金属配合物作为DNA合成和/或修复抑制剂:抗癌和抗菌剂

M. Ngoepe, H. S. Clayton
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引用次数: 5

摘要

利用金属基化合物作为治疗药物的药物无机化学已成为一个显示出明显前景的领域。DNA和RNA是各种疾病,如癌症和微生物感染的治疗干预的理想药物靶点。金属在医学中发挥着至关重要的作用,已知至少有10种金属对人类生命至关重要,另有46种非必需金属参与了药物治疗和诊断。这些金属基复合物以各种方式与DNA相互作用,并且通常作为前体药物在体内被激活。金属配合物引起DNA交联,导致DNA合成和修复受到抑制。本文就金属配合物与DNA核酸的各种相互作用及其作用机制进行了综述。此外,我们还讨论了用于研究金属配合物与DNA之间相互作用的各种工具。这些工具包括体外技术,如光谱学和电泳,以及在计算机上的研究,如蛋白质对接和密度功能理论,这些都是临床前开发的重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metal Complexes as DNA Synthesis and/or Repair Inhibitors: Anticancer and Antimicrobial Agents
Medicinal inorganic chemistry involving the utilization of metal-based compounds as therapeutics has become a field showing distinct promise. DNA and RNA are ideal drug targets for therapeutic intervention in the case of various diseases, such as cancer and microbial infection. Metals play a vital role in medicine, with at least 10 metals known to be essential for human life and a further 46 nonessential metals having been involved in drug therapies and diagnosis. These metal-based complexes interact with DNA in various ways, and are often delivered as prodrugs which undergo activation in vivo. Metal complexes cause DNA crosslinking, leading to the inhibition of DNA synthesis and repair. In this review, the various interactions of metal complexes with DNA nucleic acids, as well as the underlying mechanism of action, were highlighted. Furthermore, we also discussed various tools used to investigate the interaction between metal complexes and the DNA. The tools included in vitro techniques such as spectroscopy and electrophoresis, and in silico studies such as protein docking and density-functional theory that are highlighted for preclinical development.
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