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Synthesis of Poly(ethylene glycol)-based Hydrogels via Amine-Michael Type Addition with Tunable Stiffness and Postgelation Chemical Functionality

机译:具有可调节的刚度和后凝胶化学功能的胺-迈克尔型加成法合成基于聚乙二醇的水凝胶

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The synthesis of a novel PEG-based hydrogel formed by amine-Michael type addition is reported. Star-shaped PEG molecules (having 8 arms with acrylate end groups; 8PEG) are utilized as macromonomer, and NH3 in ammonia solution (30%) is used as cross-linker, a small and volatile molecule, which unreacted remains can be easily removed from the gel matrix. A distinct relationship between hydrogel structure and properties has been obtained, that is, higher amounts of NH3 in the reaction lead to higher cross-linking density* higher bulk, and surface elasticity and smoother surface morphologies. Moreover, it is demonstrated that the incomplete amine-Michael type addition chemistry leads to gel formation with plenty of residual acrylate groups that are verified by LC-MS analysis and Raman spectra. Those residual acrylate groups enable us on the one hand to (bio)functionalize the gels, for example, via a second Michael-type addition reaction, employing thiol-reactive (bio)functional molecules and/or to perform additional UV-curing (photoinitiated cross-linking) to further stabilize the preformed gels with higher mechanical integrity. The proof of principle of the postgelation reactivity is demonstrated by fabricating nanoscale precise 3D patterns and by using a thiolated luorescent dye, which reacts at the surface of the cross-linked gel and shows a small but clear penetration profile of around 50 μm from the surface into the bulk of the reactive gel.
机译:报道了通过胺-迈克尔型加成形成的新型基于PEG的水凝胶的合成。星形PEG分子(具有8个带有丙烯酸酯端基的臂; 8PEG)用作大分子单体,氨溶液中的NH3(30%)用作交联剂,是一种小的挥发性分子,可以轻松除去未反应的残留物来自凝胶基质。已获得水凝胶结构与性能之间的明显关系,即,反应中较高的NH3量导致较高的交联密度*较高的体积,以及表面弹性和较平滑的表面形态。此外,已经证明,不完全的胺-迈克尔型加成化学导致形成具有大量残留丙烯酸酯基团的凝胶,这通过LC-MS分析和拉曼光谱证实。那些残留的丙烯酸酯基团一方面使我们能够(例如)通过第二次迈克尔型加成反应(使用硫醇反应性(生物)官能分子)和/或进行额外的紫外线固化(光引发)来对凝胶进行(生物)官能化。交联),以更高的机械完整性进一步稳定预制的凝胶。后凝胶反应性原理的证明是通过制造纳米级精确的3D图样和使用硫醇化的荧光染料来证明的,该染料在交联凝胶的表面发生反应,并显示出一个小的但清晰的穿透特性,距表面约50μm进入大部分反应性凝胶。

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