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Interactions of antitumoral platinum-group metallodrugs with albumin

机译:抗肿瘤铂族金属药物与白蛋白的相互作用

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A full understanding of the modes of action of the metal-based antitumoral drugs requires the study of their interactions with all possible biological targets, including aminoacids, hormones, peptides and proteins. Albumin is the most abundant plasma protein and it is reasonable to expect that any injected metal drug will present some kind of interaction with this macromolecule, which could crucially determine its bioavailability and toxicology. However, relatively few detailed mechanistic studies have been performed on such interactions, in comparison to studies with DNA and nucleobases. In this work is presented a review of the research on reactions of platinum(Ⅱ) and (Ⅳ), gold(Ⅰ) and (Ⅲ), ruthenium(Ⅲ) and rhodium(Ⅱ) antitumoral compounds with serum albumin. Generally, platinum and gold compounds are found to react with S-donors such as methionine and the Cys34 residues of albumin, the latter being the most abundant free thiol in blood plasma. Complexes of ruthenium and rhodium are thought to react mainly through coordination with imidazole groups from histidine residues.
机译:要全面了解基于金属的抗肿瘤药物的作用方式,需要研究其与所有可能的生物学靶标(包括氨基酸,激素,肽和蛋白质)的相互作用。白蛋白是最丰富的血浆蛋白,可以合理预期任何注射的金属药物都会与这种大分子发生某种相互作用,从而可以决定性地确定其生物利用度和毒理学。但是,与使用DNA和核碱基进行的研究相比,针对这种相互作用进行的详细机理研究相对较少。本文对铂(Ⅱ)和(Ⅳ),金(Ⅰ)和(Ⅲ),钌(Ⅲ)和铑(Ⅱ)抗肿瘤化合物与血清白蛋白反应的研究进行了综述。通常,发现铂和金化合物与S-供体如蛋氨酸和白蛋白的Cys34残基反应,后者是血浆中最丰富的游离硫醇。钌和铑的络合物被认为主要通过与组氨酸残基的咪唑基团配位反应。

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