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金属-类黄酮相互作用——从简单配合物到先进体系

Metal-Flavonoid Interactions-From Simple Complexes to Advanced Systems.

作者信息

Walencik Paulina Katarzyna, Choińska Renata, Gołębiewska Ewelina, Kalinowska Monika

机构信息

Institute of Agricultural and Food Biotechnology-State Research Institute, Rakowiecka 36, 02-532 Warsaw, Poland.

Department of Chemistry, Biology and Biotechnology, Faculty of Civil and Environmental Sciences, Bialystok University of Technology, Wiejska 45E Street, 15-351 Bialystok, Poland.

出版信息

Molecules. 2024 May 30;29(11):2573. doi: 10.3390/molecules29112573.

Abstract

For many years, metal-flavonoid complexes have been widely studied as a part of drug discovery programs, but in the last decade their importance in materials science has increased significantly. A deeper understanding of the role of metal ions and flavonoids in constructing simple complexes and more advanced hybrid networks will facilitate the assembly of materials with tailored architecture and functionality. In this Review, we highlight the most essential data on metal-flavonoid systems, presenting a promising alternative in the design of hybrid inorganic-organic materials. We focus mainly on systems containing Cu and Fe ions, which are necessary in natural and industrial catalysis. We discuss two kinds of interactions that typically ensure the formation of metal-flavonoid systems, namely coordination and redox reactions. Our intention is to cover the fundamentals of metal-flavonoid systems to show how this knowledge has been already transferred from small molecules to complex materials.

摘要

多年来,金属 - 类黄酮配合物作为药物发现计划的一部分被广泛研究,但在过去十年中,它们在材料科学中的重要性显著增加。更深入地了解金属离子和类黄酮在构建简单配合物和更先进的混合网络中的作用,将有助于组装具有定制结构和功能的材料。在本综述中,我们强调了金属 - 类黄酮体系的最重要数据,为无机 - 有机杂化材料的设计提供了一个有前景的选择。我们主要关注含有铜和铁离子的体系,这两种离子在自然和工业催化中是必需的。我们讨论了通常确保金属 - 类黄酮体系形成的两种相互作用,即配位反应和氧化还原反应。我们的目的是涵盖金属 - 类黄酮体系的基本原理,以展示这些知识是如何从小分子转移到复杂材料中的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d12b/11173564/a1e26777d0ef/molecules-29-02573-g001.jpg

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