Department of Polymer Chemistry and Biomaterials, MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Biomacromolecules. 2010 Jan 11;11(1):224-32. doi: 10.1021/bm901080d.
Water-soluble eight-armed poly(ethylene glycol)-poly(l-lactide) star block copolymers linked by an amide or ester group between the PEG core and the PLA blocks (PEG-(NHCO)-(PLA)(8) and PEG-(OCO)-(PLA)(8)) were synthesized by the stannous octoate catalyzed ring-opening polymerization of l-lactide using an amine- or hydroxyl-terminated eight-armed star PEG. At concentrations above the critical gel concentration, thermosensitive hydrogels were obtained, showing a reversible single gel-to-sol transition. At similar composition PEG-(NHCO)-(PLA)(8) hydrogels were formed at significantly lower polymer concentrations and had higher storage moduli. Whereas the hydrolytic degradation/dissolution of the PEG-(OCO)-(PLA)(8) takes place by preferential hydrolysis of the ester bond between the PEG and PLA block, the PEG-(NHCO)-(PLA)(8) hydrogels degrade through hydrolysis of ester bonds in the PLA main chain. Because of their relatively good mechanical properties and slow degradation in vitro, PEG-(NHCO)-(PLA)(8) hydrogels are interesting materials for biomedical applications such as controlled drug delivery systems and matrices for tissue engineering.
由酰胺或酯基团连接的亲水性八臂聚乙二醇-聚(L-丙交酯)星型嵌段共聚物(PEG-(NHCO)-(PLA)(8)和 PEG-(OCO)-(PLA)(8))是通过辛酸亚锡催化的 L-丙交酯开环聚合反应合成的,使用末端为胺基或羟基的八臂星型聚乙二醇作为引发剂。在浓度高于临界凝胶浓度时,得到了温敏水凝胶,表现出可逆的单一凝胶-溶胶转变。在相似的组成下,PEG-(NHCO)-(PLA)(8)水凝胶在更低的聚合物浓度下形成,且具有更高的储能模量。而 PEG-(OCO)-(PLA)(8)水凝胶的降解/溶解是通过 PEG 和 PLA 嵌段之间的酯键优先水解进行的,PEG-(NHCO)-(PLA)(8)水凝胶则通过 PLA 主链中酯键的水解进行降解。由于其具有相对较好的机械性能和体外缓慢的降解性,PEG-(NHCO)-(PLA)(8)水凝胶是用于药物控释系统和组织工程支架等生物医学应用的有趣材料。