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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Relationship between exposure, body burden and target tissue concentration after oral administration of a low-dose mixture of pyrethroid insecticides in young adult rats
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Relationship between exposure, body burden and target tissue concentration after oral administration of a low-dose mixture of pyrethroid insecticides in young adult rats

机译:在口服拟成虫杀虫剂的低剂量混合物中曝光,体重和靶组织浓度之间的关系

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摘要

Pyrethroids (PYRs) are synthetic insecticides increasingly used in agricultural and household pest control. Little is known on how the toxicity of highly effective bolus doses of single compounds compares to more realistic scenarios of low-level exposure to PYR mixtures. In this study, we examined a quaternary mixture of two noncyano (tefluthrin, TEF; bifenthrin, BIF) and two cyano (α-cypermethrin, α-CPM; deltamethrin, DTM) PYRs in young adult rats. These compounds are mostly composed of PYR isomers ranking top ten in acute lethality in rats. Concurrently, we administered near-threshold levels of the four PYRs dissolved in corn oil by oral route. Six hours later blood was collected and the liver and cerebellum were dissected out to determine PYR concentrations in these tissues using Gas Chromatography with Electron Capture Detector (GC-ECD). The mixture caused mild-to-moderate changes in non-locomotor behaviors and subcutaneous body temperature (up to +1.2–1.5?°C increase at 2–4?h after dosing, respectively, compared to pre-dosing records). The most toxic PYRs BIF and TEF reached higher concentrations in the cerebellum than the cyano-compounds α-CPM and DTM. In addition, PYR concentrations in the cerebellum were correlated to single compound proportions in the dosing solution and changes in body temperature. Our results suggest that aggregate exposures resulting in a target tissue burden of ~10?1nmoles PYR/g may be toxicologically relevant, expanding the evidence on exposure-dose-effect relationships for PYRs, and serving to design convenient pharmacokinetic models for environmentally relevant exposures to PYR mixtures.
机译:拟除虫菊酯(Pyrs)是农业和家庭害虫控制越来越多的合成杀虫剂。关于如何对单一化合物的高效推注剂量的毒性有何时令人着重的是,与Pyr混合物的低水平暴露的更现实的情况相比。在这项研究中,我们检查了两种非胞嘧啶(Tefluthrin,TEF; BIFENTHRIN,BIF)和两只氰基(α-CIPERMETHRIN,α-CPM; DTMETHRIN,DTM)PYRS在年轻成年大鼠中的季度混合物。这些化合物主要由大鼠急性致死性排名前十的Pyr异构体组成。同时,我们通过口服途径施用溶解在玉米油中的四种Pyrs的近阈值水平。收集六个小时后,将血液溶解肝脏和小鸡,以使用电子捕获检测器(GC-ECD)气相色谱法测定这些组织中的Pyr浓度。与预计量记录相比,混合物引起非运动行为和皮下体温的温和至中等变化(高达+1.​​2-1.5Ω°C)。最有毒的Pyrs BIF和TEF比氰基化合物α-CPM和DTM达到小脑中达到更高的浓度。此外,小脑中的Pyr浓度与剂量溶液中的单一化合物比例相关,并在体温变化中。我们的研究结果表明,导致目标组织负担的聚集曝光〜10?1Nmoles Pyr / G可能是毒理学相关的,扩大了对Pyrs的暴露剂量效应关系的证据,并为环境相关曝光设计了方便的药代动力学模型。 Pyr混合物。

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