化学
活性氧
细胞凋亡
氧化应激
细胞毒性
抗坏血酸
癌细胞
活力测定
谷胱甘肽
流式细胞术
氧化还原
生物化学
生物物理学
癌症研究
癌症
体外
分子生物学
酶
生物
无机化学
食品科学
遗传学
作者
Daniela Ganci,Luisa D’Anna,Giulia Abruscato,Michael Chevalier,Océane Quideau,Salvatore Cataldo,Alberto Pettignano,Simona Rubino,Roberto Chiarelli,Giampaolo Barone,Claudio Luparello,Riccardo Bonsignore
标识
DOI:10.1016/j.jinorgbio.2025.112938
摘要
This study uncovers the potential of a copper(II) Schiff base complex, CuL2+, to access the Cu(I) oxidation state and generate reactive oxygen species (ROS), highlighting its significance in eventual therapeutic applications. UV-vis absorption spectroscopy was used to follow the redox stability of the metal complex, also in the presence of reducing agents, such as ascorbic acid and glutathione, and of the copper(I) chelator, bathocuproine disulfonate. Utilizing human tumor cell lines HepG2 (hepatocarcinoma cells), we assessed its efficacy in reducing cell viability, increasing the sub-G0/G1 cell fraction, and initiating apoptotic pathways. Cell viability assays demonstrated a dose-dependent cytotoxicity with pronounced effects at sub-micromolar concentrations. Flow cytometry revealed significant ROS production, followed by mitochondrial membrane potential dissipation, and caspase activation, underscoring CuL2+'s mechanism of action. These findings position CuL2+ as a promising candidate for cancer therapy, providing insights into copper complexes' therapeutic application through oxidative stress and apoptosis modulation.
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