氯化镍暴露对龙虾蟑螂神经毒性的生化、行为和线粒体呼吸反应。

IF 4.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Stanley U. Nwawuba , Blessing A. Obafemi , Alessandro S. Prestes , Isaac A. Adedara , Michael Aschner , Joao B.T. Rocha
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引用次数: 0

摘要

氯化镍(NiCl 2)是一种可引起神经毒性的环境毒物。本研究研究了30天饮食中NiCl₂(0.01,0.1和1mg/g)对Nauphoeta cinerea的影响,重点是体重,氧化应激,行为和线粒体功能。暴露于1mg/g的剂量下,体重和食物摄入量减少。所有浓度都会损害一些探索性行为参数(如行驶距离和平均速度)。氧化应激标志物,包括TBARS和ROS,随着GST和SOD活性的增加而增加。神经递质代谢受到影响,乙酰胆碱酯酶升高,单胺氧化酶活性降低。线粒体呼吸显示氧化磷酸化受损,质子泄漏改变,复合物II活性降低,表明线粒体功能障碍。这些发现表明,NiCl 2 (1mg/g)会破坏线粒体神经能量学和氧化还原平衡。值得注意的是,即使在最低浓度下也会发生行为障碍,这表明活动的细微变化可能是NiCl 2诱导的神经毒性的早期指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biochemical, behavioural and mitochondria respiratory responses to neurotoxicity associated with nickel chloride exposure in lobster cockroach Nauphoeta cinerea
Nickel (II) chloride (NiCl₂) is an environmental toxicant that may cause neurotoxicity. This study investigated the effects of 30-day dietary exposure to NiCl₂ (0.01, 0.1, and 1 mg/g) in Nauphoeta cinerea, focusing on body weight, oxidative stress, behavior, and mitochondrial function. Exposure to 1 mg/g reduced body weight and food intake. All concentrations impaired some exploratory behavioral parameters (e.g., distance travelled and average speed). Oxidative stress markers, including TBARS and ROS, increased, along with GST and SOD activity. Neurotransmitter metabolism was affected, with elevated acetylcholinesterase and reduced monoamine oxidase activity. Mitochondrial respiration showed impaired oxidative phosphorylation, altered proton leakage, and decreased complex II activity, indicating mitochondrial dysfunction. These findings demonstrate that NiCl₂ (1 mg/g) disrupts mitochondrial neuroenergetics and redox balance. Notably, behavioral impairments occurred even at the lowest concentrations, suggesting that subtle changes in activity may serve as early indicators of NiCl₂-induced neurotoxicity.
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来源期刊
CiteScore
7.00
自引率
4.70%
发文量
185
审稿时长
34 days
期刊介绍: Environmental Toxicology and Pharmacology publishes the results of studies concerning toxic and pharmacological effects of (human and veterinary) drugs and of environmental contaminants in animals and man. Areas of special interest are: molecular mechanisms of toxicity, biotransformation and toxicokinetics (including toxicokinetic modelling), molecular, biochemical and physiological mechanisms explaining differences in sensitivity between species and individuals, the characterisation of pathophysiological models and mechanisms involved in the development of effects and the identification of biological markers that can be used to study exposure and effects in man and animals. In addition to full length papers, short communications, full-length reviews and mini-reviews, Environmental Toxicology and Pharmacology will publish in depth assessments of special problem areas. The latter publications may exceed the length of a full length paper three to fourfold. A basic requirement is that the assessments are made under the auspices of international groups of leading experts in the fields concerned. The information examined may either consist of data that were already published, or of new data that were obtained within the framework of collaborative research programmes. Provision is also made for the acceptance of minireviews on (classes of) compounds, toxicities or mechanisms, debating recent advances in rapidly developing fields that fall within the scope of the journal.
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