Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000 Ljubljana, Slovenia.
Chair of Pathologic Biochemistry, Exact School Sciences, National University of La Plata, 47 y 115, 1900 La Plata, Argentina; Inorganic Chemistry Center (CEQUINOR, CONICET), Exact School Sciences, National University of La Plata, 47 y 115, 1900 La Plata, Argentina.
J Inorg Biochem. 2018 Sep;186:187-196. doi: 10.1016/j.jinorgbio.2018.05.009. Epub 2018 May 19.
In this study we report the synthesis, characterization and a thorough biological evaluation of twelve organoruthenium-8-hydroxyquinolinato (Ru-hq) complexes. The chosen hqH ligands bear various halogen atoms in different positions which enables to study effect of the substituents on physico-chemical and biological properties. The determined crystal structures of novel complexes expectedly show the cymene ring, a bidentately coordinated deprotonated hq and a halide ligand (chlorido or iodido) coordinated to the ruthenium central ion. In previous studies the anticancer potential of organoruthenium complex with 8-hydroxyquinoline ligand clioquinol was well established and we have decided to perform an extended biological evaluation (antibacterial and antitumor activity) of the whole series of halo-substituted analogs. Beside the cytotoxic potential of studied compounds also the effect of two selected complexes (9 and 10) on apoptosis induction in MG-63 and A549 cells was also studied via externalization of phosphatidylserine at the outer plasma membrane leaflet. Both selected complexes that gave best preliminary cytotoxicity results contain bromo substituted hq ligands. Apoptosis induction results are in agreement with the cell viability assays suggesting the higher and more selective anticancer activity of complex 10 in comparison to complex 9 on MG-63 cells.
在这项研究中,我们报告了十二种有机钌-8-羟基喹啉(Ru-hq)配合物的合成、表征和全面的生物学评价。所选的 hqH 配体在不同位置带有各种卤素原子,这使得我们能够研究取代基对物理化学和生物学性质的影响。预期新配合物的确定晶体结构显示出枯茗环、双配位去质子化的 hq 和与钌中心离子配位的卤化物配体(氯或碘化物)。在以前的研究中,具有 8-羟基喹啉配体氯喹啉的有机钌配合物的抗癌潜力得到了很好的证实,我们决定对整个卤代取代物系列进行扩展的生物学评价(抗菌和抗肿瘤活性)。除了研究化合物的细胞毒性潜力外,我们还通过外膜小叶质膜外层磷脂酰丝氨酸的外化,研究了两种选定的配合物(9 和 10)对 MG-63 和 A549 细胞诱导凋亡的影响。这两种具有最佳初步细胞毒性结果的选定配合物都含有溴取代的 hq 配体。凋亡诱导结果与细胞活力测定结果一致,表明与 9 相比,10 对 MG-63 细胞具有更高和更具选择性的抗癌活性。