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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Exploring the potential of gold(III) cyclometallated compounds as cytotoxic agents: variations on the (CN)-N-boolean AND theme
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Exploring the potential of gold(III) cyclometallated compounds as cytotoxic agents: variations on the (CN)-N-boolean AND theme

机译:探索金(III)环金属化化合物作为细胞毒剂的潜力:(CN)-N-布尔AND主题的变异

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摘要

A series of novel ((CN)-N-boolean AND) cyclometallated Au(III) complexes of general formula [Au(py(b)-H)(LL2)-L-1](n+) (py(b)-H = (CN)-N-boolean AND cyclometallated 2-benzylpyridine, L-1 and L-2 being chlorido, phosphane or glucosethiolato ligands, n = 0 or 1) have been synthesized and fully characterized using different techniques, including NMR, IR and far-IR, mass spectrometry, as well as elemental analysis. The crystal structure of one compound has been solved using X-ray diffraction methods. All compounds were tested in vitro in five human cancer cell lines including the lung, breast, colon and ovarian cancer cells. For comparison purposes, all compounds were also tested in a model of healthy human cells from the embryonic kidney. Notably, all new compounds were more toxic than their cyclometallated precursor bearing two chlorido ligands, and the derivative bearing one phosphane ligand presented the most promising toxicity profile in our in vitro screening, displaying a p53 dependent activity in colorectal cancer HCT116 cells. Finally, for the first time (CN)-N-boolean AND cyclometallated gold(III) complexes were shown to be potent inhibitors of the zinc finger protein PARP-1, involved in the mechanism of cisplatin resistance.
机译:一系列通式为[Au(py(b)-H)(LL2)-L-1](n +)(py(b)-的新型((CN)-N-布尔AND)环金属化Au(III)配合物H =(CN)-N-布尔和环金属化的2-苄基吡啶,L-1和L-2为氯代,膦或葡萄糖硫基配体,n = 0或1)已合成,并使用包括NMR,IR在内的不同技术进行了充分表征以及远红外,质谱和元素分析。一种化合物的晶体结构已使用X射线衍射法解析。所有化合物均在包括肺癌,乳腺癌,结肠癌和卵巢癌细胞在内的五种人类癌细胞系中进行了体外测试。为了比较,还对来自胚胎肾脏的健康人类细胞模型中的所有化合物进行了测试。值得注意的是,所有新化合物的毒性都比其带有两个氯代配体的环金属化前体更具毒性,并且带有一个膦配体的衍生物在我们的体外筛选中显示出最有希望的毒性,在结肠直肠癌HCT116细胞中显示出p53依赖性活性。最后,首次显示(CN)-N-布尔和环金属化的金(III)配合物是锌指蛋白PARP-1的有效抑制剂,参与了顺铂耐药性机制。

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