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氢键增强的胶束组装用于药物递送。

Hydrogen bonding-enhanced micelle assemblies for drug delivery.

机构信息

IBM Almaden Research Center, 650 Harry Road, San Jose, CA 95120, USA.

出版信息

Biomaterials. 2010 Nov;31(31):8063-71. doi: 10.1016/j.biomaterials.2010.07.018. Epub 2010 Aug 11.

Abstract

Ring-opening polymerization (ROP) of functionalized cyclic carbonates derived from 2,2-bis(methylol)propionic acid (bis-MPA) allows for incorporation of H-bonding urea-functional groups into block copolymers with a potential application of supramolecular drug-delivery systems. The strong H-bonding functionalities of poly(ethylene glycol)-block-poly(ethyl-random-urea carbonate) (PEG-P(E(1-x)-U(x))C) block copolymers not only lowered critical micelles concentration (cmc) of the block copolymer (to 1/4x) in aqueous environment compared to conventional PEG-poly(trimethylene carbonate) (PEG-PTMC) block copolymer without the non-covalent stabilization, but also improved kinetic stability of micelles and Dox-loaded micelles in the presence of a destabilizing agent. It was observed that the incorporation of anticancer drug doxorubicin affected the micellization process of block copolymers in water and caused a sudden increase in sizes of drug-loaded micelles above 200 nm. This phenomenon that can be a significant drawback in drug delivery applications was considerably mitigated in urea-bearing block copolymer/Dox micelles with simultaneously accompanying a significant improvement in drug loading. In vitro drug release profile showed that the increase in urea content led to a slight decrease in Dox release rate. Block copolymer did not have any significant cytotoxicity against HEK293 and HepG2 cells up to 400 mg/L. Importantly, Dox-loaded micelles exerted cytotoxic effect against HepG2 cells.

摘要

开环聚合(ROP)功能化的环状碳酸酯来源于 2,2-双(羟甲基)丙酸(双-MPA)允许氢键脲基官能团整合到嵌段共聚物中具有超分子药物输送系统的潜在应用。聚(乙二醇)嵌段聚(乙基-随机-脲基碳酸酯)(PEG-P(E(1-x)-U(x))C)嵌段共聚物的强氢键官能团不仅降低了临界胶束浓度(cmc)嵌段共聚物(至 1/4x)在水相环境中与没有非共价稳定化的常规聚乙二醇-聚(三亚甲基碳酸酯)(PEG-PTMC)嵌段共聚物相比,而且提高了胶束和载药胶束在存在失稳剂时的动力学稳定性。观察到抗癌药物阿霉素的掺入影响了水相中的嵌段共聚物的胶束化过程,并导致载药胶束的尺寸突然增加到 200nm 以上。这种现象在药物输送应用中可能是一个显著的缺点,在含脲嵌段共聚物/阿霉素胶束中得到了相当大的缓解,同时伴随药物载量的显著提高。体外药物释放曲线表明,脲含量的增加导致阿霉素释放率略有降低。嵌段共聚物对 HEK293 和 HepG2 细胞的细胞毒性高达 400mg/L 时没有任何显著影响。重要的是,载药胶束对 HepG2 细胞表现出细胞毒性作用。

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