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Thiol-ene Cross-Linkable Hydrogels as Bioinks for Biofabrication

机译:硫醇-NEE可交联水凝胶作为生物结缔的生物链

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This article introduces biofabrication and highlights the role of hydrogels in this field of research as materials that combine chemical tunability with cytocompatibility and the suitability for processing with biofabrication technologies. So far, chemical cross-linking as post-fabrication step to stabilize the printed structures has mainly been achieved by free radical polymerization of (meth-)acrylated hydrogel components. We discuss thiol-ene chemistry as an interesting alternative that is widely used in polymer science, but has so far not been explored much for biofabrication. We then present our development of thiol-ene cross-linkable hydrogel-bioink as alternative to the widely used free radical photopolymerization of methacrylated molecules in biofabrication. Thiol-ene chemistry allows for rapid gelation after printing with good shape fidelity and high reproducibility under identical printing parameters.
机译:本文介绍了生物制造,突出了水凝胶在该研究领域中的作用,作为将化学可调性与细胞相容性相结合的材料,以及使用生物制造技术加工的适用性。 到目前为止,作为稳定印刷结构的制造步骤作为制造后步骤的化学交联主要通过(甲基)丙烯酸水凝胶组分的自由基聚合来实现。 我们将硫醇-NEE化学讨论为一个有趣的替代方案,广泛用于聚合物科学,但到目前为止还没有探索生物制造。 然后我们展示我们对可交联水凝胶 - 生物凝胶 - 生物胶蛋白的发展,作为广泛使用的自由基光聚合的生物结缔组中的甲基丙烯酸分子。 在相同的印刷参数下,硫醇-Ene化学允许在印刷良好的形状保真度和高再现性之后快速凝胶化。

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