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半夹心型铱氮杂环卡宾抗癌配合物

Half-sandwich iridium N-heterocyclic carbene anticancer complexes.

作者信息

Wang Chuanlan, Liu Jinfeng, Tian Zhenzhen, Tian Meng, Tian Laijin, Zhao Wenqian, Liu Zhe

机构信息

Institute of Anticancer Agents Development and Theranostic Application, The Key Laboratory of Life-Organic Analysis and Key Laboratory of Pharmaceutical Intermediates and Analysis of Natural Medicine, Department of Chemistry and Chemical Engineering, Qufu Normal University, Qufu 273165, China.

出版信息

Dalton Trans. 2017 May 30;46(21):6870-6883. doi: 10.1039/c7dt00575j.

Abstract

Half-sandwich pseudo-octahedral pentamethylcyclopentadienyl Ir complexes of the type [(η-Cp)Ir(C^C)Cl]PF, where Cp is pentamethylcyclopentadienyl (Cp*), or its phenyl (Cp = CMeCH) or biphenyl (Cp = CMeCHCH) derivatives, and the C^C-chelating ligands are different N-heterocyclic carbene (NHC) ligands, have been synthesized and characterized. Three X-ray crystal structures have been determined. Except for Cp* complex 1A, the other eleven complexes 1B-4C all showed potent cytotoxicity, with IC values ranging from 2.9 to 46.3 μM toward HeLa human cervical cancer cells. The potency toward HeLa cells increased with additional phenyl substitution on Cp*: Cp > Cp > Cp*, and increased with the size of chain substitution on the C^C-ligand in the order: ph > butyl > ethyl > methyl. Complex [(η-CMeCHCH)Ir(L4)Cl]PF (4C) displayed the highest potency, and was about 3 times more active than the clinical platinum drug cisplatin. Complexes 1A-4C all undergo hydrolysis and their kinetics was studied. DNA binding appears not to be the major mechanism of action. The ability of these iridium complexes to catalyze hydride transfer from the coenzyme NADH to NAD was studied. Complexes [(η-CMeCHCH)Ir(L2)Cl]PF (2C) and [(η-CMeCHCH)Ir(L3)Cl]PF (3C) cause cell apoptosis and arrest the cell cycle at the G phase and G/M phase when HeLa cancer cells are treated with different IC concentrations of the complexes, and increase the amount of reactive oxygen species (ROS) dramatically, which appears to contribute to the anticancer activity. This class of organometallic Ir complexes has unusual features worthy of further exploration in the design of novel anticancer drugs.

摘要

已合成并表征了[(η-Cp)Ir(C^C)Cl]PF类型的半夹心伪八面体五甲基环戊二烯基铱配合物,其中Cp为五甲基环戊二烯基(Cp*)、其苯基(Cp = CMeCH)或联苯基(Cp = CMeCHCH)衍生物,且C^C螯合配体为不同的N-杂环卡宾(NHC)配体。已测定了三种X射线晶体结构。除Cp配合物1A外,其他十一种配合物1B - 4C均显示出强大的细胞毒性,对HeLa人宫颈癌细胞的IC值范围为2.9至46.3 μM。对HeLa细胞的活性随着Cp上额外的苯基取代而增加:Cp > Cp > Cp*,并且随着C^C配体上链取代的大小按以下顺序增加:苯基 > 丁基 > 乙基 > 甲基。配合物[(η-CMeCHCH)Ir(L4)Cl]PF(4C)表现出最高活性,其活性约为临床铂类药物顺铂的3倍。配合物1A - 4C均会发生水解,并对其动力学进行了研究。DNA结合似乎不是主要作用机制。研究了这些铱配合物催化辅酶NADH向NAD转移氢化物的能力。当用不同IC浓度的配合物处理HeLa癌细胞时,配合物[(η-CMeCHCH)Ir(L2)Cl]PF(2C)和[(η-CMeCHCH)Ir(L3)Cl]PF(3C)会导致细胞凋亡并使细胞周期停滞在G期和G/M期,并且显著增加活性氧(ROS)的量,这似乎有助于抗癌活性。这类有机金属铱配合物具有不寻常的特征,值得在新型抗癌药物设计中进一步探索。

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