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亚急性暴露的Wistar大鼠中肝毒性与十溴二苯醚靶组织剂量的关系。

Relationship of hepatotoxicity and the target tissue dose of decabrominated diphenyl ether in subacutely exposed Wistar rats.

作者信息

Ćurčić Marijana, Tanasković Sladjana, Stanković Sanja, Janković Saša, Antunović Marko, Djordjević Snežana, Kilibarda Vesna, Vučnić Slavica, Antonijević Biljana

出版信息

Vojnosanit Pregl. 2015 May;72(5):405-13.

Abstract

BACKGROUND/AIM: Based on numerous studies in animals, the most prominent toxic effects of decabrominated diphenyl ether (BDE-209) are observed in the liver, thyroid hormone homeostasis, reproductive and nervous systems. BDE-209 exhibits its toxic effects partly through the aryl hydrocarbon (Ah) receptor and consequent induction of hepatic microsomal enzymes. The aim of this study was to assess the hepatotoxic effect vs target tissue dose of BDE-209 in the subacutely orally exposed Wistar rats.

METHODS

Effects were examined on male Wistar rats, weighing 200-240 g, exposed to doses of 1;000, 2,000 or 4,000 mg BDE-209/kg body weight (bw)/day by gavage during 28 days. Animals were treated according to the decision of the Ethics Committee of the Military Medical Academy, No 9667-1/2011. Evaluation of the hepatotoxic effect was based on: relative liver weight water and food intake, biochemical parameters of liver function [aspartate amino transferase (AST), alanine aminotransferase (ALT), alkaline phosphatase (ALP), gama glutamyl transferase (γ-GT)], and oxidative stress parameters in liver homogenates [malondialdehiyde (MDA), superoxide dismutase (SOD), -SH] and morphological and pathohistological changes in the liver. For the assessment of internal dose-response relationship, lower confidence limit of Benchmark dose (BMDL) of 5% or 10% i.e. BMDL5 or BMDL10, were calculated using PROAST software.

RESULTS

After the application of 1,000,2,000 or 4,000 mg BDE-209/kg bw/day, the concentrations of BDE-209 measured in liver were 0.269, 0.569 and 0.859 mg/kg of liver wet weight, (ww) respectively. Internal doses correlated with external (r = 0.972; p < 0.05) according to equation: internal dose (mg BDE-209/kg of liver ww) = 0.0002 x external dose (mg/kg bw/day) + 0.0622. Hepatotoxicity was demonstrated based on significant increase in AST and γ-GT activities and the degree of histopathological changes. The lowest BMDLs of 0.07228 mg BDE-209 /kg of liver ww, correlating to external dose of 39 mg/kg/day, indicated the increase of AST activity as the most sensitive biomarker of BDE-209 hepatotoxicity in subacutely exposed rats.

CONCLUSION

The results of the present work add up to the issue ofBDE-209 toxicity profile with a focus on relationship between internal dose and hepatotoxicity. Critical internal dose for the effect on AST of 0.07 mg/kg of liver ww, corresponding to external dose of 39 mg/kg/ day, is the lowest dose ever observed among the studies on BDE-209 hepatotoxicity. For the persistent substances with low absorption rate such as BDE-209, critical effect based on internal dose in majority of cases is considered as more precisely deined than the effect established based on external dose, particularly.

摘要

背景/目的:基于众多动物研究,十溴二苯醚(BDE - 209)最显著的毒性作用见于肝脏、甲状腺激素稳态、生殖系统和神经系统。BDE - 209部分通过芳烃(Ah)受体发挥其毒性作用,并随之诱导肝微粒体酶。本研究的目的是评估亚急性经口暴露的Wistar大鼠中BDE - 209的肝毒性作用与靶组织剂量之间的关系。

方法

对体重200 - 240 g的雄性Wistar大鼠进行研究,通过灌胃给予剂量为1000、2000或4000 mg BDE - 209/千克体重/天,持续28天。动物的处理遵循军事医学科学院伦理委员会第9667 - 1/2011号决定。肝毒性作用的评估基于:相对肝脏重量、水和食物摄入量、肝功能生化参数[天冬氨酸氨基转移酶(AST)、丙氨酸氨基转移酶(ALT)、碱性磷酸酶(ALP)、γ - 谷氨酰转移酶(γ - GT)],以及肝匀浆中的氧化应激参数[丙二醛(MDA)、超氧化物歧化酶(SOD)、 - SH]和肝脏的形态学及病理组织学变化。为评估内部剂量 - 反应关系,使用PROAST软件计算5%或10%的基准剂量下限(BMDL),即BMDL₅或BMDL₁₀。

结果

给予1000、2000或4000 mg BDE - 209/千克体重/天后,肝脏中测得的BDE - 209浓度分别为0.269、0.569和0.859 mg/千克肝脏湿重(ww)。根据公式:内部剂量(mg BDE - 209/千克肝脏ww)= 0.0002×外部剂量(mg/千克体重/天)+ 0.0622可知,内部剂量与外部剂量相关(r = 0.972;p < 0.05)。基于AST和γ - GT活性的显著增加以及组织病理学变化程度证明了肝毒性。最低的BMDL为0.07228 mg BDE - 209/千克肝脏ww,对应外部剂量为39 mg/千克/天,表明AST活性增加是亚急性暴露大鼠中BDE - 209肝毒性最敏感的生物标志物。

结论

本研究结果补充了BDE - 209毒性概况的相关问题,重点关注内部剂量与肝毒性之间的关系。对AST产生影响的临界内部剂量为0.07 mg/千克肝脏ww,对应外部剂量为39 mg/千克/天,这是BDE - 209肝毒性研究中观察到的最低剂量。对于像BDE - 209这种吸收率低的持久性物质,在大多数情况下,基于内部剂量的临界效应被认为比基于外部剂量确定的效应更精确。

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