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Interactive Polymer Gels as Biomimetic Sensors for Carbohydrate Interactions and Capture-Release Devices for Pathogens

机译:作为碳水化合物相互作用和捕获释放装置的互动聚合物凝胶作为病原体的仿生传感器

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Adhesive processes mediated by carbohydrate-decorated interfaces play a crucial role in many biological processes such as cell development or pathogen invasion. The involved carbohydrate scaffolds are soft and present multiple subsites forming complex and dynamic bonds to carbohydrate binding proteins. New tools and data are needed to understand how ligand presentation and mechanical properties drive these binding processes. This article highlights recent developments in the area of adhesion assays with a focus on soft biomimetic carbohydrate scaffolds as probes of adhesion forces. Key findings state that carbohydrate functionalized polymer networks largely show additive multivalency (statistical effects) and that the overall interaction forces are strongly affected by the stiffness of the network. These results indicate that phase transitions of carbohydrate bearing polymer gels may enable tunable affinity toward carbohydrate binding proteins. As an example, polymer networks undergoing large changes in mechanical rigidity, density, and spacing of carbohydrate ligands upon temperature stimulus are shown to bind or release carbohydrate binding bacteria such as Escherichia coli. The presented adhesion assays and the developed responsive systems can provide new insights into the mechanism through which carbohydrates mediate adhesion processes and establish new avenues toward scaffolds for the capture or release of cells or pathogens.
机译:由碳水化合物装饰界面介导的粘合剂过程在许多生物过程中发挥着至关重要的作用,例如细胞发育或病原体侵袭。所涉及的碳水化合物支架是柔软的,并且具有形成复合物和动态键的多个底座与碳水化合物结合蛋白。需要新的工具和数据来了解Ligand呈现和机械性能如何驱动这些绑定过程。本文突出了粘合测定领域的最新发展,重点是软生物摩擦碳水化合物支架作为粘附力的探针。关键发现区碳水化合物官能化聚合物网络在很大程度上显示了添加剂多价(统计学效应),并且整体相互作用力受网络刚度的强烈影响。这些结果表明碳水化合物轴承聚合物凝胶的相转变可使可调节亲和力朝向碳水化合物结合蛋白。作为一个例子,显示在温度刺激物上的机械刚度,密度和碳水化合物配体的碳水化合物配体的较大变化的聚合物网络被显示为结合或释放碳水化合物结合细菌,例如大肠杆菌。所提出的粘合测定和发育的响应性系统可以为碳水化合物介导粘附过程的机制提供新的见解,并建立用于捕获或释放细胞或病原体的支架的新途径。

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