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慢性维生素缺乏及长期极低剂量接触 6 种混合农药对神经学结局的影响——一种真实风险模拟方法。

The effect of chronic vitamin deficiency and long term very low dose exposure to 6 pesticides mixture on neurological outcomes - A real-life risk simulation approach.

机构信息

Center of Toxicology Science & Research, Medical School, University of Crete, Heraklion, Crete, Greece; Spin-Off Toxplus S.A., 71601, Heraklion, Greece.

Federal State Budgetary Scientific Institution "Federal Research Centre of Nutrition, Biotechnology and Food Safety", 109240, Moscow, Russia.

出版信息

Toxicol Lett. 2019 Oct 15;315:96-106. doi: 10.1016/j.toxlet.2019.07.026. Epub 2019 Aug 3.

Abstract

We investigate the long-term effect of very-low dose exposure to a mixture of six pesticides associated with hydrophilic vitamin deficiency on the neurobehavioral outcomes of rats. Two hundred Wistar rats were divided into four groups, two control groups, a vitamin sufficient control group and a vitamin deficiency control group and 2 test groups, a vitamin sufficient test group, and a vitamin deficiency group. The test groups were exposed for 9 months to a mixture of diquat, imazamox, imazethapyr, tepraloxydin, bentazone and acifluorfen in doses of 0.01xNOAEL (mg/kg bw/day). After 9 months of exposure, the behavior changes were evaluated by open field test and elevated plus maze test and the memory was assessed by passive avoidance test. Chronic vitamin deficiency decreased locomotor and special orientation activity and increased anxiety-like behavior in rats. Exposure to very low doses of a mixture of 6 pesticides caused central nervous effects, manifested as decreased locomotor activity, and increased anxiety levels. Vitamin deficiency and low dose chronic pesticides mixture exposure thus affected the central nervous system, especially long-term memory.

摘要

我们研究了长期接触与亲水性维生素缺乏有关的六种混合农药的极低剂量对大鼠神经行为结果的影响。将 200 只 Wistar 大鼠分为四组,两组对照组、一组维生素充足对照组和一组维生素缺乏对照组,两组实验组,一组维生素充足实验组和一组维生素缺乏实验组。实验组暴露于二氯喹、咪唑乙烟酸、咪草烟、噻嗪酮、苯达松和三氟羧草醚混合物中,剂量为 0.01xNOAEL(mg/kg bw/day),持续 9 个月。暴露 9 个月后,通过旷场试验和高架十字迷宫试验评估行为变化,通过被动回避试验评估记忆。慢性维生素缺乏会降低大鼠的运动和特殊定向活动,并增加焦虑样行为。极低剂量的 6 种混合农药混合物暴露会引起中枢神经系统效应,表现为运动活动减少和焦虑水平升高。因此,维生素缺乏和低剂量慢性农药混合物暴露会影响中枢神经系统,特别是长期记忆。

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