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.
Department of Chemistry and Chemical Engineering , Shandong Normal University , Jinan 250014 , China.
Inorg Chem. 2018 Sep 4;57(17):11087-11098. doi: 10.1021/acs.inorgchem.8b01656. Epub 2018 Aug 22.
We, herein, report the synthesis, characterization, luminescence properties, anticancer, and antibacterial activities of a family of novel half-sandwich iridium(III) complexes of the general formula [(η-Cp)Ir(C^N)Cl]PF [Cp = pentamethylcyclopentadienyl (Cp*) or tetramethyl(biphenyl)-cyclopentadienyl (Cp)] bearing versatile imine-N-heterocyclic carbene ligands. In this complex framework, substituents on four positions could be modulated, which distinguishes this class of complex and provides a large amount of flexibility and opportunity to tune the cytotoxicity of complexes. The X-ray crystal structures of complexes 4 and 10 exhibit the expected "piano-stool" geometry. With the exception of 1, 2, and 11, each complex shows potent cytotoxicity, with IC (half-maximum inhibitory concentration) values ranging from 1.99 to 25.86 μM toward A549 human lung cancer cells. First, the effect of four positions bearing different substituents in the complex framework on the anticancer activity, that is, structure-activity relationship, was systematically studied. Complex 8 (IC = 1.99 μM) displays the highest anticancer activities, whose cytotoxicity is more than 10-fold higher than that of the clinical platinum drug cisplatin against A549 cancer cells. Second, their chemical reactivity including nucleobases binding, catalytic activity in converting coenzyme NADH to NAD, reaction with glutathione (GSH), and bovine serum albumin (BSA) binding is investigated. No reaction with nucleobase is observed. However, these iridium(III) complexes bind rapidly to GSH and can catalyze oxidation of NADH to NAD. In addition, they show moderate binding affinity to BSA and the fluorescence quenching of BSA by the iridium (III) complexes is due to the static quenching. Third, the mode of cell death was also explored through flow cytometry experiments, including cell cycle, apoptosis induction, reactive oxygen species (ROS) and mitochondrial membrane potential. It seems that cell cycle perturbation, apoptosis induction, increase of ROS level and loss of mitochondrial membrane potential together contribute to the anticancer potency of these complexes. Last, the use of confocal microscopy provides insights into the microscopic mechanism that the typical and most active complex 8 enters A549 lung cancer cells mainly through energy-dependent pathway and is located in lysosome. Furthermore, lysosome damage and nuclear morphology were detected by confocal microscopy. Nuclear condensation and apoptotic bodies may finally induce cells apoptosis. Interestingly, complex 8 also shows antibacterial activity against Gram-positive Staphylococcus aureus. This work may provide an alternative and effective strategy to smart design of potent organometallic half-sandwich iridium(III) anticancer drugs.
我们在此报告了一系列新型半夹心铱(III)配合物的合成、表征、发光性质、抗癌和抗菌活性,这些配合物的通式为[(η-Cp)Ir(C^N)Cl]PF[Cp = 五甲基环戊二烯基(Cp*)或四甲基(联苯)-环戊二烯基(Cp)],配体为多功能亚胺-N-杂环卡宾。在这个配合物框架中,可以调节四个位置的取代基,这区分了这一类配合物,并提供了大量的灵活性和机会来调节配合物的细胞毒性。配合物 4 和 10 的 X 射线晶体结构呈现出预期的“钢琴凳”几何形状。除了 1、2 和 11 之外,每个配合物都表现出很强的细胞毒性,对 A549 人肺癌细胞的半最大抑制浓度(IC)值范围为 1.99 至 25.86 μM。首先,系统研究了配合物框架中四个位置上带有不同取代基对抗癌活性的影响,即构效关系。配合物 8(IC = 1.99 μM)表现出最高的抗癌活性,其细胞毒性比临床铂类药物顺铂对 A549 癌细胞的毒性高 10 倍以上。其次,研究了它们的化学反应活性,包括与核苷碱基的结合、将辅酶 NADH 转化为 NAD 的催化活性、与谷胱甘肽(GSH)的反应以及与牛血清白蛋白(BSA)的结合。没有观察到与核苷碱基的反应。然而,这些铱(III)配合物与 GSH 快速结合,并能催化 NADH 氧化为 NAD。此外,它们与 BSA 具有中等的结合亲和力,并且铱(III)配合物对 BSA 的荧光猝灭是由于静态猝灭。第三,通过流式细胞术实验还探索了细胞死亡的模式,包括细胞周期、凋亡诱导、活性氧(ROS)和线粒体膜电位。似乎细胞周期扰动、凋亡诱导、ROS 水平升高和线粒体膜电位丧失共同导致了这些配合物的抗癌效力。最后,利用共聚焦显微镜提供了一个微观机制的见解,即典型的和最有效的配合物 8 主要通过能量依赖途径进入 A549 肺癌细胞,并位于溶酶体中。此外,通过共聚焦显微镜检测到溶酶体损伤和核形态。核浓缩和凋亡小体可能最终诱导细胞凋亡。有趣的是,配合物 8 对革兰氏阳性金黄色葡萄球菌也表现出抗菌活性。这项工作可能为智能设计强效的有机金属半夹心铱(III)抗癌药物提供了一种替代和有效的策略。