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Paclitaxel-conjugated PEG and arginine-grafted bioreducible poly (disulfide amine) micelles for co-delivery of drug and gene

机译:紫杉醇 - 缀合的PEG和精氨酸接枝的生物环境聚(二硫化物胺)胶束用于共同递送药物和基因

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摘要

We developed a paclitaxel-conjugated polymeric micelle, ABP-PEG3.5k-Paclitaxel (APP) consisting of poly (ethylene glycol) (PEG) and arginine-grafted poly(cystaminebisacrylamide-diaminohexane) (ABP) for the co-delivery of gene and drug. The APP polymer self-assembled into cationic polymeric micelles with a critical micelle concentration (CMC) value of approximately 0.062 mg/mL, which was determined from measurements of the UV absorption of pyrene. The micelles have an average size of about 3 nm and a zeta potential of about +14 mV. Due to the positive surface charge, APP micelles formed polyplexes with plasmid DNA approximately 200 nm in diameter. The luciferase gene and mouse interleukin-12 (IL-12) gene was used to monitor gene delivery potency. APP polyplexes showed increased gene delivery efficiency and cellular uptake with higher anticancer potency than paclitaxel alone. These results demonstrate that an APP micelle-based delivery system is well suitable for the co-delivery of gene and drug.
机译:我们开发了一种紫杉醇共轭聚合物胶束ABP-PEG3.5k-紫杉醇(APP),由聚(乙二醇)(PEG)和精氨酸接枝的聚(胱胺双丙烯酰胺-二氨基己烷)(ABP)组成,用于共同传递基因和药品。 APP聚合物自组装成阳离子聚合物胶束,其临界胶束浓度(CMC)值约为0.062 mg / mL,这是通过测量of的UV吸收来确定的。胶束的平均大小约为3 nm,ζ电位约为+14 mV。由于表面带正电荷,APP胶束与质粒DNA直径约200 nm形成了多链体。荧光素酶基因和小鼠白介素12(IL-12)基因用于监测基因的传递效力。 APP多聚体显示出比单独的紫杉醇更高的基因递送效率和细胞摄取以及更高的抗癌效力。这些结果表明,基于APP胶束的递送系统非常适合基因和药物的共同递送。

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