Department für Chemie und Biochemie, Universität Bern, Berne, Switzerland.
J Biol Inorg Chem. 2012 Aug;17(6):951-60. doi: 10.1007/s00775-012-0911-2. Epub 2012 Jun 16.
A series of cationic dinuclear p-cymene ruthenium trithiophenolato complexes of the type (η(6)-p-MeC(6)H(4)Pr(i))(2)Ru(2)(SC(6)H(4)-p-X)(3) (1 X is H, 2 X is Me, 3 X is Ph, 4 X is Br, 5 X is OH, 6 X is NO(2), 7 X is OMe, 8 X is CF(3), 9 X is F, 10 X is Pr(i), 11 X is Bu(t)) have been synthesized from the reaction of (η(6)-p-MeC(6)H(4)Pr(i))RuCl(2) with the corresponding thiol, isolated as the chloride salts, and further studied for their electrochemical properties, cytotoxicity towards human ovarian cancer cells, and catalytic activity for glutathione (GSH) oxidation. Complex 1 was also compared with the benzene and hexamethylbenzene analogues (η(6)-C(6)H(6))(2)Ru(2)(SC(6)H(5))(3) (12) and (η(6)-C(6)Me(6))(2)Ru(2)(SC(6)H(5))(3) (13). The most active compound [11]Cl was structurally studied by single-crystal X-ray diffraction analysis. The concentrations corresponding to 50 % inhibition of cancer cell growth (IC(50) values) in the A2780 and A2780cisR cell lines of these complexes except for 6 were in the submicromolar range, complex 11 showing an IC(50) value of 0.03 µM in both cell lines. The high in vitro anticancer activity of these complexes may be at least partially due to their catalytic potential for the oxidation of GSH, although there is no clear correlation between the IC(50) values and the turnover frequencies at about 50 % conversion. However, the cytotoxicity is tentatively correlated to the physicochemical properties of the compounds determined by the electronic influence of the substituents X (Hammett constants σ(p)) and the lipophilicity of the thiols p-XC(6)H(4)SH (calculated log P parameters).
一系列的阳离子二核 p-环戊二烯钌三噻吩酚配合物的类型 (η(6)-p-MeC(6)H(4)Pr(i))(2)Ru(2)(SC(6)H(4)-p-X)(3) (1 X 是 H, 2 X 是 Me, 3 X 是 Ph, 4 X 是 Br, 5 X 是 OH, 6 X 是 NO(2), 7 X 是 OMe, 8 X 是 CF(3), 9 X 是 F, 10 X 是 Pr(i), 11 X 是 Bu(t)) 已经从 (η(6)-p-MeC(6)H(4)Pr(i))RuCl(2) 与相应的硫醇的反应中合成,作为氯化物盐分离,并进一步研究它们的电化学性质、对人卵巢癌细胞的细胞毒性和对谷胱甘肽 (GSH) 氧化的催化活性。配合物 1 还与苯和六甲基苯类似物 (η(6)-C(6)H(6))(2)Ru(2)(SC(6)H(5))(3) (12) 和 (η(6)-C(6)Me(6))(2)Ru(2)(SC(6)H(5))(3) (13) 进行了比较。最活跃的化合物 [11]Cl 通过单晶 X 射线衍射分析进行了结构研究。除了 6 之外,这些配合物在 A2780 和 A2780cisR 细胞系中对应于 50%癌细胞生长抑制的浓度 (IC(50) 值) 在亚微摩尔范围内,化合物 11 在两个细胞系中的 IC(50) 值为 0.03 µM。这些配合物的高体外抗癌活性至少部分可能是由于它们对 GSH 氧化的催化潜力,尽管在大约 50%转化率时,IC(50) 值和转换频率之间没有明显的相关性。然而,细胞毒性与由取代基 X(哈米特常数 σ(p))的电子影响和 p-XC(6)H(4)SH 的亲脂性 (计算的 log P 参数) 确定的化合物的物理化学性质之间存在暂定相关性。