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Antioxidant and Pro-Oxidant Activities of Melatonin in the Presence of Copper and Polyphenols In Vitro and In Vivo

机译:在铜和多酚存在下体内和体外褪黑激素的抗氧化和促氧化剂活性

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摘要

Melatonin is a well-documented antioxidant. Physicochemical analysis using the density functional theory suggests that melatonin is a copper chelating agent; however, experimental evidence is still in demand. The present study investigated the influence of melatonin on reactive oxygen species (ROS) generated from polyphenol autoxidation in the presence of copper. Surprisingly, we found that melatonin paradoxically enhanced ROS formation in a redox system containing low concentrations of copper and quercetin (Que) or (−)-epigallocatechin-3-gallate (EGCG), due to reduction of cupric to cuprous ion by melatonin. Addition of DNA to this system inhibited ROS production, because DNA bound to copper and inhibited copper reduction by melatonin. When melatonin was added to a system containing high concentrations of copper and Que or EGCG, it diminished hydroxyl radical formation as expected. Upon addition of DNA to high concentrations of copper and Que, this pro-oxidative system generated ROS and caused DNA damage. The DNA damage was not prevented by typical scavengers of hydroxyl radical DMSO or mannitol. Under these conditions, melatonin or bathocuproine disulfonate (a copper chelator) protected the DNA from damage by chelating copper. When melatonin was administered intraperitoneally to mice, it inhibited hepatotoxicity and DNA damage evoked by EGCG plus diethyldithiocarbamate (a copper ionophore). Overall, the present study demonstrates the pro-oxidant and antioxidant activities of melatonin in the redox system of copper and polyphenols. The pro-oxidant effect is inhibited by the presence of DNA, which prevents copper reduction by melatonin. Interestingly, in-vivo melatonin protects against copper/polyphenol-induced DNA damage probably via acting as a copper-chelating agent rather than a hydroxyl radical scavenger. Melatonin with a dual function of scavenging hydroxyl radical and chelating copper is a more reliable DNA guardian than antioxidants that only have a single function of scavenging hydroxyl radical.
机译:褪黑激素是有据可查的抗氧化剂。使用密度泛函理论的理化分析表明,褪黑激素是一种铜螯合剂。但是,仍需要实验证据。本研究调查了褪黑素对铜存在下多酚自氧化产生的活性氧(ROS)的影响。令人惊讶地,我们发现,由于褪黑激素将铜还原为亚铜离子,褪黑素在含低浓度铜和槲皮素(Que)或(-)-表没食子儿茶素-3-没食子酸酯(EGCG)的氧化还原系统中反常增强了ROS的形成。向该系统中添加DNA会抑制ROS的产生,因为DNA与铜结合并抑制了褪黑激素对铜的还原作用。将褪黑激素添加到含有高浓度铜和Que或EGCG的系统中时,可以减少羟基自由基的形成。将DNA添加到高浓度的铜和Que中后,这种促氧化系统产生ROS,并造成DNA损伤。通过典型的羟基自由基DMSO或甘露醇清除剂不能防止DNA损伤。在这些条件下,褪黑素或二氢铜磷铜盐(铜螯合剂)可通过螯合铜来保护DNA免受损害。当给小鼠腹膜内施用褪黑激素时,它抑制了由EGCG加二乙基二硫代氨基甲酸酯(一种铜离子载体)引起的肝毒性和DNA损伤。总体而言,本研究表明褪黑激素在铜和多酚的氧化还原系统中的促氧化和抗氧化活性。 DNA的存在抑制了前氧化作用,从而阻止了褪黑激素使铜还原。有趣的是,体内褪黑激素可能通过充当铜螯合剂而不是羟基自由基清除剂来防止铜/多酚诱导的DNA损伤。与仅具有清除羟基自由基功能的抗氧化剂相比,具有清除羟基自由基和螯合铜的双重功能的褪黑素是更可靠的DNA保护剂。

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