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Design of Supramolecular Biomaterials Greatly Enhancing Multivalent Binding with Biological Systems

机译:超分子生物材料的设计大大增强了生物系统的多价结合。

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Supramolecular Science has become an important issue in constructing molecular architectures through intermolecular forces by mimicking molecular assemblies in nature. Polyrotaxane is defined as a molecular assembly in which many cyclic compounds are threaded onto a linear polymeric chain capped with bulky end-groups. In the last decade, a variety of polyrotaxanes has been extensively designed as to act as novel biomaterials in our group. In this article, enhanced multivalent binding with biological systems has been introduced throughout our systematic studies on ligand-immobilized polyrotaxanes. Our studies have revealed such an enhanced binding effect seen in the polyrotaxanes is due to the combination of introducing multiple copies of the ligands and their highly mobile nature due to the inter-locked structure. A new insight of designing functional biomaterials will emerge from such structural characteristics of the polyrotaxanes.
机译:超分子科学已成为通过模仿自然界中的分子组装而通过分子间力构建分子体系的重要问题。聚轮烷被定义为一种分子组装,其中许多环状化合物被连接到一个以庞大的端基封端的线性聚合物链上。在过去的十年中,已经广泛设计了多种聚轮烷,以作为我们组中的新型生物材料。在本文中,我们对配体固定的聚轮烷的系统研究已引入与生物系统的增强多价结合。我们的研究表明,在聚轮烷中看到的这种增强的结合作用是由于引入了多个拷贝的配体及其互锁结构而引起的高度可移动性的结合。聚轮烷的这种结构特征将为设计功能性生物材料提供新的见识。

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