Bertrand Benoît, Citta Anna, Franken Inge L, Picquet Michel, Folda Alessandra, Scalcon Valeria, Rigobello Maria Pia, Le Gendre Pierre, Casini Angela, Bodio Ewen
Institut de Chimie Moléculaire, UMR 6302 CNRS Université de Bourgogne Franche Comté, 9 Avenue A. Savary, 21078, Dijon, France.
J Biol Inorg Chem. 2015 Sep;20(6):1005-20. doi: 10.1007/s00775-015-1283-1. Epub 2015 Jul 23.
While N-heterocyclic carbenes (NHC) are ubiquitous ligands in catalysis for organic or industrial syntheses, their potential to form transition metal complexes for medicinal applications has still to be exploited. Within this frame, we synthesized new homo- and heterobimetallic complexes based on the Au(I)-NHC scaffold. The compounds were synthesized via a microwave-assisted method developed in our laboratories using Au(I)-NHC complexes carrying a pentafluorophenol ester moiety and another Au(I) phosphane complex or a bipyridine ligand bearing a pendant amine function. Thus, we developed two different methods to prepare homo- and heterobimetallic complexes (Au(I)/Au(I) or Au(I)/Cu(II), Au(I)/Ru(II), respectively). All the compounds were fully characterized by several spectroscopic techniques including far infrared, and were tested for their antiproliferative effects in a series of human cancer cells. They showed moderate anticancer properties. Their toxic effects were also studied ex vivo using the precision-cut tissue slices (PCTS) technique and initial results concerning their reactivity with the seleno-enzyme thioredoxin reductase were obtained.
虽然 N-杂环卡宾(NHC)在有机或工业合成催化中是普遍存在的配体,但其形成用于医学应用的过渡金属配合物的潜力仍有待开发。在此框架内,我们基于 Au(I)-NHC 支架合成了新的同核和异核双金属配合物。这些化合物是通过我们实验室开发的微波辅助方法合成的,该方法使用带有五氟苯酚酯部分的 Au(I)-NHC 配合物和另一种 Au(I) 膦配合物或带有侧链胺功能的联吡啶配体。因此,我们开发了两种不同的方法来制备同核和异核双金属配合物(分别为 Au(I)/Au(I) 或 Au(I)/Cu(II)、Au(I)/Ru(II))。所有化合物都通过包括远红外在内的几种光谱技术进行了全面表征,并在一系列人类癌细胞中测试了它们的抗增殖作用。它们显示出中等的抗癌特性。还使用精密切割组织切片(PCTS)技术在体外研究了它们的毒性作用,并获得了有关它们与硒酶硫氧还蛋白还原酶反应性的初步结果。