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Tuneable Transient Thermogels Mediated by a pH- and Redox-Regulated Supramolecular Polymerization

机译:由pH-和氧化还原调节的超分子聚合介导的可调谐瞬态热凝弹

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摘要

A multistimuli-responsive transient supramolecular polymerization of beta-sheet-encoded dendritic peptide monomers in water is presented. The amphiphiles, which contain glutamic acid and methionine, undergo a glucose oxidase catalyzed, glucose-fueled transient hydrogelation in response to an interplay of pH and oxidation stimuli, promoted by the production of reactive oxygen species (ROS). Adjusting the enzyme and glucose concentration allows tuning of the assembly and the disassembly rates of the supramolecular polymers, which dictate the stiffness and transient stability of the hydrogels. The incorporation of triethylene glycol chains introduces thermoresponsive properties to the materials. We further show that repair enzymes are able to reverse the oxidative damage in the methionine-based thioether side chains. Since ROS play an important role in signal transduction cascades, our strategy offers great potential for applications of these dynamic biomaterials in redox micro-environments.
机译:提出了一种多静脉响应的近端致敏瞬态超分子聚合在水中的树枝状树枝状肽单体。含有谷氨酸和蛋氨酸的两亲物响应于pH和氧化刺激的相互作用而经历葡萄糖氧化酶催化,葡萄糖燃料瞬态水滤液,通过生产活性氧物质(ROS)促进。调节酶和葡萄糖浓度允许调节组件和超分子聚合物的拆卸速率,其决定了水凝胶的刚度和瞬态稳定性。结合三甘醇链将热响应性与材料引入。我们进一步表明修复酶能够在甲硫氨酸的硫醚侧链中逆转氧化损伤。由于ROS在信号转导级联中发挥着重要作用,因此我们的策略在氧化还原微环境中的这些动态生物材料的应用提供了很大的潜力。

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