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Biomaterials based on noncovalent interactions of small molecules

机译:基于小分子非共价相互作用的生物材料

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摘要

Unlike conventional materials that covalent bonds connecting atoms as the major force to hold the materials together, supramolecular biomaterials rely on noncovalent intermolecular interactions to assemble. The reversibility and biocompatibility of supramolecular biomaterials render them with diverse range of functions and lead to rapid development in the past two decades. This review focuses on the noncovalent and enzymatic control of supramolecular biomaterials, with the introduction to various triggering mechanism to initiate self-assembly. Representative applications of supramolecular biomaterials are highlighted in four categories: tissue engineering, cancer therapy, drug delivery, and molecular imaging. By introducing various applications, we intend to show enzymatic control and noncovalent interactions as a powerful tool for achieving spatiotemporal control of biomaterials both in vitro and in vivo for biomedicine.
机译:与共价键连接原子作为使材料保持在一起的主要力的传统材料不同,超分子生物材料依赖于非共价分子间相互作用来组装。超分子生物材料的可逆性和生物相容性使它们具有各种功能,并在过去二十年中导致快速发展。本综述侧重于超分子生物材料的非价和酶促控制,引进各种触发机构来启动自组装。超分子生物材料的代表性应用在四类中突出显示:组织工程,癌症治疗,药物递送和分子成像。通过引入各种应用,我们打算将酶促对照和非共价相互作用作为一种强大的工具,用于实现体外和体内生物医学的生物材料的时空控制。

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