Hiemstra Christine, Aa Leonardus J van der, Zhong Zhiyuan, Dijkstra Pieter J, Feijen Jan
Department of Polymer Chemistry and Biomaterials, Faculty of Science and Technology, Institute for Biomedical Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Biomacromolecules. 2007 May;8(5):1548-56. doi: 10.1021/bm061191m. Epub 2007 Apr 11.
Thiol-functionalized dextrans (dex-SH) (M(n,dextran) = 14K or 31K) with degrees of substitution (DS) ranging from 12 to 25 were synthesized and investigated for in situ hydrogel formation via Michael type addition using poly(ethylene glycol) tetra-acrylate (PEG-4-Acr) or a dextran vinyl sulfone conjugate with DS 10 (dex-VS DS 10). Dex-SH was prepared by activation of the hydroxyl groups of dextran with 4-nitrophenyl chloroformate and subsequent reaction with cysteamine. Hydrogels were rapidly formed in situ under physiological conditions upon mixing aqueous solutions of dex-SH and either PEG-4-Acr or dex-VS DS 10 at polymer concentrations of 10 to 20 w/v%. Rheological studies showed that these hydrogels are highly elastic. By varying the DS, concentration, dextran molecular weight, and type of cross-linker, hydrogels with a broad range of storage moduli of 9 to 100 kPa could be obtained. Varying the ratio of thiol to vinyl sulfone groups from 0.9 to 1.1 did not alter the storage modulus of the hydrogels, whereas larger deviations from equimolarity (thiol to vinyl sulfone ratios of 0.75 and 1.5) considerably decreased the storage modulus. The plateau value of hydrogel storage modulus was reached much faster at pH 7.4 compared to pH 7, due to a higher concentration of the thiolate anion at higher pH. These hydrogels were degradable under physiological conditions. Degradation times were 3 to 7 weeks for dex-SH/dex-VS DS 10 hydrogels and 7 to over 21 weeks for dex-SH/PEG-4-Acr hydrogels, depending on the DS, concentration, and dextran molecular weight.
合成了取代度(DS)范围为12至25的硫醇官能化葡聚糖(dex-SH)(M(n,葡聚糖)= 14K或31K),并研究了其通过使用聚(乙二醇)四丙烯酸酯(PEG-4-Acr)或取代度为10的葡聚糖乙烯基砜共轭物(dex-VS DS 10)经由迈克尔型加成反应原位形成水凝胶的情况。通过用氯甲酸4-硝基苯酯活化葡聚糖的羟基并随后与半胱胺反应来制备dex-SH。在生理条件下,当将dex-SH与PEG-4-Acr或dex-VS DS 10的水溶液以10至20 w/v%的聚合物浓度混合时,水凝胶会迅速原位形成。流变学研究表明这些水凝胶具有高弹性。通过改变DS、浓度、葡聚糖分子量和交联剂类型,可以获得储能模量范围为9至100 kPa的多种水凝胶。将硫醇与乙烯基砜基团的比例从0.9改变至1.1不会改变水凝胶的储能模量,而与等摩尔比的较大偏差(硫醇与乙烯基砜的比例为0.75和1.5)会显著降低储能模量。与pH 7相比,在pH 7.4时水凝胶储能模量的平稳值达到得更快,这是因为在较高pH下硫醇盐阴离子的浓度更高。这些水凝胶在生理条件下可降解。dex-SH/dex-VS DS 10水凝胶的降解时间为3至7周,dex-SH/PEG-4-Acr水凝胶的降解时间为7至超过21周,具体取决于DS、浓度和葡聚糖分子量。