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The responses of Oncorhynchus mykiss coping with BDE-47 stress via PXR-mediated detoxification and Nrf2-mediated antioxidation system

机译:通过PXR介导的排毒和NRF2介导的抗氧化系统对BDE-47应力应对BDE-47胁迫的反应

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摘要

The low brominated polybrominated diphenyl ether (PBDE) 2,2',4,4'-tetrabromodiphenyl ether (BDE-47) is ubiquitous in the marine environment. To elucidate the stress response and possible mechanisms underlying BDE-47, the rainbow trout fish Oncorhynchus mykiss were selected and orally fed bait with BDE-47 concentrations of 50 ng/g and 500 ng/g. BDE-47 was found to be mainly accumulated in head kidney and caused lipid peroxidation after prolonged exposure. We studied the detoxification system genes pregnane X receptor (PXR) and downstream genes (cytochrome 3 A, CYP3 A; glutathione S-transferase, GST) and their corresponding enzyme activity and found that the above indicators in the treatment groups increased first and then decreased with time, while the 500 ng/g group showed more significant changes. Further, the antioxidant system gene expression levels of the NF-E2-related factor 2 (Nrf2) and downstream genes (superoxide dismutase, SOD; catalase, CAT) were found significantly up-regulated with concentration and time. The change in the enzyme activity of SOD and CAT showed the same tendency as that of indicators of detoxifying system. The results showed that BDE-47 can accumulated in head kidney and caused activate and fast increase of genes and enzymes of detoxification and antioxidant system in the short-term and then damage the response systems in longer times. After Pearson correlation analysis, the Integrated Biomarker Response (IBR) Index was established with malondialdehyde (MDA) content; PXR, Nrf2, SOD, and CAT gene expression; and CYP3 A, GST, and CAT enzymatic activity, which were significantly related to BDE-47 bioaccumulation (P & 0.5). The IBR value can indicate the ecotoxicological responses of the head kidney to different BDE-47 concentrations exposure, but the high activity of the antioxidant system might obscure the damage of the detoxification system.
机译:低溴化多溴二苯基醚(PBDE)2,2',4,4'-四溴二苯基醚(BDE-47)在海洋环境中普遍存在。为了阐明BDE-47下面的压力反应和可能的机制,选择虹鳟鱼肌酐,并选择BDE-47浓度为50ng / g和500ng / g的BDE-47浓度。发现BDE-47主要积累在头肾上并导致延长曝光后引起脂质过氧化。我们研究了排毒系统基因妊娠X受体(PXR)和下游基因(细胞色素3A,CYP3A;谷胱甘肽S-转移酶,GST)及其相应的酶活性,发现,治疗组中的上述指标先增加,然后减少随着时间的推移,500 ng / g组显示出更大的变化。此外,发现NF-E2相关因子2(NRF2)和下游基因的抗氧化系统基因表达水平(超氧化物歧化酶,SOD;过氧化氢酶,猫),浓度和时间显着上调。 SOD和猫酶活性的变化表现出与解毒系统指标相同的趋势。结果表明,BDE-47可以在短期内累积在头肾上并导致激活和快速增加解毒和抗氧化系统的基因和酶的酶,然后在更长的时间内损坏响应系统。在Pearson相关性分析后,用丙二醛(MDA)内容建立了综合生物标志物反应(IBR)指数; PXR,NRF2,SOD和CAT基因表达;和CYP3 A,GST和CAT酶活性,与BDE-47生物累积有关(P& 0.5)显着相关。 IBR值可以表明头部肾脏对不同BDE-47浓度暴露的生态毒理学反应,但抗氧化系统的高活性可能会掩盖排毒系统的损害。

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