaminoethyl grafts on the in vitro transfection efficiency
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Chitosan derivatives for gene transfer: effect of phosphorylcholine and diethylaminoethyl grafts on the in vitro transfection efficiency

机译:用于基因转移的壳聚糖衍生物:磷酸胆碱和二乙氨基乙基接枝物对体外转染效率的影响

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The purpose of this work was to improve the functional properties of chitosan for gene transfer by inserting phosphorylcholine (PC) and diethylaminoethyl (DEAE) groups into the main chain. A series of derivatives containing increasing contents of DEAE and a fixed content of PC groups were synthesized and characterized, aiming to evaluate the effect of these groups on the nanoparticles' properties and the in vitro transfection efficiency. The derivatives were soluble at physiological pH levels and all derivatives were less cytotoxic than the control, the lipid lipofectamine. The obtained derivatives complexed pDNA into nanoparticles with smaller sizes and higher zeta potentials than plain chitosan. The in vitro transfection was performed with nanoparticles prepared at pH 6.3 and 7.4 and the results showed that nanoparticles prepared with derivatives containing 20% of PC groups (PC18-CH) and high degrees of substitution by DEAE (PC20-CH-DEAE(100), CH-DEAE(80,) CH-DEAE(100)) displayed the better transfection efficiencies in HeLa cells, reaching relative values comparable to lipofectamine. The most effective derivative, PC18CH, was selected for complexation with siRNA and its complexes demonstrated an in vitro knockdown efficiency highly dependent on the N/P ratio. Our combined results indicated that, by means of controlled modifications, the limitations of chitosan can be overcome to obtain more effective carriers based on chitosan, and the derivatives here studied hold potential for in vivo studies.
机译:这项工作的目的是通过将磷酸胆碱(PC)和二乙氨基乙基(DEAE)基团插入主链来改善壳聚糖基因转移的功能特性。合成和表征了一系列包含增加的DEAE含量和固定的PC基团含量的衍生物,目的是评估这些基团对纳米颗粒性质和体外转染效率的影响。衍生物在生理pH水平下可溶,所有衍生物的细胞毒性均低于对照脂质脂质转染胺。所获得的衍生物将pDNA复合为比普通壳聚糖更小的尺寸和更高的ζ电位的纳米颗粒。用在pH 6.3和7.4下制备的纳米颗粒进行了体外转染,结果表明,用含有20%PC基团(PC18-CH)和被DEAE高度取代的衍生物(PC20-CH-DEAE(100))制备的纳米颗粒,CH-DEAE(80,)CH-DEAE(100))在HeLa细胞中显示出更好的转染效率,达到了与lipofectamine相当的相对值。选择最有效的衍生物PC18CH与siRNA进行络合,其络合物表现出高度依赖N / P比的体外敲除效率。我们的综合结果表明,通过受控修饰,可以克服壳聚糖的局限性,从而获得基于壳聚糖的更有效的载体,此处研究的衍生物具有体内研究的潜力。

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