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可生物降解杂化聚合物胶束用于卵巢癌联合药物治疗。

Biodegradable hybrid polymer micelles for combination drug therapy in ovarian cancer.

机构信息

Department of Pharmaceutical Sciences and Center for Drug Delivery and Nanomedicine, College of Pharmacy, University of Nebraska Medical Center, 985830 Nebraska Medical Center, Omaha 68198-5830, USA.

出版信息

J Control Release. 2013 Nov 10;171(3):339-48. doi: 10.1016/j.jconrel.2013.04.026. Epub 2013 May 9.

Abstract

The co-delivery of drug combination at a controlled ratio via the same vehicle to the cancer cells is offering the advantages such as spatial-temporal synchronization of drug exposure, synergistic therapeutic effects and increased therapeutic potency. In an attempt to develop such multidrug vehicle this work focuses on functional biodegradable and biocompatible polypeptide-based polymeric micelles. Triblock copolymers containing the blocks of ethylene glycol, glutamic acid and phenylalanine (PEG-PGlu-PPhe) were successfully synthesized via NCA-based ring-opening copolymerization and their composition was confirmed by (1)H NMR. Self-assembly behavior of PEG-PGlu90-PPhe25 was utilized for the synthesis of hybrid micelles with PPhe hydrophobic core, cross-linked ionic PGlu intermediate shell layer, and PEG corona. Cross-linked (cl) micelles were about 90nm in diameter (ξ-potential=-20mV), uniform (narrow size distribution), and exhibited nanogels-like behavior. Degradation of cl-micelles was observed in the presence of proteolytic enzymes (cathepsin B). The resulting cl-micelles can incorporate the combination of drugs with very different physical properties such as cisplatin (15 w/w% loading) and paclitaxel (9 w/w% loading). Binary drug combination in cl-micelles exhibited synergistic cytotoxicity against human ovarian A2780 cancer cells and exerted a superior antitumor activity by comparison to individual drug-loaded micelles or free cisplatin in cancer xenograft model in vivo. Tunable composition and stability of these hybrid biodegradable micelles provide platform for drug combination delivery in a broad range of cancers.

摘要

通过相同的载体将药物组合以受控比例共递送到癌细胞中,提供了药物暴露的时空同步、协同治疗效果和增加治疗效力等优势。为了开发这种多药物载体,本工作集中于功能性可生物降解和生物相容的基于多肽的聚合物胶束。通过基于 NCA 的开环共聚成功合成了含有乙二醇、谷氨酸和苯丙氨酸嵌段的嵌段共聚物(PEG-PGlu-PPhe),并通过(1)H NMR 对其组成进行了确认。PEG-PGlu90-PPhe25 的自组装行为被用于合成具有疏水性 PPhe 核、交联离子 PGlu 中间壳层和 PEG 冠的杂化胶束。交联(cl)胶束的直径约为 90nm(ξ-电位=-20mV),均匀(窄粒径分布),并表现出纳米凝胶样行为。在存在蛋白水解酶(组织蛋白酶 B)的情况下观察到 cl 胶束的降解。所得的 cl 胶束可以掺入物理性质非常不同的药物组合,如顺铂(15w/w%载药量)和紫杉醇(9w/w%载药量)。cl 胶束中的二元药物组合对人卵巢 A2780 癌细胞表现出协同细胞毒性,并在体内癌症异种移植模型中与单独载药胶束或游离顺铂相比表现出优异的抗肿瘤活性。这些可生物降解杂化胶束的可调组成和稳定性为广泛的癌症提供了药物组合递药的平台。

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