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具有生物活性配体的金属配合物作为潜在的抗氧化剂。

Metal complexes of biologically active ligands as potential antioxidants.

作者信息

Kostova Irena, Balkansky Stefan

机构信息

Department of Chemistry, Faculty of Pharmacy, Medical University, 2 Dunav St., Sofia 1000, Bulgaria.

出版信息

Curr Med Chem. 2013;20(36):4508-39. doi: 10.2174/09298673113206660288.

Abstract

Recent years have witnessed an unprecedented progress in biological applications of metal coordination compounds of biologically active ligands because of their key role in clinical therapy. Transition metals are particularly suitable for this purpose because they can adopt a wide variety of coordination numbers, geometries and oxidation states in comparison with other main group elements. One of the characteristics of metals is their potential to undergo redox processes, as determined by their redox potentials. Especially, transition metal ions are usually able to switch between several oxidation states. Due to the redox activity of metals and, therefore, a possible disturbance of the sensitive cellular redox homeostasis, a tight regulation of the metal and redox balance is crucial for health. On the other hand, over production of activated oxygen species, generated by normal metabolic process, is considered to be the main contributor to oxidative damages to biomolecules such as DNA, lipids and proteins, thus accelerating cancer, aging, inflammation, cardiovascular and neurodegenerative diseases. The potential value of antioxidants has already prompted investigators to search for the cooperative effects of metal complexes and natural compounds for improving antioxidant activity. Depending on their structure and on the source of the oxidative stress, metal complexes might act as antioxidants or prooxidants. The current review provides insight into the interaction between the reactive oxygen species and the transition metals and their complexes. It will focus on a novel approach to design synthetic antioxidant metal-based compounds and to study their activities in the oxidation processes. This work underlines some important features for the research on metal complexes of biologically active ligands as antioxidants, and supports future evaluation of some of these compounds as possible therapeutic agents.

摘要

近年来,生物活性配体的金属配位化合物在生物应用方面取得了前所未有的进展,因为它们在临床治疗中起着关键作用。过渡金属特别适合于此目的,因为与其他主族元素相比,它们可以采用多种配位数、几何构型和氧化态。金属的一个特性是它们具有通过氧化还原过程发生变化的潜力,这由它们的氧化还原电位决定。特别是,过渡金属离子通常能够在几种氧化态之间转换。由于金属的氧化还原活性,进而可能扰乱敏感的细胞氧化还原稳态,因此严格调节金属和氧化还原平衡对健康至关重要。另一方面,正常代谢过程产生的活性氧的过量产生被认为是对生物分子(如DNA、脂质和蛋白质)造成氧化损伤的主要原因,从而加速癌症、衰老、炎症、心血管疾病和神经退行性疾病。抗氧化剂的潜在价值已经促使研究人员探索金属配合物与天然化合物的协同作用,以提高抗氧化活性。根据其结构和氧化应激的来源,金属配合物可能充当抗氧化剂或促氧化剂。本综述深入探讨了活性氧与过渡金属及其配合物之间的相互作用。它将重点关注一种设计合成抗氧化金属基化合物并研究其在氧化过程中活性的新方法。这项工作强调了作为抗氧化剂的生物活性配体金属配合物研究的一些重要特征,并支持未来对其中一些化合物作为可能的治疗剂的评估。

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