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双亲水性超支化接枝共聚物的pH响应性药物释放
引用本文:孙晓毅,周永丰,颜德岳. 双亲水性超支化接枝共聚物的pH响应性药物释放[J]. 中国科学B辑, 2009, 39(10): 1237-1245
作者姓名:孙晓毅  周永丰  颜德岳
作者单位:上海交通大学化学化工学院 上海, 200240
基金项目:致谢 本工作得到国家自然科学基金(基金号:20774057,50633010)、国家重点基础研究发展计划(编号:2007CB808000)、上海市基础研究重大项目(批准号:07DJ14004)和上海市重点学科(批准号:B202)资助项目,特此一并致谢.
摘    要:首先利用阳离子开环聚合合成了超支化聚缩水甘油醚(HPG),然后通过酯化反应制备了低接枝率的大分子引发剂HPG-Br,并进一步引发甲基丙烯酸-2-(N,N-二甲氨基)乙酯(DMAEMA)单体的原子转移自由基聚合,合成了低接枝率的双亲水性超支化接枝共聚物HPG-g-PDMAEMA,用1HNMR和GPC对聚合物结构进行了表征.并采用芘荧光探针法,HNMR和DLS研究了HPG-g-PDMAEMA在不同pH水溶液中的组装行为.以1香豆素102为模型药物研究了HPG-g-PDMAEMA聚合物在不同pH条件下的药物释放行为,发现在pH连续振荡刺激下HPG-g-PDMAEMA聚合物胶束对药物分子能实现部分"可逆"的释放和再包载.

关 键 词:超支化聚合物  双亲水性聚合物  聚缩水甘油醚  原子转移自由基聚合  药物释放
收稿时间:2009-07-24
修稿时间:2009-08-06

Drug release property of a pH-responsive double-hydrophilic hyperbranched graft copolymer
SUN XiaoYi,ZHOU YongFeng,YAN DeYue. Drug release property of a pH-responsive double-hydrophilic hyperbranched graft copolymer[J]. Science in China(Series B), 2009, 39(10): 1237-1245
Authors:SUN XiaoYi  ZHOU YongFeng  YAN DeYue
Affiliation:( College of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China)
Abstract:The work reports the synthesis and self-assembly of double-hydrophilic hyperbranched graft copolymers of HPG-g-PDMAEMA, which consist of a hyperbranched polyglycerol (HPG) core and several grafted poly (2-(Dimethylamino)ethyl methacrylate) (PDMAEMA) arms. HPG was synthesized by cationic polymerization. Then HPG-Br macroinitiator was obtained by esterification of HPG with 2-bromoisobutyryl bromide, which was subsequently used in the preparation of HPG-g-PDMAEMA graft copolymer through atom transfer radical polymerization (ATRP) of DMAEMA monomers. The molecular structures were studied by ^1H NMR and GPC. The pyrene-based fluorescent probe method, ^1H NMR and DLS were used to study the self-assembly behavior of HPG-g-PDMAEMA. The drug loading and pH-responsive release properties of HPG-g-PDMAEMA were also investigated by using coumarin 102 as a model drug. The results show that the HPG-g-PDMAEMA micelles can continuously release and re-ncapsulate coumarin 102 as the pH continuously changes from 11.5 to 2.5; however, this process is not totally reversible.
Keywords:hyperbranched polymers   double-hydrophilic copolymer   polyglycerol   ATRR drug delivery
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