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首页> 外文期刊>International Journal of Pharmaceutics >Coordinated pH/redox dual-sensitive and hepatoma-targeted multifunctional polymeric micelle system for stimuli-triggered doxorubicin release: Synthesis, characterization and in vitro evaluation
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Coordinated pH/redox dual-sensitive and hepatoma-targeted multifunctional polymeric micelle system for stimuli-triggered doxorubicin release: Synthesis, characterization and in vitro evaluation

机译:pH /氧化还原双敏感和靶向肝癌的多功能高分子胶束系统,用于刺激触发的阿霉素释放:合成,表征和体外评估

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Multifunctional polymeric micelles self-assembled from a DOX-conjugated methoxypolyethylene glycols-b-poly (6-O-methacryloyl-D-galactopyranose)-disulfide bond-DOX (mPEG-b-PMAGP-SS-DOX) copolymer were prepared as an antitumor carrier for doxorubicin delivery, of which the chemical modification with disulfide bonds and hydrazone bonds allowed micelles to release doxorubicin (DOX) selectively at acidic pH and high redox conditions. The resulting micelles exhibited coordinated pH/redox dual-sensitive and hepatoma-targeted multifunction with sustaining stability in aqueous media. The multifunctional micelles showed spherical shapes with a mean diameter of 93 +/- 2.08 nm, a low polydispersity index (PDI) of 0.21, a low CMC value of 0.095 mg/mL, a high drug grafting degree of 56.9% and a drug content of 39.0%. Remarkably, in vitro drug release studies clearly exhibited a pH and redox dual-sensitive drug release profile with significantly accelerated drug release treated with pH 5.0 and 10 mM GSH (88.4% in 72 h) without drug burst release. The tumor proliferation assays indicated that DOX-grafted micelles, along with low cytotoxicity and well biocompatibility to normal cells up to a concentration of 10 mu g/mL, inhibited the proliferation of HepG2 cells in a formulation-, time- and concentration-dependent manner in comparison with MCF-7 cells which was similar to free DOX. Anticancer activity releaved that the disulfide-modified micelles possessed much higher anti-hepatoma activity with a low IC50 value of 1.1 mu g/mL following a 72 h incubation. Furthermore, the intracellular uptake tested by CLSM and FCM demonstrated that multifunctional polymeric micelles could be more efficiently taken up by HepG2 cells compared with MCF-7 cells, agreed well with MTT assays, suggesting these well-defined micelles provide a potential drug delivery system for dual-responsive controlled drug release and enhanced anti-hepatoma therapy. (C) 2016 Elsevier B.V. All rights reserved.
机译:制备由DOX共轭的甲氧基聚乙二醇-b-聚(6-O-甲基丙烯酰基-D-吡喃半乳糖)-二硫键-DOX(mPEG-b-PMAGP-SS-DOX)共聚物自组装而成的多功能聚合物胶束作为抗肿瘤剂。阿霉素递质的载体,通过二硫键和键的化学修饰可以使胶束在酸性pH和高氧化还原条件下选择性释放阿霉素(DOX)。所得的胶束表现出协调的pH /氧化还原双重敏感性和针对肝癌的多功能,并在水性介质中具有稳定的稳定性。多功能胶束呈球形,平均直径为93 +/- 2.08 nm,低多分散指数(PDI)为0.21,低CMC值为0.095 mg / mL,高药物接枝度为56.9%,药物含量高占39.0%。值得注意的是,体外药物释放研究清楚地显示了pH和氧化还原双重敏感药物释放曲线,其中用pH 5.0和10 mM GSH(72 h中为88.4%)处理而没有药物爆发释放的情况下,药物释放明显加速。肿瘤增殖试验表明,DOX移植的胶束以及低至10μg / mL浓度的正常细胞的细胞毒性和良好的生物相容性,均以制剂,时间和浓度依赖性的方式抑制了HepG2细胞的增殖。与与自由DOX相似的MCF-7细胞相比。抗癌活性释放出二硫键修饰的胶束在孵育72小时后具有更高的抗肝癌细胞活性,且IC50值为1.1μg / mL。此外,CLSM和FCM测试的细胞内摄取表明,与MCF-7细胞相比,HepG2细胞可以更有效地吸收多功能聚合胶束,这与MTT分析法非常吻合,这表明这些定义明确的胶束提供了潜在的药物递送系统双重反应控制药物释放和增强的抗肝癌治疗。 (C)2016 Elsevier B.V.保留所有权利。

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