Self-Assembled Copper Polypyridyl Supramolecular Metallopolymer Achieving Enhanced Anticancer Efficacy

Zushuang Xiong, Lanhai Lai, Tianfeng Chen
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引用次数: 1

Abstract

Metallopolymers, a combination of organic polymers and metal center, contain metal atoms in repeating monomers can change its dynamic and thermodynamic properties through the directionality of coordination bonds and chemical tailoring of ligands. In the past decade, self-assembled functional supramolecular metallopolymers have aroused a surge of research interest, and have demonstrated application potential in cancer therapy. In this chapter, we have summarized the progress in the rational design of biological application of different metallopolymers. Especially, a copper polypyridyl complex was found be able to self-assemble into a supramolecular metallopolymer driven by the intermolecular interactions, which could enhance the uptake in cancer cells through endocytosis, thus effectively inhibit tumor growth in vivo without damage to the major organs. This study may provide a good example to use self-assembled metallopolymer to achieve enhanced anticancer efficacy.
自组装聚吡啶铜超分子金属聚合物增强抗癌效果
金属聚合物是有机聚合物与金属中心的结合体,在重复单体中含有金属原子,可以通过配位键的方向性和配体的化学裁剪来改变其动力学和热力学性质。近十年来,自组装功能超分子金属聚合物引起了人们的研究兴趣,并在癌症治疗中显示出应用潜力。在这一章中,我们综述了合理设计不同金属聚合物生物应用的研究进展。特别是发现一种铜多吡啶配合物能够在分子间相互作用的驱动下自组装成超分子金属聚合物,通过内吞作用增强其在癌细胞中的摄取,从而在不损害主要器官的情况下有效抑制肿瘤的体内生长。本研究为利用自组装金属聚合物提高抗癌效果提供了一个很好的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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