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Effect of PEGylation on assembly morphology and cellular uptake of poly ethyleneimine-cholesterol conjugates for delivery of sorafenib tosylate in hepatocellular carcinoma

机译:聚乙二醇化对肝癌中用于运送甲苯磺酸索拉非尼的聚乙烯亚胺-胆固醇共轭物的组装形态和细胞摄取的影响

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摘要

>Introduction: Sorafenib (SFB) is an FDA-approved chemotherapeutic agent with a high partition coefficient (log P = 4.34) for monotherapy of hepatocellular carcinoma (HCC). The oral bioavailability is low and variable, so it was aimed to study the application of the polymeric nanoassembly of cholesterol conjugates of branched polyethyleneimine (PEI) for micellar solubilization of SFB and to investigate the impact of the polymer PEGylation on the physicochemical and cellular characteristics of the lipopolymeric dispersions. >Methods: Successful synthesis of cholesterol-PEI lipopolymers, either native or PEGylated, was confirmed by FTIR, 1H-NMR, pyrene assay methods. The nanoassemblies were also characterized in terms of morphology, particle size distribution and zeta-potential by TEM and dynamic light scattering (DLS). The SFB loading was optimized using general factorial design. Finally, the effect of particle characteristics on cellular uptake and specific cytotoxicity was investigated by flow cytometry and MTT assay in HepG2 cells. >Results: Transmission electron microscopy (TEM) showed that PEGylation of the lipopolymers reduces the size and changes the morphology of the nanoassembly from rod-like to spherical shape. However, PEGylation of the lipopolymer increased critical micelle concentration (CMC) and reduced the drug loading. Moreover, the particle shape changes from large rods to small spheres promoted the cellular uptake and SFB-related cytotoxicity. >Conclusion: The combinatory effects of enhanced cellular uptake and reduced general cytotoxicity can present PEGylated PEI-cholesterol conjugates as a potential carrier for delivery of poorly soluble chemotherapeutic agents such as SFB in HCC that certainly requires further investigations in vitro and in vivo.
机译:>简介:索拉非尼(SFB)是FDA批准的化疗药物,具有高分配系数(log P = 4.34),可用于肝细胞癌(HCC)的单药治疗。口服生物利用度低且易变,因此旨在研究支链聚乙烯亚胺(PEI)胆固醇共轭物的聚合物纳米组装体对SFB的胶束增溶的应用,并研究聚合物PEG化对SFB的理化和细胞特性的影响脂聚合物分散体。 >方法:通过FTIR, 1 H-NMR,pyr测定方法证实了天然或聚乙二醇化的PEI脂聚合物的成功合成。纳米组件还通过TEM和动态光散射(DLS)在形态,粒径分布和Zeta电位方面进行了表征。使用通用因子设计优化了SFB负载。最后,通过流式细胞仪和MTT测定HepG2细胞,研究了颗粒特征对细胞摄取和特异性细胞毒性的影响。 >结果:透射电子显微镜(TEM)显示,脂聚合物的聚乙二醇化可减小尺寸并将纳米组件的形态从棒状变为球形。然而,脂聚合物的PEG化增加了临界胶束浓度(CMC)并降低了药物载量。此外,颗粒形状从大棒状变为小球状,促进了细胞摄取和SFB相关的细胞毒性。 >结论:增强细胞摄取和降低一般细胞毒性的联合作用可能表明,聚乙二醇化的PEI-胆固醇共轭物是潜在的载体,可用于在肝癌中递送难溶性化学治疗剂(如SFB),这肯定需要进一步的体外研究和体内。

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