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基于聚(L-组氨酸)和 d-α-生育酚琥珀酸酯的多功能聚合物纳米粒子的合理设计用于逆转肿瘤多药耐药性。

Rational Design of Multifunctional Polymeric Nanoparticles Based on Poly(l-histidine) and d-α-Vitamin E Succinate for Reversing Tumor Multidrug Resistance.

机构信息

School of Pharmacy , Dalian Medical University , Dalian , 116044 , PR China.

Department of Pharmaceutics, School of Pharmacy , Shenyang Pharmaceutical University , Shenyang , 110016 , PR China.

出版信息

Biomacromolecules. 2018 Jul 9;19(7):2595-2609. doi: 10.1021/acs.biomac.8b00213. Epub 2018 Apr 11.

Abstract

A multifunctional nanoparticulate system composed of methoxy poly(ethylene glycol)-poly(l-histidine)-d-α-vitamin E succinate (MPEG-PLH-VES) copolymers for encapsulation of doxorubicin (DOX) was elaborated with the aim of circumventing the multidrug resistance (MDR) in breast cancer treatment. The MPEG-PLH-VES nanoparticles (NPs) were subsequently functionalized with biotin motif for targeted drug delivery. The MPEG-PLH-VES copolymer exerts no obvious effect on the P-gp expression level of MCF-7/ADR but exhibited a significant influence on the loss of mitochondrial membrane potential, the reduction of intracellular ATP level, and the inhibition of P-gp ATPase activity of MCF-7/ADR cells. The constructed MPEG-PLH-VES NPs exhibited an acidic pH-induced increase on particle size in aqueous solution. The DOX-encapsulated MPEG-PLH-VES/biotin-PEG-VES (MPEG-PLH-VES/B) NPs were characterized to possess high drug encapsulation efficiency of approximate 90%, an average particle size of approximately 130 nm, and a pH-responsive drug release profile in acidic milieu. Confocal laser scanning microscopy (CLSM) investigations revealed that the DOX-loaded NPs resulted in an effective delivery of DOX into MCF-/ADR cells and a notable carrier-facilitated escape from endolysosomal entrapment. Pertaining to the in vitro cytotoxicity evaluation, the DOX-loaded MPEG-PLH-VES/B NPs resulted in more pronounced cytotoxicity to MCF-/ADR cells compared with DOX-loaded MPEG-PLH-VES NPs and free DOX solution. In vivo imaging study in MCF-7/ADR tumor-engrafted mice exhibited that the MPEG-PLH-VES/B NPs accumulated at the tumor site more effectively than MPEG-PLH-VES NPs due to the biotin-mediated active targeting effect. In accordance with the in vitro results, DOX-loaded MPEG-PLH-VES/B NPs showed the strongest inhibitory effect against the MCF-7/ADR xenografted tumors with negligible systemic toxicity, as evidenced by the histological analysis and change of body weight. The multifunctional MPEG-PLH-VES/B nanoparticulate system has been demonstrated to provide a promising strategy for efficient delivery of DOX into MCF-7/ADR cancerous cells and reversing MDR.

摘要

一种由甲氧基聚乙二醇-聚(组氨酸)-d-α-生育酚琥珀酸酯(MPEG-PLH-VES)共聚物组成的多功能纳米颗粒系统,旨在克服乳腺癌治疗中的多药耐药(MDR)。随后,MPEG-PLH-VES 纳米颗粒(NPs)被生物素基序功能化,用于靶向药物递送。MPEG-PLH-VES 共聚物对 MCF-7/ADR 的 P-糖蛋白表达水平没有明显影响,但对线粒体膜电位丧失、细胞内 ATP 水平降低和 P-糖蛋白 ATP 酶活性抑制有显著影响 MCF-7/ADR 细胞。构建的 MPEG-PLH-VES NPs 在水溶液中表现出酸性 pH 诱导的粒径增加。包载 DOX 的 MPEG-PLH-VES/生物素-PEG-VES(MPEG-PLH-VES/B)NPs 具有高的药物包封效率(约 90%)、平均粒径(约 130nm)和在酸性环境中的 pH 响应性药物释放特性。共聚焦激光扫描显微镜(CLSM)研究表明,载药纳米颗粒可有效将 DOX 递送至 MCF-/ADR 细胞,并显著促进载体逃避内溶酶体捕获。关于体外细胞毒性评价,与载 DOX 的 MPEG-PLH-VES NPs 和游离 DOX 溶液相比,载 DOX 的 MPEG-PLH-VES/B NPs 对 MCF-/ADR 细胞表现出更显著的细胞毒性。在 MCF-7/ADR 肿瘤移植小鼠的体内成像研究中,由于生物素介导的主动靶向作用,MPEG-PLH-VES/B NPs 比 MPEG-PLH-VES NPs 更有效地在肿瘤部位积累。与体外结果一致,载 DOX 的 MPEG-PLH-VES/B NPs 对 MCF-7/ADR 异种移植肿瘤表现出最强的抑制作用,同时具有可忽略的全身毒性,这一点可从组织学分析和体重变化中得到证明。多功能 MPEG-PLH-VES/B 纳米颗粒系统已被证明为有效递送至 MCF-7/ADR 癌细胞和逆转 MDR 的 DOX 提供了一种有前景的策略。

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