Department of Chemistry, University of Isfahan, Isfahan 81746-73441, Iran.
Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Viale Ferdinando Stagno D'Alcontres 31, I-98166 Messina, Italy.
Dalton Trans. 2019 Nov 14;48(42):15869-15887. doi: 10.1039/c9dt02353d. Epub 2019 Oct 16.
Four Ru-Pd heterobimetallic complexes, each one in two different coordination modes (NNSS and NS) having metals connected by a binucleating dialkyldithiooxamidate [N(R)SC-CS(R)N] [R = methyl, ethyl, n-butyl and isopropyl], were prepared by reacting the monochelate [(tripropyl-phosphine)ClPd(HRCNSκ-S,S-Pd)] with [(η-p-cymene)RuCl]. Furthermore, two palladium homobimetallic complexes having two (tripropyl-phosphine)ClPd moieties joined by a diethyldithiooxamidate in both κ-N,S Pd, κ-N',S' Pd' and κ-N,N' Pd, κ-S,S' Pd' coordination modes were synthesized. For both kinds of complexes, homo- and heterobimetallic, at room temperature and in chloroform solution, the NNSS coordination mode (kinetic compounds) turns out to be unstable and therefore the resulting complexes rearrange into a thermodynamically more stable form (NS coordination mode). The crystal structures of [(tripropyl-phosphine)ClPd][μ-(ethyl)-DTO κ-N,S Pd, κ-N',S' Pd'] (2) and [(η-p-cymene)ClRu][μ-(methyl)-DTO κ-N,S Ru, κ-N,S Pd] [(tripropyl-phosphine)ClPd] (1c) were determined by solid state X-ray crystallography. Moreover, the higher stability of the thermodynamic species in the heterobimetallic complexes (Ru-Pd) was evaluated by means of computational studies in accordance with the maximum hardness principle. All stable NS complexes (i.e.1c-4c, 2 and the previously reported homobimetallic Ru complex 3) were tested against two leukemia cell lines, namely the drug-sensitive CCRF-CEM cell line and its multidrug-resistant sub-cell line CEM/ADR5000 showing anti-proliferative activity in the low micromolar range (∼1-5 μM) and micromolar range (∼10-25 μM), respectively. In addition, these complexes efficaciously block at least two out of the three proteolytic activities of the tumor target 20S proteasome, with heterobimetallic complex 3c and homobimetallic complex 3 possessing the best inhibitory profile.
四种 Ru-Pd 杂核双金属配合物,每个配合物具有两种不同的配位模式(NNSS 和 NS),金属通过双核二硫代氧酰胺[NRSC-CSRN]连接[N(R)SC-CS(R)N] [R = 甲基、乙基、正丁基和异丙基],通过反应单螯合 [(三丙基膦)ClPd(HRCNSκ-S,S-Pd)]与[(η-p-环戊二烯基)RuCl]制备。此外,还合成了两种钯同核双金属配合物,它们通过二乙二硫代氧酰胺在κ-N,S Pd、κ-N',S' Pd'和κ-N,N' Pd、κ-S,S' Pd'配位模式下连接两个(三丙基膦)ClPd 部分。对于这两种配合物,同核和杂核,在室温下和氯仿溶液中,NNSS 配位模式(动力学化合物)不稳定,因此生成的配合物会重新排列成热力学上更稳定的形式(NS 配位模式)。[(三丙基膦)ClPd][μ-(乙基)-DTO κ-N,S Pd、κ-N',S' Pd'](2)和[(η-p-环戊二烯基)ClRu][μ-(甲基)-DTO κ-N,S Ru、κ-N,S Pd] [(三丙基膦)ClPd](1c)的晶体结构通过固态 X 射线晶体学确定。此外,通过根据最大硬度原理进行的计算研究,评估了杂核双金属配合物(Ru-Pd)中热力学物种的更高稳定性。所有稳定的 NS 配合物(即 1c-4c、2 和之前报道的同核 Ru 配合物 3)均针对两种白血病细胞系(即药物敏感的 CCRF-CEM 细胞系及其多药耐药亚系 CEM/ADR5000)进行了测试,显示出低微摩尔范围(约 1-5 μM)和微摩尔范围(约 10-25 μM)的抗增殖活性。此外,这些配合物有效地阻断了肿瘤靶标 20S 蛋白酶体的三种蛋白水解活性中的至少两种,其中杂核双金属配合物 3c 和同核双金属配合物 3 具有最佳的抑制谱。