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Preparation and Characterization of Electrostatically Crosslinked Polymer–Liposomes in Anticancer Therapy

机译:静电交联聚合物脂质体的制备及表征

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摘要

pH-sensitive polymer–liposomes can rapidly release their payloads. However, it is difficult to simultaneously achieve stability and pH-responsiveness in the polymer–liposomes. In this study, stable and pH-sensitive crosslinked polymer–liposomes were fabricated through electrostatic interactions. The pH-sensitive copolymer methoxy poly(ethylene glycol)-block-poly(methacrylic acid)-cholesterol (mPEG-b-P(MAAc)-chol) and crosslinking reagent poly(ethylene glycol) with end-capped with lysine (PEG-Lys2) were synthesized and characterized. At physiological conditions, the pH-sensitive copolymers were anionic and interacted electrostatically with the cationic crosslinker PEG-Lys2, forming the electrostatically-crosslinked polymer–liposomes and stabilizing the liposomal structure. At pH 5.0, the carboxylic groups in mPEG-b-P(MAAc)-chol were neutralized, and the liposomal structure was destroyed. The particle size of the crosslinked polymer–liposomes was approximately 140 nm and the polymer–liposomes were loaded with the anticancer drug doxorubicin. At pH 7.4, the crosslinked polymer–liposomes exhibited good stability with steady particle size and low drug leakage, even in the presence of fetal bovine serum. At pH 5.0, the architecture of the crosslinked polymer–liposomes was damaged following rapid drug release, as observed by using transmission electron microscopy and their apparent size variation. The crosslinked polymer–liposomes were pH-sensitive within the endosome and in the human breast cancer cells MDA-MB-231, as determined by using confocal laser scanning microscopy. The intracellular drug release profiles indicated cytotoxicity in cancer cells. These results indicated that the highly-stable and pH-sensitive electrostatically-crosslinked polymer–liposomes offered a potent drug-delivery system for use in anticancer therapies.
机译:pH敏感的聚合物脂质体可以快速释放其有效载荷。但是,很难同时实现聚合物脂质体的稳定性和pH响应性。在这项研究中,通过静电相互作用制备了稳定且对pH敏感的交联聚合物脂质体。对pH敏感的共聚物,甲氧基聚(乙二醇)-嵌段-聚(甲基丙烯酸)-胆固醇(mPEG-bP(MAAc)-胆固醇)和交联剂聚(乙二醇),端基为赖氨酸(PEG-Lys2)合成并表征。在生理条件下,pH敏感的共聚物为阴离子型,并与阳离子交联剂PEG-Lys2发生静电相互作用,形成静电交联的聚合物脂质体并稳定脂质体的结构。在pH 5.0下,mPEG-b-P(MAAc)-chol中的羧基被中和,脂质体结构被破坏。交联的聚合物脂质体的粒径约为140 nm,并且聚合物脂质体中装有抗癌药阿霉素。在pH 7.4时,即使存在胎牛血清,交联的聚合物脂质体仍具有良好的稳定性,稳定的粒径和低的药物泄漏性。在pH 5.0时,如通过透射电子显微镜及其明显的尺寸变化所观察到的那样,药物快速释放后,交联的聚合物-脂质体的结构被破坏。交联的聚合物脂质体在内体和人乳腺癌细胞MDA-MB-231中对pH敏感,这是通过使用共聚焦激光扫描显微镜确定的。细胞内药物释放曲线表明癌细胞具有细胞毒性。这些结果表明,高度稳定且对pH敏感的静电交联聚合物脂质体为抗癌治疗提供了有效的药物递送系统。

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