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在低剂量长期暴露于拟除虫菊酯的大鼠脑区中线粒体完整性和氧化还原状态的损伤:槲皮素的预防作用。

Impairment of mitochondrial integrity and redox status in brain regions during a low-dose long-term exposition of rats to pyrethrinoïds: the preventive effect of quercetin.

机构信息

Laboratory of Cellular and Molecular Biology, University of Mohamed Seddik Ben Yahia, Jijel, Algeria.

Laboratory of Phytochemistry and Pharmacology, University of Mohamed Seddik Ben Yahia, Jijel, Algeria.

出版信息

Environ Sci Pollut Res Int. 2017 Aug;24(24):19714-19722. doi: 10.1007/s11356-017-9675-0. Epub 2017 Jul 6.

Abstract

Pyrethrinoïds are synthetic pesticides widely used in agriculture and farms to protect crops from weeds, insects, fungi, and molds. Increased and uncontrolled use of these pollutants can have harmful effects on human health via consumption of contaminated food products. In the present study, deltamethrin (DLT = 3.72 mg/kg) and Bifenthrin (BF = 2.6 mg/kg) were used during a long-term exposition in the rats to assess their effect on mitochondrial integrity and function in different brain areas (hippocampus, striatum, cortex, and cerebellum). The results of this study have shown that chronic treatment of rats by both DLT and BF, on their own or in a mixture, has induced a significant increase in mitochondrial MDA, but when quercetin (Que) was co-administered with pesticides, this enhancement has been prevented in the almost of treated rats compared to solvent and control groups. In hippocampus area, GSH has significantly increased in all treated rats, except for BF and DLT-Que.-treated groups. In striatum, GSH has been depleted in the BF and DLT-treated groups compared to control and solvent groups; in contrast, when Que. was associated with pesticides, the rate of this tripeptide has been maintained at normal levels. In the cortex and cerebellum, GSH has been depleted significantly in all treated animals but has increased in DLT-Que. and mixture-Que.-treated groups in the cerebral cortex, at the same time; it has been maintained at normal levels in BF-Que.-treated groups in the cerebellum compared to control and solvent rats. On the other side, the results of this study have shown a loss of catalase (CAT) and glutathione S-transferase (GST) activities in all brain regions of pesticide-treated rats, but such a fall in enzymatic activities has been prevented by Que. when it was co-administered to rats with pesticides at the dose of 5 mg/kg, except in the cerebellum. In addition, this study has shown mitochondria's swelling in almost all the brain areas with exception of the cerebellum, providing information about a loss of mitochondrial membrane integrity in brain neurons of rats exposed to pyrethrinoïds. Furthermore, preventive administration of Que., in association with pesticides (5 mg/kg) or their mixture (10 mg/kg), has prevented mitochondria swelling in almost all of the analyzed brain tissues.

摘要

拟除虫菊酯是一种广泛应用于农业和农场的合成农药,用于保护作物免受杂草、昆虫、真菌和霉菌的侵害。这些污染物的使用增加和不受控制,可能会通过食用受污染的食品产品对人类健康产生有害影响。在本研究中,使用了氯菊酯(DLT=3.72mg/kg)和联苯菊酯(BF=2.6mg/kg)进行长期暴露,以评估它们对不同大脑区域(海马体、纹状体、皮层和小脑)中线粒体完整性和功能的影响。这项研究的结果表明,慢性治疗大鼠单独或混合使用 DLT 和 BF 都会导致线粒体 MDA 显著增加,但当槲皮素(Que)与杀虫剂一起给药时,与溶剂和对照组相比,几乎所有接受治疗的大鼠的这种增强都得到了预防。在海马体区域,除了 BF 和 DLT-Que 治疗组外,所有治疗大鼠的 GSH 均显著增加。在纹状体中,与对照组和溶剂组相比,BF 和 DLT 处理组的 GSH 耗尽;相反,当 Que.与杀虫剂结合使用时,这种三肽的含量保持在正常水平。在大脑皮层和小脑,所有处理动物的 GSH 均显著减少,但在 DLT-Que.和混合物-Que.-处理组中增加;与此同时,在 BF-Que.-处理组中,GSH 在小脑保持正常水平,与对照组和溶剂组相比。另一方面,本研究表明,所有接受农药处理的大鼠的过氧化氢酶(CAT)和谷胱甘肽 S-转移酶(GST)活性在大脑所有区域均丧失,但当 Que.以 5mg/kg 的剂量与大鼠一起给予时,这种酶活性的下降得到了预防,除了在小脑。此外,这项研究表明,拟除虫菊酯暴露的大鼠几乎所有大脑区域的线粒体肿胀,提供了关于大鼠脑神经元中线粒体膜完整性丧失的信息。此外,Que.的预防性给药,与杀虫剂(5mg/kg)或其混合物(10mg/kg)联合使用,几乎可以预防所有分析脑组织中线粒体肿胀。

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