Iron Metabolism and Chelation Program, Department of Pathology and Bosch Institute, University of Sydney, Sydney, New South Wales 2006, Australia.
J Med Chem. 2012 Aug 23;55(16):7230-44. doi: 10.1021/jm300768u. Epub 2012 Aug 3.
We developed a series of second-generation di-2-pyridyl ketone thiosemicarbazone (DpT) and 2-benzoylpyridine thiosemicarbazone (BpT) ligands to improve the efficacy and safety profile of these potential antitumor agents. Two novel DpT analogues, Dp4e4mT and DpC, exhibited pronounced and selective activity against human lung cancer xenografts in vivo via the intravenous and oral routes. Importantly, these analogues did not induce the cardiotoxicity observed at high nonoptimal doses of the first-generation DpT analogue, Dp44mT. The Cu(II) complexes of these ligands exhibited potent antiproliferative activity having redox potentials in a range accessible to biological reductants. The activity of the copper complexes of Dp4e4mT and DpC against lung cancer cells was synergistic in combination with gemcitabine or cisplatin. It was demonstrated by EPR spectroscopy that dimeric copper compounds of the type CuLCl, identified crystallographically, dissociate in solution to give monomeric 1:1 Cu:ligand complexes. These monomers represent the biologically active form of the complex.
我们开发了一系列第二代二吡啶酮缩硫代氨基脲(DpT)和 2-苯甲酰基吡啶缩硫代氨基脲(BpT)配体,以提高这些潜在抗肿瘤药物的疗效和安全性。两种新型 DpT 类似物 Dp4e4mT 和 DpC 通过静脉和口服途径在体内对人肺癌异种移植物表现出明显和选择性的活性。重要的是,这些类似物不会诱导第一代 DpT 类似物 Dp44mT 在高非最佳剂量下观察到的心脏毒性。这些配体的 Cu(II) 配合物表现出很强的增殖抑制活性,其氧化还原电位在生物还原剂可达到的范围内。Dp4e4mT 和 DpC 的铜配合物对肺癌细胞的活性与吉西他滨或顺铂联合具有协同作用。通过 EPR 光谱证明,通过晶体学鉴定的CuLCl类型的二聚铜化合物在溶液中解离,生成单体 1:1 Cu:配体配合物。这些单体代表了该配合物的生物活性形式。