Schacht Etienne, Toncheva Veska, Vandertaelen Kristin, Heller Jorge
University of Ghent, Polymer Chemistry and BioMaterials Research Group, Krijgslaan, 281, S-4, B-9000 Ghent, Belgium.
J Control Release. 2006 Nov 28;116(2):219-25. doi: 10.1016/j.jconrel.2006.07.026. Epub 2006 Jul 31.
Graft copolymers comprised of a polyacetal backbone with pendant poly(ethylene glycol) side-chains were prepared using a condensation reaction between a divinyl ethers, a diol and Fmoc-protected serinol, followed by deprotecting the amine and reacting the polyacetal with pendant amino groups with PEG-alpha-methoxy-omega-succimidylcarbonate. A series of materials having lower critical solution temperature (LCST) between 25 and 60 degrees C has been prepared. Since LCST is determined by the hydrophilic-hydrophobic balance, and this in turn is determined by the molecular weight of the polyacetal backbone, the molecular weight of the grafted PEG and the amount grafted, materials having a desired LCST could be readily prepared. Incorporating FITC-BSA at 1 wt.% into the thermogel resulted in sustained release over about 100 days at pH 7.4 and 40 days at pH 5.5 without a burst and by reasonably linear kinetics. Incorporating FITC-BSA at 5 wt.% into the thermogel significantly increased delivery time at pH 5.5 and decreased the difference in delivery rates between pH 5.5 and pH 7.4. FITC-BSA is released by a predominantly erosion-controlled process and FITC-BSA depletion coincides closely with total gel dissolution. More rapidly eroding thermogels were prepared by replacing the polyacetal backbone with a poly(ortho ester) backbone. Such gels completely dissolved between 3 and 6 days. It is hoped that intermediate erosion rates can be achieved by preparing backbones containing both acetal and ortho ester linkages. Such materials have been prepared and shown to have LCST values in the desired range, but no erosion, or drug release studies have as yet been completed.
由带有聚(乙二醇)侧链的聚缩醛主链组成的接枝共聚物是通过二乙烯基醚、二醇与Fmoc保护的丝氨醇之间的缩合反应制备的,随后对胺进行脱保护,并使带有侧链氨基的聚缩醛与聚乙二醇-α-甲氧基-ω-琥珀酰亚胺基碳酸酯反应。已经制备了一系列低临界溶液温度(LCST)在25至60摄氏度之间的材料。由于LCST由亲水-疏水平衡决定,而亲水-疏水平衡又由聚缩醛主链的分子量、接枝的聚乙二醇的分子量和接枝量决定,因此可以很容易地制备出具有所需LCST的材料。在热凝胶中加入1 wt.%的FITC-BSA,在pH 7.4时可持续释放约100天,在pH 5.5时可持续释放40天,没有突释现象,且释放动力学合理呈线性。在热凝胶中加入5 wt.%的FITC-BSA,显著延长了在pH 5.5时的释放时间,并减小了pH 5.5和pH 7.4之间释放速率的差异。FITC-BSA主要通过侵蚀控制过程释放,FITC-BSA的消耗与凝胶完全溶解密切相关。通过用聚(原酸酯)主链取代聚缩醛主链制备了侵蚀更快的热凝胶。这种凝胶在3至6天内完全溶解。希望通过制备同时含有缩醛和原酸酯键的主链来实现中等侵蚀速率。已经制备了此类材料,并显示其LCST值在所需范围内,但尚未完成侵蚀或药物释放研究。