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mPEG-PLGA-mPEG纳米粒的体外降解规律的研究 被引量:11

Preparation and Degradation Behavior of PELGE Nanoparticles
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摘要 通过开环共聚方法合成了具有不同组份的丙交酯 /乙交酯 /聚乙二醇 (LA/GA/PEG)共聚物 (PLGA PEG ,PELGA) ,并进一步偶联制得三嵌段共聚物 (mPEG PLGA mPEG ,简称PELGE)。采用超声乳化—溶剂蒸发法 (O/W )制备PELGE纳米粒 ,用紫外分光光度法测定乳酸含量的方法研究了PELGA、PELGE纳米粒体外降解规律 ,体外降解实验表明 :共聚物分子量增加 ,降解减慢 ;共聚物中GA含量增加 ,即LA/GA比例减小 ,降解加快 ;PEG含量增加 ,降解加快 ;LA/GA和PEG含量相同的PELGE比PELGA的降解速度快。证明了可通过改变LA/GA的比例或PEG的含量来调节聚合物的降解速率。 A series of poly(lacticacid-co-glycolicacid)-poly(eth yl ene glycol)(PLGA-PEG, PELGA)block copolymers and poly(ethylene glycol)-poly(la cticacid-co-glycolicacid)-poly(ethylene-glycol)(PELGE)was synthesized by rin g-opening polymerization.PELGA nanoparticles and PELGE nanoparticles were prepa red using the emulsion-solvent evaporation technique (O/W).To study the behavio r and mechanism of the degradation of PELGA-NP and PELGA-NP, we determined the lactic acids by UV spectrophotometry. The method confirmed that degradation was much faster for polymers with a decrease in the LA content of the polymers or a n increase in the PEG content of the polymers.
出处 《生物医学工程学杂志》 EI CAS CSCD 2004年第6期921-925,共5页 Journal of Biomedical Engineering
基金 国家"十五"重大科技专项"创新药物与中药现代化"第四批课题资助项目(2 0 0 4AA2 73 14 2 )
关键词 PLGA 体外降解 纳米粒 含量 PEG 超声乳化 改变 共聚物 组份 偶联 Nanoparticles mPEG-PLGA-mPEG Degradation
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参考文献8

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