Department of Chemistry, Faculty of Natural Sciences, Constantine The Philosopher University in Nitra, 949 74, Nitra, Slovakia.
Faculty of Chemical and Food Technology, Slovak University of Technology in Bratislava, 812 37 Bratislava, Slovakia.
J Inorg Biochem. 2022 Jan;226:111635. doi: 10.1016/j.jinorgbio.2021.111635. Epub 2021 Oct 22.
Luteolin has been reviewed as a flavonoid possessing potential cardioprotective, anti-inflammatory, anti-cancer activities. Having multiple biological effects, luteolin may act as either an antioxidant or a pro-oxidant. In this work, the protective role of copper(II)-chelation by luteolin on DNA damage via the Cu-Fenton reaction was studied. EPR and UV-vis spectroscopic data demonstrated that the luteolin, lacking 3-OH group, chelates to Cu(II) via the 5-OH and 4-CO groups, respectively. EPR spin trapping experiments using DMPO spin trap confirmed that the coordination of luteolin to Cu(II) significantly suppressed formation of hydroxyl and superoxide radicals (by 80%) in a Cu-Fenton system. Absorption titrations showed that the chelation of Cu(II) by luteolin slightly increased the mild intercalation strength of its interaction with DNA, as compared with free luteolin. Comparison with kaempferol and quercetin revealed, that the strength of the interaction between the free flavonoids/Cu-flavonoid complexes with DNA is only mildly affected by the presence/absence of 3-OH group. Due to the differences in the sensitivities of absorption titrations and viscometry, the latter confirmed weaker DNA intercalating efficiency of Cu-luteolin complex than does free luteolin. A dose dependent protective effect of luteolin against ROS-induced DNA damage was observed using gel electrophoresis. This effect was more pronounced compared to quercetin and kaempferol. In conclusion, the administration of luteolin to patients suffering from oxidative stress-related diseases with disturbed Cu-metabolism such as Alzheimer's diseases (antioxidant effect) and certain cancers (prooxidant effect) may have several health benefits.
木樨草素被认为是一种具有潜在心脏保护、抗炎、抗癌作用的类黄酮。木樨草素具有多种生物学效应,既可以作为抗氧化剂,也可以作为促氧化剂。在这项工作中,研究了木樨草素通过 Cu-Fenton 反应螯合铜(II)对 DNA 损伤的保护作用。EPR 和 UV-vis 光谱数据表明,缺乏 3-OH 基团的木樨草素分别通过 5-OH 和 4-CO 基团螯合 Cu(II)。使用 DMPO 自旋捕获剂的 EPR 自旋捕获实验证实,木樨草素与 Cu(II)的配位在 Cu-Fenton 体系中显著抑制了羟基和超氧自由基的形成(80%)。吸收滴定表明,与游离木樨草素相比,木樨草素与 Cu(II)的螯合略微增加了其与 DNA 相互作用的温和嵌入强度。与山奈酚和槲皮素的比较表明,游离黄酮/Cu-黄酮复合物与 DNA 的相互作用强度仅受 3-OH 基团的存在/不存在的轻微影响。由于吸收滴定和粘度测定的灵敏度不同,后者证实了 Cu-木樨草素复合物比游离木樨草素具有较弱的 DNA 嵌入效率。使用凝胶电泳观察到木樨草素对 ROS 诱导的 DNA 损伤的剂量依赖性保护作用。与山奈酚和槲皮素相比,这种作用更为明显。总之,对于患有与铜代谢紊乱相关的氧化应激相关疾病(如阿尔茨海默病(抗氧化作用)和某些癌症(促氧化作用))的患者,给予木樨草素可能会带来一些健康益处。