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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >3-Hydroxyflavones vs. 3-hydroxyquinolinones: structure–activity relationships and stability studies on RuII(arene) anticancer complexes with biologically active ligands?
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3-Hydroxyflavones vs. 3-hydroxyquinolinones: structure–activity relationships and stability studies on RuII(arene) anticancer complexes with biologically active ligands?

机译:3-羟基黄酮与3-羟基喹啉酮:具有生物活性配体的RuII(芳烃)抗癌复合物的结构-活性关系和稳定性研究?

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Ru~(II)(η~6-arene) complexes, especially with bioactive ligands, are considered to be very promising compounds for anticancer drug design. We have shown recently that Ru~(II)(η~6-p-cymene) complexes with 3-hydroxyflavone ligands exhibit very high in vitro cytotoxic activities correlating with a strong inhibition of topoisomerase IIα. In order to expand our knowledge about the structure–activity relationships and to determine the impact of lipophilicity of the arene ligand and of the hydrolysis rate on anticancer activity, a series of novel 3-hydroxyflavone derived Ru~(II)(η~6-arene) complexes were synthesised. Furthermore, the impact of the heteroatom in the bioactive ligand backbone was studied by comparing the cytotoxic activity of Ru~(II)(η~6-p-cymene) complexes of 3-hydroxyquinolinone ligands with that of their 3-hydroxyflavone analogues. To better understand the behaviour of these Ru~(II) complexes in aqueous solution, the stability constants and pK_a values for complexes and the corresponding ligands were determined. Furthermore, the interaction with the DNA model 5’-GMP and with a series of amino acids was studied in order to identify potential biological target structures.
机译:Ru-(II)(η-6-芳烃)配合物,特别是具有生物活性配体的配合物,被认为是用于抗癌药物设计的非常有前途的化合物。我们最近显示,具有3-羟基黄酮配体的Ru(II)(η-6-对-cymene)复合物表现出非常高的体外细胞毒性活性,与拓扑异构酶IIα的强烈抑制有关。为了扩展我们对结构-活性关系的了解,并确定芳烃配体的亲脂性和水解速率对抗癌活性的影响,一系列新的3-羟基黄酮衍生的Ru〜(II)(η〜6-)合成)。此外,通过比较3-羟基喹啉酮配体的Ru〜(II)(η〜6-p-cymene)配合物与其3-羟基黄酮类似物的细胞毒性,研究了杂原子对生物活性配体骨架的影响。为了更好地理解这些Ru〜(II)配合物在水溶液中的行为,确定了配合物和相应配体的稳定性常数和pK_a值。此外,还研究了与5'-GMP DNA模型以及一系列氨基酸的相互作用,以鉴定潜在的生物学靶标结构。

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