首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >A mixture of routinely encountered xenobiotics induces both redox adaptations and perturbations in blood and tissues of rats after a long-term low-dose exposure regimen: The time and dose issue
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A mixture of routinely encountered xenobiotics induces both redox adaptations and perturbations in blood and tissues of rats after a long-term low-dose exposure regimen: The time and dose issue

机译:经常遇到的Xenobiotics的混合物诱导长期低剂量暴露方案后大鼠血液和组织的氧化还原适应和扰动:时间和剂量问题

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摘要

Exposure of humans to xenobiotic mixtures is a continuous state during their everyday routine. However, the majority of toxicological studies assess the in vivo effects of individual substances rather than mixtures. Therefore, our main objective was to evaluate the impact of the 12- and 18-month exposure of rats to a mixture containing 13 pesticides, food, and life-style additives in three dosage levels (i.e. 0.0025 x NOAEL, 0.01 x NOAEL, and 0.05 x NOAEL), on redox biomarkers in blood and tissues. Our results indicate that the exposure to the mixture induces physiological adaptations by enhancing the blood antioxidant mechanism (i.e., increased glutathione, catalase and total antioxidant capacity and decreased protein carbonyls and TBARS) at 12 months of exposure. On the contrary, exposure to the 0.05 x NOAEL dose for 18 months induces significant perturbations in blood and tissue redox profile (i.e., increased carbonyls and TBARS). This study simulates a scenario of real-life risk exposure to mixtures of xenobiotics through a long-term low-dose administration regimen in rats. The results obtained could support, at least in part, the necessity of introducing testing of combined stimuli at reference doses and long term for the evaluation of the risk from exposure to chemicals.
机译:人类暴露于血管生物混合物是日常生活期间的连续状态。然而,大多数毒理学研究评估了个体物质的体内效应而不是混合物。因此,我们的主要目标是评估大鼠12-18个月暴露于含有13个剂量水平的13种农药,食品和生活方式添加剂的混合物的影响(即0.0025 x NOAEL,0.01 x NOAEL,以及0.05 x NOAEL),血液和组织中的氧化还原生物标志物。我们的结果表明,在12个月的接触的12个月内,通过增强血液抗氧化机制(即,增加谷胱甘肽,过氧化氢酶和总抗氧化能力和蛋白质羰基和TBARS),暴露于混合物诱导生理适应。相反,暴露于0.05×NOAEL剂量18个月,诱导血液和组织氧化还原型(即,增加的羰基和TBAR)显着扰动。本研究通过长期低剂量给药方案模拟了现实风险暴露于异丙菌的混合物的情况。所获得的结果至少部分地支持在参考剂量下引入组合刺激的测试,并长期用于评估暴露于化学品的风险。

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