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两亲性嵌段共聚物甲氧基聚乙二醇-聚四氢呋喃碳酸酯的简便制备及其自组装胶束作为药物载体。

Facile fabrication of diblock methoxy poly(ethylene glycol)-poly(tetramethylene carbonate) and its self-assembled micelles as drug carriers.

机构信息

Key Laboratory of Biomedical Polymers (The Ministry of Education), Department of Chemistry, Wuhan University, Wuhan 430072, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2009 Dec;1(12):2729-37. doi: 10.1021/am900452c.

Abstract

AB type diblock methoxy poly(ethylene glycol)-b-poly(tetramethylene carbonate) (mPEG-PTeMC) copolymers were designed for the first time and used as carriers for the sustained release of the hydrophobic drug ibuprofen. In this paper, we developed a facile ring-opening polymerization (ROP) method to prepare mPEG-PTeMC copolymers under the catalysis of Novozym-435 lipase. Attractively, the polymerization has been successfully performed at 30 degrees C, close to room temperature. The data show that the copolymer compositions agree well with the feed ratio of TeMC to mPEG, indicating the controllable feature of the polymerization. The copolymer structures were characterized by (1)H NMR, IR, SEC, and DSC measurements. mPEG-PTeMC exhibits no apparent in vitro cytotoxicity toward human embryonic kidney transformed 293T cells. Those amphiphilic copolymers can readily self-assemble into nanosized micelles (about 150 nm) in aqueous solution. Their critical micelle concentrations are in the range of (1.6-9.3) x 10(-7) mol/L, determined by fluorescence spectroscopy. The micelles present high stability in PBS solution, with no obvious change in micelle diameters over 5 days. Ibuprofen can be loaded effectively in mPEG-PTeMC micelles, and its sustained release behavior is observed. Transmission electron microscopy shows that the well-dispersed spherical micelles are around 25 nm in diameter, while the diameter is 30 nm after loading ibuprofen. The release rate increases when the chain length of the PTeMC block decreases. These properties show that the micelles self-assembled from mPEG-PTeMC copolymers would have great potential as carriers for the effective encapsulation as well as sustained release of hydrophobic drugs.

摘要

AB 型嵌段甲氧基聚乙二醇-b-聚(四亚甲基碳酸酯)(mPEG-PTeMC)共聚物首次被设计用于作为疏水性药物布洛芬的持续释放载体。在本文中,我们开发了一种简便的开环聚合(ROP)方法,在 Novozym-435 脂肪酶的催化下制备 mPEG-PTeMC 共聚物。引人注目的是,聚合反应在 30°C 下成功进行,接近室温。数据表明,共聚物的组成与 TeMC 与 mPEG 的进料比吻合良好,表明聚合反应具有可控性。共聚物结构通过(1)H NMR、IR、SEC 和 DSC 测量进行了表征。mPEG-PTeMC 对人胚肾转化 293T 细胞无明显体外细胞毒性。这些两亲共聚物在水溶液中容易自组装成纳米级胶束(约 150nm)。其临界胶束浓度(CMC)范围为(1.6-9.3)x10(-7)mol/L,通过荧光光谱法测定。胶束在 PBS 溶液中具有高稳定性,在 5 天内胶束直径没有明显变化。布洛芬可以有效地装载到 mPEG-PTeMC 胶束中,并观察到其持续释放行为。透射电子显微镜显示,分散良好的球形胶束的直径约为 25nm,而装载布洛芬后直径为 30nm。当 PTeMC 嵌段的链长减小时,释放速率增加。这些性质表明,自组装的 mPEG-PTeMC 共聚物胶束具有作为有效封装和疏水性药物持续释放载体的巨大潜力。

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