LCC-CNRS, Université de Toulouse, CNRS, UPS, Toulouse, France.
Institut de Pharmacologie et de Biologie Structurale, Université de Toulouse, CNRS, UPS, Toulouse, France.
ChemMedChem. 2018 Jun 20;13(12):1218-1229. doi: 10.1002/cmdc.201800181. Epub 2018 May 23.
A structurally diverse library of 14 gold(I) cationic bis(NHC) and neutral mono(NHC) complexes (NHC: N-heterocyclic carbene) was synthesized and characterized in this work. Four of them were new cationic gold(I) complexes containing functionalized NHCs, and their X-ray crystal structures are presented herein. All of the complexes were investigated for their anticancer activities in four cancer cell lines, including a cisplatin-resistant variant, and a noncancerous cell line. Seven of the cationic gold(I) complexes were found to display high and specific cytotoxic activities toward cancer cells. Two of them were even able to overcome cisplatin resistance. Two highly potent cationic complexes (11 and 15) were also submitted to the NCI-60 cancer panel for further cytotoxicity evaluation. Complex 15 showed a surprisingly high potency toward leukemia among the nine examined cancer subtypes, particularly toward the CCRF-CEM leukemia cell line with a concentration for 50 % inhibition of growth down to 79.4 nm. In addition, cationic complex 13, which demonstrated a remarkable cytotoxicity against hepatocellular carcinoma, was selected to obtain insight into the mechanistic aspects in HepG2 cells. Cellular uptake measurements were indicative of good bioavailability. By various biochemical assays, this complex was found to effectively inhibit thioredoxin reductase and its cytotoxicity toward HepG2 cells was found to be reactive oxygen species dependent.
在这项工作中,合成并表征了一个结构多样的 14 个金(I)阳离子双(NHC)和中性单(NHC)配合物(NHC:N-杂环卡宾)库。其中四个是含有功能化 NHC 的新型阳离子金(I)配合物,其 X 射线晶体结构在此呈现。所有配合物均在四种癌细胞系(包括顺铂耐药变体和非癌细胞系)中进行了抗癌活性研究。七种阳离子金(I)配合物被发现对癌细胞具有高且特异性的细胞毒性活性。其中两种甚至能够克服顺铂耐药性。两种高活性的阳离子配合物(11 和 15)也提交给了 NCI-60 癌症面板进行进一步的细胞毒性评估。配合物 15 对所检查的九种癌症亚型中的白血病表现出惊人的高活性,特别是对 CCRF-CEM 白血病细胞系,其生长抑制浓度低至 79.4 nm。此外,对肝癌显示出显著细胞毒性的阳离子配合物 13 被选择用于深入了解 HepG2 细胞中的机制方面。细胞摄取测量表明其具有良好的生物利用度。通过各种生化测定,发现该配合物能够有效抑制硫氧还蛋白还原酶,其对 HepG2 细胞的细胞毒性依赖于活性氧。