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Sliding tethered ligands add topological interactions to the toolbox of ligand–receptor design

机译:滑动拴系配体为配体-受体设计工具箱增加了拓扑相互作用

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Adhesion in the biological realm is mediated by specific lock-and-key interactions between ligand–receptor pairs. These complementary moieties are ubiquitously anchored to substrates by tethers that control the interaction range and the mobility of the ligands and receptors, thus tuning the kinetics and strength of the binding events. Here we add sliding anchoring to the toolbox of ligand–receptor design by developing a family of tethered ligands for which the spacer can slide at the anchoring point. Our results show that this additional sliding degree of freedom changes the nature of the adhesive contact by extending the spatial range over which binding may sustain a significant force. By introducing sliding tethered ligands with self-regulating length, this work paves the way for the development of versatile and reusable bio-adhesive substrates with potential applications for drug delivery and tissue engineering.
机译:在生物领域中的粘附是通过配体-受体对之间特定的锁键相互作用来介导的。这些互补部分通过控制配体和受体的相互作用范围和迁移率的系链无处不在地锚定在基质上,从而调节结合事件的动力学和强度。在这里,我们通过开发一系列束缚的配体,使间隔基团可以在锚定点滑动,从而将滑动锚定添加到配体-受体设计工具箱中。我们的结果表明,这种额外的滑动自由度通过扩展粘合力可承受很大力的空间范围而改变了粘合剂接触的性质。通过引入具有自我调节长度的滑动拴系配体,这项工作为开发多功能且可重复使用的生物粘附性基质铺平了道路,并在药物输送和组织工程方面具有潜在的应用前景。

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