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Hepatic oxidative stress and neurotoxicity in Pelophylax kl. esculentus frogs: Influence of long-term exposure to a cyanobacterial bloom

机译:肝氧化应激和斑磷脂K1中的神经毒性。 eSculentus青蛙:长期暴露在蓝藻绽放的影响

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摘要

Although the long-term exposure of aquatic organisms to cyanobacterial blooms is a regular occurrence in the environment, the prooxidant and neurotoxic effects of such conditions are still insufficiently investigated in situ. We examined the temporal dynamics of the biochemical parameters in the liver of Pelophylax kl. esculentus frogs that inhabit the northern (N) side of Lake Ludas (Serbia) with microcystins (MCs) produced in a cyanobacterial bloom over three summer months. The obtained data were compared with data on frogs that live on the southern (S), MC-free side of the same lake. Our results showed that the MC-producing bloom induced oxidative damage to proteins and lipids, observed as a decrease in the concentration of protein -SH groups and increased lipid peroxidation (LPO) in the liver of N frogs in comparison to S frogs. Glutathione (GSH) played a key role in the transient defense against the MC-induced development of LPO. The low glutathione peroxidase (GPx) activity detected in all groups of frogs from the N site was crucial for the observed prooxidant consequences. The bloom impaired cholinergic homeostasis as a result of a decrease in ChE activity. A delayed neurotoxic effect in relation to the prooxidant outcomes was observed. Our results also showed that even though the integrated bio-marker response (IBR) of the antioxidant biomarkers increased during exposure, the individual biochemical parameters did not exhibit a well-defined time-dependent pattern because of specific adaptation dynamics and/or additional effects of the physicochemical parameters of the water. This comprehensive environmental ecotoxico-logical evaluation of the cyanobacterial bloom-induced biochemical alterations in the liver of frogs provides a new basis for further investigations of the prolonged, real-life ecotoxicity of the blooms.
机译:虽然水生生物对蓝藻绽放的长期暴露是环境中的正常出现,但这种条件的过约剂和神经毒性效果仍然不充分地研究。我们检查了群肝脏肝脏肝脏生物化学参数的时间动态。伊斯洛斯族青蛙居住在卢达斯湖(塞尔维亚)(塞尔维亚)的北部(N)侧,用微囊藻蛋白(MCS)在三个夏季的三个月内产生的微囊藻毒素(MCS)。将获得的数据与生活在南部的青蛙的数据进行比较,同一个湖泊的无乳房。我们的研究结果表明,与S蛙相比,将MC产生的血液造成对蛋白质和脂质的氧化损伤和脂质的浓度和肝脏肝脏肝脏中的脂质过氧化(LPO)的降低。谷胱甘肽(GSH)在瞬态防御中发挥了关键作用,反对MC诱导的LPO发展。在N个位点的所有青蛙中检测到的低谷胱甘肽过氧化物酶(GPX)活性对于观察到的促近后果至关重要。由于CHE活动的减少,绽放患者血管能稳定性受损。观察到与过约氧基结果有关的延迟神经毒性作用。我们的研究结果还表明,即使抗氧化生物标志物的综合生物标记反应(IBR)在暴露过程中增加时,各个生化参数也没有表现出明确定义的时间依赖模式,因为具体适应动态和/或额外的效果水的物理化学参数。这种综合环境生态毒性逻辑评价植物肝脏肝脏诱发的生化改变为进一步调查绽放的延长,现实生态毒性的进一步调查提供了新的基础。

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  • 来源
    《The Science of the Total Environment》 |2021年第1期|141569.1-141569.10|共10页
  • 作者单位

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

    Institute of Zoology Faculty of Biology University of Belgrade Studentski trg 16 11000 Belgrade Serbia;

    Scientific Institution Institute of Chemistry Technology and Metallurgy - National Institute University of Belgrade Njegoseva 12 11000 Belgrade Serbia;

    Department of Physiology Institute for Biological Research 'Sinisa Stankovic' - National Institute of Republic of Serbia University of Belgrade Bulevardespota Stefana 142 11060 Belgrade Serbia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oxidative damage; Antioxidant; Biotransformation; Cholinesterase; Temporal dynamic; Microcystin;

    机译:氧化损伤;抗氧化剂;生物转化;胆碱酯酶;时间动态;微囊藻;

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