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Preparation of supramolecular hydrogel-enzyme hybrids exhibiting biomolecule-responsive gel degradation

机译:表现出生物分子响应性凝胶降解的超分子水凝胶-酶杂合物的制备

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摘要

Hydrogelators are small, self-assembling molecules that form supramolecular nanofiber networks that exhibit unique dynamic properties. Development of supramolecular hydrogels that degrade in response to various biomolecules could potentially be used for applications in areas such as drug delivery and diagnostics. Here we provide a synthetic procedure for preparing redox-responsive supramolecular hydrogelators that are used to create hydrogels that degrade in response to oxidizing or reducing conditions. The synthesis takes similar to 2-4 d, and it can potentially be carried out in parallel to prepare multiple hydrogelator candidates. This described solid-phase peptide synthesis protocol can be used to produce previously described hydrogelators or to construct a focused molecular library to efficiently discover and optimize new hydrogelators. In addition, we describe the preparation of redox-responsive supramolecular hydrogel-enzyme hybrids that are created by mixing aqueous solutions of hydrogelators and enzymes, which requires 2 h for completion. The resultant supramolecular hydrogel-enzyme hybrids exhibit gel degradation in response to various biomolecules, and can be rationally designed by connecting the chemical reactions of the hydrogelators with enzymatic reactions. Gel degradation in response to biomolecules as triggers occurs within a few hours. We also describe the preparation of hydrogel-enzyme hybrids arrayed on flat glass slides, enabling high-throughput analysis of biomolecules such as glucose, uric acid, lactate and so on by gel degradation, which is detectable by the naked eye. The protocol requires similar to 6 h to prepare the hydrogel-enzyme hybrid array and to complete the biomolecule assay.
机译:水凝胶化剂是小的自组装分子,形成超分子纳米纤维网络,展现出独特的动态特性。响应各种生物分子而降解的超分子水凝胶的开发可潜在地用于诸如药物递送和诊断的领域。在这里,我们提供了用于制备氧化还原反应性超分子水凝胶剂的合成程序,该水凝胶剂用于产生可在氧化或还原条件下降解的水凝胶。合成过程与2-4天相似,并且可以潜在地并行进行以制备多种水凝胶剂候选物。该描述的固相肽合成方案可用于生产先前描述的水凝胶剂或构建聚焦分子库以有效地发现和优化新的水凝胶剂。此外,我们描述了氧化还原反应性超分子水凝胶-酶杂合体的制备,该杂合体是通过将水凝胶化剂和酶的水溶液混合而完成的,需要2小时才能完成。所得的超分子水凝胶-酶杂化物响应于各种生物分子而表现出凝胶降解,并且可以通过将水凝胶化剂的化学反应与酶促反应联系起来进行合理设计。在数小时内发生对生物分子的触发而导致的凝胶降解。我们还描述了在平板玻璃载玻片上排列的水凝胶-酶杂合体的制备方法,可通过凝胶降解对肉眼可见的生物分子(例如葡萄糖,尿酸,乳酸盐等)进行高通量分析。该协议需要大约6个小时来准备水凝胶-酶杂交阵列并完成生物分子测定。

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