Laboratory of Catalysis, MolSys Research Unit, Institut de Chimie Organique (B6a), Université de Liège, Allée du six Août 13, 4000 Liège, Belgium.
Unidade de Difracción de Raios X, RIAIDT, Universidade de Santiago de Compostela, Campus Vida, 15782 Santiago de Compostela, Spain.
Inorg Chem. 2021 Nov 1;60(21):16769-16781. doi: 10.1021/acs.inorgchem.1c02648. Epub 2021 Oct 20.
An efficient synthetic protocol was devised for the preparation of five cationic ruthenium-arene complexes bearing imidazol(in)ium-2-dithiocarboxylate ligands from the [RuCl(-cymene)] dimer and of an NHC·CS zwitterion. The reactions proceeded cleanly and swiftly in dichloromethane at room temperature to afford the expected [RuCl(-cymene)(SC·NHC)]Cl products in quantitative yields. When the [RuCl(-cymene)] dimer was reacted with only of a dithiolate betaine under the same experimental conditions, a set of five bimetallic compounds with the generic formula [RuCl(-cymene)(SC·NHC)][RuCl(-cymene)] was obtained in quantitative yields. These novel, dual anionic and cationic ruthenium-arene complexes were fully characterized by various analytical techniques. NMR titrations showed that the chelation of the dithiocarboxylate ligands to afford [RuCl(-cymene)(SC·NHC)] cations was quantitative and irreversible. Conversely, the formation of the [RuCl(-cymene)] anion was limited by an equilibrium, and this species readily dissociated into Cl anions and the [RuCl(-cymene)] dimer. The position of the equilibrium was strongly influenced by the nature of the solvent and was rather insensitive to the temperature. Two monometallic and two bimetallic complexes cocrystallized with water, and their molecular structures were solved by X-ray diffraction analysis. Crystallography revealed the existence of strong interactions between the azolium ring protons of the cationic complexes and neighboring donor groups from the anions or the solvent. The various compounds under investigation were highly soluble in water. They were all strongly cytotoxic against K562 cancer cells. Furthermore, with a selectivity index of 32.1, the [RuCl(-cymene)(SC·SIDip)]Cl complex remarkably targeted the erythroleukemic cells vs mouse splenocytes.
设计了一种有效的合成方案,用于从[RuCl(-cymene)]二聚体和 NHC·CS 两性离子出发制备 5 种带有咪唑啉(in)-2-二硫代羧酸酯配体的阳离子钌-芳基配合物。反应在室温下在二氯甲烷中迅速且干净地进行,以定量产率得到预期的[RuCl(-cymene)(SC·NHC)]Cl 产物。当[RuCl(-cymene)]二聚体仅与 1 当量的二硫代甜菜碱在相同的实验条件下反应时,以定量产率获得了一组具有通用式[RuCl(-cymene)(SC·NHC)][RuCl(-cymene)]的 5 种双金属化合物。这些新型的、双阴离子和阳离子的钌-芳基配合物通过各种分析技术得到了充分的表征。NMR 滴定表明,二硫代羧酸酯配体的螯合作用定量且不可逆地生成[RuCl(-cymene)(SC·NHC)]阳离子。相反,[RuCl(-cymene)]阴离子的形成受到平衡的限制,该物种容易分解为 Cl 阴离子和[RuCl(-cymene)]二聚体。平衡的位置强烈受溶剂性质的影响,而对温度不敏感。两个单核和两个双核配合物与水共结晶,它们的分子结构通过 X 射线衍射分析得到解决。晶体学揭示了阳离子配合物的唑环质子与阴离子或溶剂中相邻供体基团之间存在强相互作用。所研究的各种化合物在水中高度溶解。它们对 K562 癌细胞均具有强烈的细胞毒性。此外,[RuCl(-cymene)(SC·SIDip)]Cl 配合物对红细胞白血病细胞具有显著的靶向性,选择性指数为 32.1,对小鼠脾细胞的选择性指数为 32.1。