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配位化合物强大抗氧化活性的近期综述

Recent Overview of Potent Antioxidant Activity of Coordination Compounds.

作者信息

El-Lateef Hany M Abd, El-Dabea Tarek, Khalaf Mai M, Abu-Dief Ahmed M

机构信息

Department of Chemistry, College of Science, King Faisal University, Al-Ahsa P.O. Box 400, Saudi Arabia.

Chemistry Department, Faculty of Science, Sohag University, Sohag 82534, Egypt.

出版信息

Antioxidants (Basel). 2023 Jan 17;12(2):213. doi: 10.3390/antiox12020213.

Abstract

During recent decades, the complexation of organic ligands toward several metal ions of s-p and d-block has been applied as a plan to enhance its antioxidant performance. Due to their wide range of beneficial impacts, coordination compounds are widely used in industries, specifically in the medicinal and pharmaceutical fields. The activity is generally improved by chelation consequently knowing that the characteristics of both ligands and metals can lead to the development of greatly active compounds. Chelation compounds are a substitute for using the traditional synthetic antioxidants, because metal chelates present benefits, including a variety in geometry, oxidation states, and coordination number, that assist and favor the redox methods associated with antioxidant action. As well as understanding the best studied anti-oxidative assets of these compounds, coordination compounds are involved in the free radical scavenging process and protecting human organisms from the opposing effects of these radicals. The antioxidant ability can be assessed by various interrelated systems. The methodological modification offers the most knowledge on the antioxidant property of metal chelates. Colorimetric techniques are the most used, though electron paramagnetic resonance (EPR) is an alternative for metallic compounds, since color does not affect the results. Information about systems, with their benefits, and restrictions, permits a dependable valuation of the antioxidant performance of coordination compounds, as well as assisting application in various states wherever antioxidant drugs are required, such as in food protection, appropriate good-packaged foods, dietary supplements, and others. Because of the new exhaustive analysis of organic ligands, it has become a separate field of research in chemistry. The present investigation will be respected for providing a foundation for the antioxidant properties of organic ligands, future tests on organic ligands, and building high-quality antioxidative compounds.

摘要

在最近几十年中,有机配体与几种s-p和d区金属离子的络合作用已被用作提高其抗氧化性能的一种方案。由于其广泛的有益影响,配位化合物在工业中得到广泛应用,特别是在医药和制药领域。螯合作用通常会提高活性,因此要知道配体和金属的特性都能导致高活性化合物的开发。螯合化合物是传统合成抗氧化剂的替代品,因为金属螯合物具有多种几何形状、氧化态和配位数等优点,有助于并有利于与抗氧化作用相关的氧化还原过程。除了了解这些化合物研究得最透彻的抗氧化特性外,配位化合物还参与自由基清除过程,并保护人体免受这些自由基的不利影响。抗氧化能力可以通过各种相互关联的系统进行评估。方法的改进提供了关于金属螯合物抗氧化性能的最多知识。比色技术是最常用的,不过电子顺磁共振(EPR)是金属化合物的另一种选择,因为颜色不会影响结果。有关各种系统及其优点和局限性的信息,有助于可靠地评估配位化合物的抗氧化性能,并有助于其在需要抗氧化药物的各种情况下的应用,如食品保护、合适的包装食品、膳食补充剂等。由于对有机配体进行了新的详尽分析,它已成为化学领域一个独立的研究方向。本研究将为有机配体的抗氧化性能研究、未来对有机配体的测试以及构建高质量的抗氧化化合物奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83f0/9952845/30863b7744da/antioxidants-12-00213-g001.jpg

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