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Biological properties of novel ruthenium- and osmium-nitrosyl complexes with azole heterocycles

机译:新型钌-,-亚硝酰基与吡咯杂环的生物性质

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摘要

Since the discovery that nitric oxide (NO) is a physiologically relevant molecule, there has been great interest in the use of metal nitrosyl compounds as antitumor pharmaceuticals. Particularly interesting are those complexes which can deliver NO to biological targets. Ruthenium- and osmium-based compounds offer lower toxicity compared to other metals and show different mechanisms of action as well as different spectra of activity compared to platinum-based drugs. Novel ruthenium- and osmium-nitrosyl complexes with azole heterocycles were studied to elucidate their cytotoxicity and possible interactions with DNA. Apoptosis induction, changes of mitochondrial transmembrane potential and possible formation of reactive oxygen species were investigated as indicators of NO-mediated damage by flow cytometry. Results suggest that ruthenium- and osmium-nitrosyl complexes with the general formula (indazolium)[cis/trans-MCl4(NO)(1H-indazole)] have pronounced cytotoxic potency in cancer cell lines. Especially the more potent ruthenium complexes strongly induce apoptosis associated with depolarization of mitochondrial membranes, and elevated reactive oxygen species levels. Furthermore, a slight yet not unequivocal trend to accumulation of intracellular cyclic guanosine monophosphate attributable to NO-mediated effects was observed.
机译:自从发现一氧化氮(NO)是一种与生理相关的分子以来,人们就非常关注使用金属亚硝酰基化合物作为抗肿瘤药物。可以将NO传递至生物靶标的那些复合物尤其令人感兴趣。与其他金属相比,基于钌和compounds的化合物毒性更低,并且与基于铂的药物相比,它们显示出不同的作用机理以及不同的活性谱。研究了具有唑杂环的新型钌和亚硝酰基配合物,以阐明它们的细胞毒性以及与DNA的可能相互作用。通过流式细胞仪研究凋亡诱导,线粒体跨膜电位的变化以及可能形成的活性氧作为NO介导的损伤的指标。结果表明,具有通式(吲唑鎓)[顺式/反式-MCl4(NO)(1H-吲唑)]的钌和-亚硝酰基复合物在癌细胞系中具有明显的细胞毒性。特别是更有效的钌络合物强烈诱导与线粒体膜去极化和升高的活性氧水平相关的凋亡。此外,观察到归因于NO介导的作用的细胞内环状鸟苷单磷酸积累的轻微但并非明确的趋势。

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