Can Mn coordination compounds be good candidates for medical applications?

Sandra Kozieł, Daria Wojtala, Magdalena Szmitka, Jacek Sawka, U. K. Komarnicka
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引用次数: 0

Abstract

Metal centres provide unique foci for varied biological modes of action that often but not exclusively involve redox or metal-ligand reactions. Metal complexes offer alternative and flexible coordination geometries, electron and proton transfer sites, inner and outer sphere reactivities, sites for redox-active, hemi-labile, and non-innocent ligands, and a variety of potentially controllable properties for exploitation in a therapeutic or biological context. The discovery of the first anticancer, the metal-based compound cisplatin in 1965 by Barnett Rosenberg was a historical outstanding breakthrough and led to a new area of metal-drug discovery. Some metal-based compounds have FDA approval for clinical use, while some undergo clinical trials for various medical therapies. This mini-review focuses on recent progress on Mn-based complexes with potential anticancer, antibacterial, and antifungal activities.
锰配位化合物能否成为医疗应用的理想候选材料?
金属中心为各种生物作用方式提供了独特的作用点,这些作用方式通常(但不完全)涉及氧化还原反应或金属配体反应。金属复合物提供了可供选择的灵活配位几何结构、电子和质子转移位点、内球和外球反应活性、氧化还原活性位点、半活配体和非无辜配体,以及各种潜在的可控特性,可用于治疗或生物领域。1965 年,巴尼特-罗森伯格(Barnett Rosenberg)发现了第一种抗癌药--金属基化合物顺铂,这是一项历史性的重大突破,开创了金属药物发现的新领域。一些金属基化合物已获得美国食品及药物管理局(FDA)批准用于临床,而另一些则正在进行各种医学疗法的临床试验。本微型综述重点介绍具有潜在抗癌、抗菌和抗真菌活性的锰基复合物的最新研究进展。
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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