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Short- and long-term exposure to low levels of pesticide and flavonoid mixtures modify endogenous antioxidants in tissues of rats

机译:短期和长期接触低含量的农药和类黄酮混合物会改变大鼠组织中的内源性抗氧化剂

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The objective of this study was to determine if interaction between phytochemical mixtures and low level exposure to pesticides would modify tissue endogenous antioxidants in rats. Two experiments were conducted using dietary flavonoid (F) and oral pesticide (P) mixtures (FM, PM) on changes in the activities of superoxide dismutase (SOD), glutathione peroxidase (GPX) and glutathione concentrations (GSH) in male Sprague Dawley rats (150-175 g) fed for 2 or 4 weeks the AIN 93M diet with or without equal amounts of quercetin, rutin, catechin (FM)at 1.0 mM or 5 mM/kgdict, and with/without PM fed orally at 0.1 mL/d/5d/wk (PM = chlorpyrifos, endosulfan, thiram at 25% LD_50 in oil). Our data indicate that (compared to corresponding Control groups): (i) While, 2 weeks of feeding reduced liver and small intestinal mucosal (IM) SOD activity in the PFM1 (PM+FM1) group, 4 weeks of feeding increased only liver SOD activity in PM, FM1, FM5 and PFM1 and PFM5 groups; (ii) Liver and IM GSH levels increased in PFM groups after 2 or 4 weeks of exposure; plasma GSH increased in the groups fed FM5 with or without PM; (iii) Liver GPX activity declined in both 2 and 4 week experiments in the FM and PFM groups, respectively. These data suggests that metabolic interaction between FM and PM, and duration of exposure, can modify endogenous antioxidants. Data also underscore the prooxidant properties of flavonoids.
机译:这项研究的目的是确定植物化学混合物与低水平接触杀虫剂之间的相互作用是否会改变大鼠组织内源性抗氧化剂。使用膳食类黄酮(F)和口服农药(P)混合物(FM,PM)进行了两个实验,以研究雄性Sprague Dawley大鼠中超氧化物歧化酶(SOD),谷胱甘肽过氧化物酶(GPX)和谷胱甘肽浓度(GSH)的变化(150-175 g)以AIN 93M饮食喂养2或4周,添加或不添加1.0 mM或5 mM / kgdict的等量槲皮素,芦丁,儿茶素(FM),并以0.1 mL / d / 5d / wk(PM =毒死rif,硫丹,硫胺在25%LD_50的油中)。我们的数据表明(与相应的对照组相比):(i)喂养2周降低了PFM1(PM + FM1)组的肝脏和小肠粘膜(IM)SOD活性,而喂养4周仅增加了肝脏SOD PM,FM1,FM5和PFM1和PFM5组的活动; (ii)暴露2或4周后,PFM组的肝脏和IM GSH水平升高;喂或不喂PM5的组血浆GSH升高; (iii)在FM和PFM组的2周和4周实验中,肝GPX活性均下降。这些数据表明,FM和PM之间的代谢相互作用以及暴露的持续时间可以修饰内源性抗氧化剂。数据还强调了类黄酮的抗氧化特性。

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