Institut Parisien de Chimie Moléculaire (IPCM), Sorbonne Université, CNRS, 4 place Jussieu, F-75005 Paris, France.
Dalton Trans. 2020 Dec 22;49(48):17635-17641. doi: 10.1039/d0dt03414b.
Transition metal-based anticancer compounds, as an alternative to platinum derivatives, are raising scientific interest as they may present distinct although poorly understood mechanisms of action. We used a structure-activity relationship-based methodology to investigate the chemical and biological features of a series of ten (C^N)-chelated half-sandwich iridiumIII complexes of the general formula [IrCp*(phox)Cl], where (phox) is a 2-phenyloxazoline ligand forming a 5-membered metallacycle. This series of compounds undergoes a fast exchange of their chlorido ligand once solubilised in DMSO. They were cytotoxic to HeLa cells with IC50 values in the micromolar range and induced a rapid activation of caspase-3, an apoptosis marker. In vitro, the oxidative power of all the complexes towards NADH was highlighted but only the complexes bearing substituents on the oxazoline ring were able to produce H2O2 at the micromolar range. However, we demonstrated using a powerful HyPer protein redox sensor-based flow cytometry assay that most complexes rapidly raised intracellular levels of H2O2. Hence, this study shows that oxidative stress can partly explain the cytotoxicity of these complexes on the HeLa cell line and gives a first entry to their mechanism of action.
基于过渡金属的抗癌化合物作为铂衍生物的替代品,正在引起科学界的兴趣,因为它们可能具有不同的、尽管了解甚少的作用机制。我们使用基于构效关系的方法研究了一系列十个(C^N)螯合半夹心铱 III 配合物的化学和生物学特性,这些配合物的通式为[IrCp*(phox)Cl],其中(phox)是形成五元金属环的 2-苯并恶唑啉配体。该系列化合物在 DMSO 中溶解后,其氯配体迅速发生交换。它们对 HeLa 细胞具有细胞毒性,IC50 值在微摩尔范围内,并迅速激活凋亡标志物 caspase-3。在体外,所有配合物对 NADH 的氧化能力都很突出,但只有带有恶唑啉环取代基的配合物才能在微摩尔范围内产生 H2O2。然而,我们使用基于强大的 HyPer 蛋白氧化还原传感器的流式细胞术测定证明,大多数配合物能迅速提高细胞内 H2O2 的水平。因此,本研究表明氧化应激可以部分解释这些配合物对 HeLa 细胞系的细胞毒性,并为它们的作用机制提供了初步解释。