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Antioxidant Activity Evaluation of Dietary Flavonoid Hyperoside Using Saccharomyces Cerevisiae as a Model

机译:以酿酒酵母为模型评价膳食类黄酮类抗氧化剂的抗氧化活性

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摘要

Oxidative stress leads to various diseases, including diabetes, cardiovascular diseases, neurodegenerative diseases, and even cancer. The dietary flavonol glycoside, hyperoside (quercetin-3-O-galactoside), exerts health benefits by preventing oxidative damage. To further understand its antioxidative defence mechanisms, we systemically investigated the regulation of hyperoside on oxidative damage induced by hydrogen peroxide, carbon tetrachloride, and cadmium in Saccharomyces cerevisiae. Hyperoside significantly increased cell viability, decreased lipid peroxidation, and lowered intracellular reactive oxygen species (ROS) levels in the wild-type strain (WT) and mutants gtt1∆ and gtt2∆. However, the strain with ctt1∆ showed variable cell viability and intracellular ROS-scavenging ability in response to the hyperoside treatment upon the stimulation of H2O2 and CCl4. In addition, hyperoside did not confer viability tolerance or intercellular ROS in CdSO4-induced stress to strains of sod1∆ and gsh1∆. The results suggest that the antioxidative reactions of hyperoside in S. cerevisiae depend on the intercellular ROS detoxification system.
机译:氧化应激会导致多种疾病,包括糖尿病,心血管疾病,神经退行性疾病,甚至癌症。饮食中的黄酮醇糖苷,高糖苷(槲皮素-3-O-半乳糖苷)通过防止氧化损伤发挥健康作用。为了进一步了解其抗氧化防御机制,我们系统地研究了高糖苷对酿酒酵母中过氧化氢,四氯化碳和镉诱导的氧化损伤的调节作用。金丝桃苷显着提高了野生型菌株(WT)和突变体gtt1∆和gtt2∆中的细胞活力,降低了脂质过氧化作用,并降低了细胞内活性氧(ROS)水平。然而,在刺激H2O2和CCl4后,高丝糖苷处理后,具有ctt1Δ的菌株表现出可变的细胞活力和细胞内ROS清除能力。此外,在CdSO4诱导的应力下,高丝皂苷并没有赋予sod1∆和gsh1∆菌株以活力耐受性或细胞间ROS。结果表明,酿酒酵母中高丝苷的抗氧化反应取决于细胞间ROS解毒系统。

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