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Biomimetic hydrogel by enzymatic crosslinking of pullulan grafted with ferulic acid

机译:用阿魏酸接枝的巯基酶交联酶交联仿生胚

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摘要

A novel eco-friendly two-step synthesis process of neutral pullulan (PUL)-ferulic acid (FA) conjugates was re-ported in this work. Ferulic acid was first transformed to activated ferulate-imidazolide using N,N'-carbonyldiimidazole (CDI), a green activated reagent. Issued product was then reacted with pullulan. PUL-FA derivatives were characterized by FTIR and H-1 NMR leading to substitution degrees (DS) between 0.02 and 0.1 (mol FA per mol PUL repeat unit). The study in dilute regime indicated an associative behavior with the presence of aggregate structures in solution due to the hydrophobic interactions between the grafted FA onto polysaccharide backbones. Laccase from Trametes versicolor was then used to crosslink polysaccharide chains to obtain biomimetic PUL-FA hydrogels. Gelling's kinetics were analyzed with rheology in dynamic mode showing the impact of laccase amount, DS and concentration. Mechanical and swelling properties appear related only to DS and concentration of PUL-FA products.
机译:在这项工作中重新移植中性胰蛋白酶(液体)酸(FA)缀合物的新型生态友好型两步合成方法。首先使用N,N'-Carbonyldiimidazole(CDI),生坯活化试剂转化为活化的咪唑酯的阿魏酸。然后发出的产物与淀粉反应。通过FTIR和H-1 NMR的特征在于脉冲FA衍生物,导致0.02和0.1之间的取代度(DS)(每摩尔丙倍重复单元的Mol Fa)。稀释制度的研究表明,由于接枝FA之间的疏水相互作用在多糖骨架上存在溶液中的聚集结构存在缔合行为。然后使用来自Trametes Versicolor的漆酶用于交联多糖链以获得仿生培养基水凝胶。通过动态模式的流变学分析胶凝的动力学,显示漆酶量,DS和浓度的影响。机械和膨胀性能仅出现在DS和培养物产品的浓度相关。

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