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A Modular and Practical Synthesis of Zwitterionic Hydrogels through Sequential Amine-Epoxy Click Chemistry and N-Alkylation Reaction

机译:通过顺序胺-环氧点击化学和N-烷基化反应的两性离子水凝胶的模块化实用合成

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摘要

In this work, the amine-epoxy “click” reaction is shown to be a valuable general tool in the synthesis of reactive hydrogels. The practicality of this reaction arises due to its catalyst-free nature, its operation in water, and commercial availability of a large variety of amine and epoxide molecules that can serve as hydrophilic network precursors. Therefore, hydrogels can be prepared in a modular fashion through a simple mixing of the precursors in water and used as produced (without requiring any post-synthesis purification step). The gelation behavior and final hydrogel properties depend upon the molecular weight of the precursors and can be changed as per the requirement. A post-synthesis modification through alkylation at the nitrogen atom of the newly formed β-hydroxyl amine linkages allows for functionalizing the hydrogels. For example, ring-opening reaction of cyclic sulfonic ester gives rise to surfaces with a zwitterionic character. Finally, the established gelation chemistry can be combined with soft lithography techniques such as micromolding in capillaries (MIMIC) to obtain hydrogel microstructures.
机译:在这项工作中,胺-环氧“点击”反应被证明是合成反应性水凝胶的有价值的通用工具。该反应的实用性归因于其无催化剂的性质,其在水中的操作以及可以用作亲水网络前体的多种胺和环氧化物分子的商业可获得性。因此,可以通过将前体在水中简单混合而以模块化方式制备水凝胶,并将其直接使用(不需要任何合成后的纯化步骤)。胶凝行为和最终的水凝胶性质取决于前体的分子量,可以根据需要进行更改。通过在新形成的β-羟基胺键的氮原子处的烷基化进行的合成后修饰允许水凝胶官能化。例如,环状磺酸酯的开环反应产生具有两性离子特性的表面。最后,可以将已建立的凝胶化学与软光刻技术(例如毛细管微模制(MIMIC))结合使用,以获得水凝胶微结构。

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