Department of Chemistry, University of Kentucky, 505 Rose St., Lexington, KY, 40506, USA.
Sci Rep. 2019 Aug 26;9(1):12335. doi: 10.1038/s41598-019-48584-5.
The reaction of gold reagents [HAuCl•3HO], [AuCl(tht)], or cyclometalated gold(III) precursor, [C^NAuCl] with chiral ((R,R)-(-)-2,3-bis(t-butylmethylphosphino) quinoxaline) and non-chiral phosphine (1,2-Bis(diphenylphosphino)ethane, dppe) ligands lead to distorted Au(I), (1, 2, 4, 5) and novel cyclometalated Au(III) complexes (3, 6). These gold compounds were characterized by multinuclear NMR, microanalysis, mass spectrometry, and X-ray crystallography. The inherent electrochemical properties of the gold complexes were also studied by cyclic voltammetry and theoretical insight of the complexes was gained by density functional theory and TD-DFT calculations. The complexes effectively kill cancer cells with IC in the range of ~0.10-2.53 μΜ across K562, H460, and OVCAR8 cell lines. In addition, the retinal pigment epithelial cell line, RPE-Neo was used as a healthy cell line for comparison. Differential cellular uptake in cancer cells was observed for the compounds by measuring the intracellular accumulation of gold using ICP-OES. Furthermore, the compounds trigger early - late stage apoptosis through potential disruption of redox homeostasis. Complexes 1 and 3 induce predominant G1 cell cycle arrest. Results presented in this report suggest that stable gold-phosphine complexes with variable oxidation states hold promise in anticancer drug discovery and need further development.
金试剂 [HAuCl•3HO]、[AuCl(tht)] 或环金属化金(III)前体 [C^NAuCl] 与手性 ((R,R)-(-)-2,3-双(叔丁基甲基膦基)喹喔啉) 和非手性膦配体 (1,2-双(二苯基膦基)乙烷,dppe) 反应,生成扭曲的 Au(I)、(1,2,4,5) 和新型环金属化 Au(III)配合物 (3,6)。这些金化合物通过多核 NMR、微量分析、质谱和 X 射线晶体学进行了表征。还通过循环伏安法研究了金配合物的固有电化学性质,并通过密度泛函理论和 TD-DFT 计算获得了配合物的理论见解。这些配合物有效地杀死了 K562、H460 和 OVCAR8 细胞系中 IC 范围在 0.10-2.53 μΜ 之间的癌细胞。此外,视网膜色素上皮细胞系 RPE-Neo 被用作对照的健康细胞系。通过使用 ICP-OES 测量细胞内金的积累,观察到化合物在癌细胞中的差异细胞摄取。此外,这些化合物通过潜在破坏氧化还原稳态引发早晚期细胞凋亡。化合物 1 和 3 诱导主要的 G1 细胞周期停滞。本报告中的结果表明,具有可变氧化态的稳定金-膦配合物在抗癌药物发现中具有潜力,需要进一步开发。