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甲氧基聚乙二醇-聚乳酸-羟基乙酸共聚物-聚乙二醇-甲氧基共聚物作为药物载体的合成、表征及其体外降解行为

Synthesis and characterization of MeO-PEG-PLGA-PEG-OMe copolymers as drug carriers and their degradation behavior in vitro.

作者信息

Duan Yourong, Zhang Yan, Gong Tao, Zhang Zhirong

机构信息

Shanghai Cancer Institute, Shanghai JiaoTong University, Shanghai 200032, China.

出版信息

J Mater Sci Mater Med. 2007 Oct;18(10):2067-73. doi: 10.1007/s10856-007-3090-x. Epub 2007 Jun 9.

Abstract

The objective of this study was to characterize the methylpoly (ethylene glycol)-poly (lacticacid-co-glycolicacid)-poly (ethylene-glycol) (MeO-PEG-PLGA-PEG-OMe, abbreviation as PELGE) copolymers as intravenous injection drug delivery carriers and their degradation behavior in vitro. A series of MeO-PEG-PLGA-PEG-OMe copolymers with various molar ratios of lactic to glycolic acid and various molecular weights and different MeO-PEG contents were synthesized by ring-opening polymerization in the presence of MeO-PEG with molar masses of 2000 and 5000, using stannous octoate as the catalyst. The hydrophilicity of PELGE copolymers, evaluated by contact angle measurements, was found to increase with an increase in their MeO-PEG contents. Methylpoly (ethylene glycol)-poly (lacticacid-co-glycolicacid) (MeO-PEG-PLGA, abbreviation as PELGA) nanoparticles and PELGE nanoparticles were prepared using the emulsion-solvent evaporation technique (o/w) with Pluronic F68 (Poloxamer 188 NF) as emulsifier in the external aqueous phase. The degradation behavior of the nanoparticles was evaluated by the lactate generation with time upon their in vitro incubation in PBS (pH 7.4). The rate of in vitro degradation of the PELGE or PELGA nanoparticles depended on their composition, increasing with an increase in the proportion of MeO-PEG or LA in the copolymer chains. The degradation rate was slower at higher lactide: glycolide ratio. The lower the molecular weight of PELGE; the higher the degradation rate of the nanoparticles.

摘要

本研究的目的是将甲氧基聚(乙二醇)-聚(乳酸-共-乙醇酸)-聚(乙二醇)(MeO-PEG-PLGA-PEG-OMe,简称为PELGE)共聚物表征为静脉注射药物递送载体及其体外降解行为。以辛酸亚锡为催化剂,在摩尔质量为2000和5000的MeO-PEG存在下,通过开环聚合反应合成了一系列具有不同乳酸与乙醇酸摩尔比、不同分子量和不同MeO-PEG含量的MeO-PEG-PLGA-PEG-OMe共聚物。通过接触角测量评估发现,PELGE共聚物的亲水性随其MeO-PEG含量的增加而增加。以普朗尼克F68(泊洛沙姆188 NF)为外水相乳化剂,采用乳液-溶剂蒸发技术(水包油)制备了甲氧基聚(乙二醇)-聚(乳酸-共-乙醇酸)(MeO-PEG-PLGA,简称为PELGA)纳米颗粒和PELGE纳米颗粒。通过在PBS(pH 7.4)中体外孵育时随时间产生乳酸来评估纳米颗粒的降解行为。PELGE或PELGA纳米颗粒的体外降解速率取决于其组成,随共聚物链中MeO-PEG或LA比例的增加而增加。在丙交酯:乙交酯比例较高时,降解速率较慢。PELGE的分子量越低,纳米颗粒的降解速率越高。

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