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Reduction-Degradable Polymeric Micelles Decorated with PArg for Improving Anticancer Drug Delivery Efficacy

机译:PArg修饰的可还原降解的聚合物胶束,用于提高抗癌药物的输送效率

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In this study, five kinds of reduction-degradable polyamide amine-g-polyethylene glycol/polyarginine (PAA-g-PEG/PArg) micelles with different proportions of hydrophilic and hydrophobic segments were synthesized as novel drug delivery vehicles. Polyarginine not only acted as a hydrophilic segment but also possessed a cell-penetrating function to carry out a rapid transduction into target cells. Polyamide arnine-gpolyethylene glycol (PAA-g-PEG) was prepared for comparison. The characterization and antitumor effect of the DOXincorporated PAA-g-PEG/PArg cationic polymeric micelles were investigated in vitro and in vivo. The cytotoxicity experiments demonstrated that the PAA-g-PEG/PArg micelles have good biocompatibility. Compared with DOX-incorporated P.AA-g-PEG micelles, the DOX-incorporated PAA-g-PEG/PArg micelles were more efficiently internalized into human hepatocellular carcinoma (HepG2) cells and more rapidly released DOX into the cytoplasm to inhibit cell proliferation. In the 4T1-bearing nude mouse tumor models, the DOX-incorporated PAA-gPEG/PArg micelles could efficiently accumulate in the tumor site and had a longer accumulation time and more significant aggregation concentration than those of PAA-g-PEG micelles. Meanwhile, it excellently inhibited the solid tumor growth and extended the survival period of the tumor-bearing Balb/c mice. These results could be attributed to their appropriate nanosize and the cell-penetrating peculiarity of polyarginine as a surface layer. The PAA-g-PEG/PArg polymeric micelles as a safe and high efficiency drug delivery system were expected to be a promising delivery carrier that targeted hydrophobic chemotherapy drugs to tumors and significantly enhanced antitumor effects.
机译:在这项研究中,合成了五种具有不同比例的亲水和疏水链段的可还原降解的聚酰胺胺-g-聚乙二醇/聚精氨酸(PAA-g-PEG / PArg)胶束,作为新型的药物传递载体。聚精氨酸不仅起亲水链段的作用,而且还具有穿透细胞的功能,可以快速转导进入靶细胞。制备聚酰胺精胺-g-聚乙二醇(PAA-g-PEG)用于比较。在体外和体内研究了掺有DOX的PAA-g-PEG / PArg阳离子聚合物胶束的表征和抗肿瘤作用。细胞毒性实验表明,PAA-g-PEG / PArg胶束具有良好的生物相容性。与掺有DOX的P.AA-g-PEG胶束相比,掺有DOX的PAA-g-PEG / PArg胶束更有效地内化到人肝癌细胞(HepG2)细胞中,并且DOX更快地释放到细胞质中以抑制细胞增殖。在带有4T1的裸鼠肿瘤模型中,掺有DOX的PAA-gPEG / PArg胶束可以有效地聚集在肿瘤部位,并且比PAA-g-PEG胶束具有更长的积累时间和更显着的聚集浓度。同时,它出色地抑制了实体瘤的生长并延长了荷瘤Balb / c小鼠的生存期。这些结果可以归因于它们的适当的纳米尺寸和作为表面层的聚精氨酸的细胞穿透特性。 PAA-g-PEG / PArg聚合物胶束作为一种安全,高效的药物递送系统,有望成为一种有前途的递送载体,它将疏水性化疗药物靶向肿瘤并显着增强了抗肿瘤作用。

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