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Catechol functionalized hyperbranched polymers as biomedical materials

机译:儿茶酚官能化超支化聚合物作为生物医学材料

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The catechol plays a variety of important roles in biological processes, prompting researchers to include them in the design of biomimetic biomedical materials. The low molecular weight and good water solubility of the catechol group (or its derivatives) make it a good candidate for functionalizing biomaterials that can be typically achieved by grafting it onto a polymer chain. To fully harness the powerful capabilities of catechols, one can think beyond grafting to linear polymer chains, towards hyperbranched polymers, wherein at least one of the branches comprises at least one catechol moiety. In recent years, a number of approaches have been developed to synthesize multifunctional hyperbranched polymers with catechol functionalities for bioadhesives and surface coatings. This review article focuses on the main synthetic approaches applied for introducing the important and versatile catechol building blocks within the (hyper)branched structure polymers. In addition, the applications of these polymers in biomedical fields are highlighted as well. (C) 2017 Elsevier B.V. All rights reserved.
机译:儿茶酚在生物过程中起着多种重要作用,促使研究人员将其纳入仿生生物医学材料的设计中。邻苯二酚基(或其衍生物)的低分子量和良好的水溶性使其成为功能化生物材料的良好候选者,通常可以通过将其接枝到聚合物链上来实现。为了充分利用邻苯二酚的强大功能,人们可以考虑的不仅仅是接枝线性聚合物链,而是超支化聚合物,其中至少一个分支包含至少一个邻苯二酚部分。近年来,人们开发了许多方法来合成具有邻苯二酚功能的多功能超支化聚合物,用于生物粘附剂和表面涂层。本文综述了在(超)支化结构聚合物中引入重要且用途广泛的邻苯二酚构建块的主要合成方法。此外,还重点介绍了这些聚合物在生物医学领域的应用。(C) 2017爱思唯尔B.V.版权所有。

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