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Foodomics study on the effects of extracellular production of hydrogen peroxide by rosemary polyphenols on the anti-proliferative activity of rosemary polyphenols against HT-29 cells

机译:迷迭香多酚细胞外产生过氧化氢对迷迭香多酚抗HT-29细胞增殖活性影响的食品组学研究

摘要

A number of studies have demonstrated a strong association between the antioxidant properties of rosemary polyphenols and their chemoprotective activity. However, the prooxidant effects of rosemary polyphenols have been rarely reported. In this work, a foodomics study is performed to investigate the in vitro autooxidation of carnosic acid (CA), carnosol (CS) and a polyphenol-enriched rosemary extract (SC-RE) in cell culture conditions. The results revealed that rosemary polyphenols autooxidation in culture medium generated H2O2 at different rates. Generated H2O2 levels by SC-RE and CA, but not CS, were correlated with intracellular reactive oxygen species (ROS) generation in HT-29 cells, and were partially involved in their anti-proliferative effect in this cell line. These compounds also induced different effects on glutathione metabolism. Results also indicated that high extracellular H2O2 concentrations, resulting of using high (45 μg/mL) SC-RE concentration in culture media, exerted some artifactual effects related with cell cycle, but they did not influence the expression of relevant molecular biomarkers of stress.
机译:大量研究表明,迷迭香多酚的抗氧化性能与其化学保护活性之间有很强的联系。然而,鲜有迷迭香多酚的抗氧化作用报道。在这项工作中,进行了一项食品组学研究,以研究细胞培养条件下肌酸(CA),肌醇(CS)和富含多酚的迷迭香提取物(SC-RE)的体外自氧化作用。结果表明,迷迭香多酚在培养基中的自氧化反应以不同的速率生成H2O2。 SC-RE和CA而不是CS产生的H2O2水平与HT-29细胞中的细胞内活性氧(ROS)产生相关,并且部分参与了它们在该细胞系中的抗增殖作用。这些化合物还对谷胱甘肽代谢诱导不同的作用。结果还表明,在培养基中使用高浓度(45μg/ mL)SC-RE所导致的高细胞外H2O2浓度,会产生一些与细胞周期有关的人为效应,但它们不会影响应激的相关分子生物标记物的表达。

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