Xu Yourui, Shen Yan, Xiong Yerong, Li Chang, Sun Chunmeng, Ouahab Ammar, Tu Jiasheng
Department of Pharmaceutics, China Pharmaceutical University , Nanjing , China.
Drug Dev Ind Pharm. 2014 Sep;40(9):1264-75. doi: 10.3109/03639045.2013.814066. Epub 2013 Jul 15.
Temperature-sensitive hydrogels were designed using a series of A-B-A triblock copolymers consisting of poly (ethylene glycol) (PEG) with different molecular weights as the hydrophilic block B and poly (β-butyrolactone-co-lactic acid)(PBLA) with varying block lengths and composition as the hydrophobic block A. The triblock copolymers were synthesized by ring-opening polymerization (ROP) of β-BL and LA in bulk using PEG as an initiator and Sn(Oct)2 as the catalyst. Their chemical structure and molecular characteristics were determined by NMR, GPC and DSC, and the relationship between structure and phase behaviors in aqueous solutions was investigated as well. It was found that the phase behaviors in aqueous solutions including critical micelle concentration (CMC), sol-gel-sedimentation phase transition temperature, gel window width and critical gelation concentration (CGC) are largely dependent on the molecular weight and block length ratio of PEG/PBLA. Most importantly, they show a very low CGC ranging from 4 to 8 wt% because of the introduction of β-BL. Furthermore, the biodegradability and biocompatibility of the hydrogels were evaluated. Finally, lysozyme as a model protein was used to evaluate the ability to deliver protein drugs in a sustained release manner and biologically active form. All results demonstrated that the temperature-sensitive in situ forming hydrogel has a promising potential as sustained delivery system for protein drugs.
利用一系列A-B-A三嵌段共聚物设计了温度敏感水凝胶,其中不同分子量的聚乙二醇(PEG)作为亲水嵌段B,具有不同嵌段长度和组成的聚(β-丁内酯-共-乳酸)(PBLA)作为疏水嵌段A。以PEG为引发剂、Sn(Oct)2为催化剂,通过β-BL和LA的本体开环聚合(ROP)合成了三嵌段共聚物。通过核磁共振(NMR)、凝胶渗透色谱(GPC)和差示扫描量热法(DSC)确定了它们的化学结构和分子特征,并研究了其在水溶液中的结构与相行为之间的关系。发现水溶液中的相行为,包括临界胶束浓度(CMC)、溶胶-凝胶-沉淀相变温度、凝胶窗口宽度和临界凝胶浓度(CGC)在很大程度上取决于PEG/PBLA的分子量和嵌段长度比。最重要的是,由于引入了β-BL,它们显示出非常低的CGC,范围为4至8 wt%。此外,还评估了水凝胶的生物降解性和生物相容性。最后,以溶菌酶作为模型蛋白,评估了以缓释方式和生物活性形式递送蛋白药物的能力。所有结果表明,温度敏感原位形成水凝胶作为蛋白药物的缓释系统具有广阔的应用前景。