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Developmental neurotoxicity fingerprint of silica nanoparticles at environmentally relevant level on larval zebrafish using a neurobehavioral-phenomics-based biological warning method

机译:利用基于神经饲料 - 现象的生物预警方法,在幼虫斑马鱼对环境相关水平的硅纳米粒子的发育神经毒性指纹

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摘要

Background: Larval zebrafish (Danio rerio) is not only an ideal vertebrate applied in Fish Embryos Toxicity (FET) test but also a well-accepted model in behavioral neurotoxicity research. By applying the commercial standard behavioral tracking system (Zebrabox), the locomotion profiles (neurobehavioral-phenomics) of larval zebrafish can be comprehensively monitored and systematically analyzed to probe ecotoxicological neurotoxicity of nano-pollutants at environmental relevant concentration level. Results: Herein, the potential toxicity of at environment relevant concentration level on embryonic zebrafish was evaluated by FET and neurobehavioral-phenomics (NBP). The embryos were exposed to the environmental relevant concentration (0.05,0.1,1,5,10,100 μg/L). The FET criteria were utilized to evaluate the ecotoxicological effect induced by silica NPs. Subsequently, behavioral neurotoxicity of silica NPs was further quantified via locomotion response (LMR). Specifically, the alteration of Light/Dark challenge (LDC) evoked by light/dark stimulation was detected and analyzed by commercially standard behavioral protocols using zebrabox. We revealed that the exposures of silica NPs at environmental relevant concentration (0.05, 0.1,1, 5,10,100 μg/L) significantly disturbed locomotion profiles of larval zebrafish. Additionally, it was obviously noted that low, environmentally relevant silica concentrations might result in altering the total behavioral profiles in developing zebrafish. Conclusions: In sum, neurobehavior phenomics profiling based on LMR and LDC is a potent methodology for the evaluation of sub-lethal or sub-teratogenic toxicity. Compared with the FET tests characterized by the detection of embryonic teratogenicity, the neurobehavior phenomics based method can be more sensitive to determine sub-teratogenic toxicity of silica NPs at environmental concentrations. With the combination of multivariate data analysis, this approach would offer effective technical reference for environmental nano-toxicology research.
机译:背景:幼虫斑马鱼(Danio Rerio)不仅适用于鱼胚毒性(FET)测试的理想脊椎动物,而且是行为神经毒性研究的良好模型。通过应用商业标准行为跟踪系统(Zebrabox),可以全面监测和系统地分析幼虫斑马鱼的运动型材(神经兽性 - 表达)以在环境相关浓度水平下探测纳米污染物的生态毒理学神经毒性。结果:本文,通过FET和神经兽性对胚胎斑马鱼对环境相关浓度水平的潜在毒性(NBP)评估。将胚胎暴露于环境相关浓度(0.05,0.1,15,10,100μg/ L)。使用FET标准来评估二氧化硅NPS诱导的生态毒理学效应。随后,通过运动响应(LMR)进一步定量二氧化硅NPS的行为神经毒性。具体地,通过使用Zebrabox通过商业标准的行为方案检测并分析通过光/暗刺激引起的光/暗挑战(LDC)的改变。我们透露,在环境相关浓度(0.05,0.1,1,5,10,100μg/ l)的硅NPS暴露于幼虫斑马鱼的运动型材显着令人不安。另外,显然指出,低,环保的二氧化硅浓度可能导致改变开发斑马鱼的总行为谱。结论:总和,基于LMR和LDC的神经兽性表现性分析是评估亚致死或亚致致致致毒性的有效方法。与通过检测胚胎致畸作用的特征的FET测试相比,基于神经表现的方法可以更敏感以在环境浓度下确定二氧化硅NP的亚致致致毒性。随着多变量数据分析的结合,这种方法将为环境纳米毒理学研究提供有效的技术参考。

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  • 来源
    《The Science of the Total Environment》 |2021年第15期|141878.1-141878.9|共9页
  • 作者单位

    Department of Medicinal Chemistry Key Laboratory of Chemical Biology (Ministry of Education) School of Pharmaceutical Sciences Cheeloo College of Medicine Shandong University NO. 44 West Culture Road Ji'nan 250012. Shandong Province PR China;

    Biology Institute Qilu University of Technology (Shandong Academy of Sciences) 28789 East Jingshi Road Ji'nan 250103 Shandong Province PR China Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province 28789 Eastjingshi Road Ji'nan 250103 Shandong Province PR China;

    School of Bioengineering Qilu University of Technology (Shandong Academy of Sciences) 3501 Daxue Road Ji'nan 250353 Shandong Province PR China;

    Biology Institute Qilu University of Technology (Shandong Academy of Sciences) 28789 East Jingshi Road Ji'nan 250103 Shandong Province PR China Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province 28789 Eastjingshi Road Ji'nan 250103 Shandong Province PR China;

    Biology Institute Qilu University of Technology (Shandong Academy of Sciences) 28789 East Jingshi Road Ji'nan 250103 Shandong Province PR China Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province 28789 Eastjingshi Road Ji'nan 250103 Shandong Province PR China;

    Biology Institute Qilu University of Technology (Shandong Academy of Sciences) 28789 East Jingshi Road Ji'nan 250103 Shandong Province PR China Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province 28789 Eastjingshi Road Ji'nan 250103 Shandong Province PR China;

    Biology Institute Qilu University of Technology (Shandong Academy of Sciences) 28789 East Jingshi Road Ji'nan 250103 Shandong Province PR China Engineering Research Center of Zebrafish Models for Human Diseases and Drug Screening of Shandong Province 28789 Eastjingshi Road Ji'nan 250103 Shandong Province PR China;

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  • 正文语种 eng
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  • 关键词

    Environmentally relevant concentration; Neurobehavioral phenomics (NBP); Fish embryos toxicity (FET); Locomotion response (LMR); Light/dark challenge (LDC); Biological warning method;

    机译:环境相关的浓度;神经兽性表情(NBP);鱼胚胎毒性(FET);运动响应(LMR);光/暗挑战(LDC);生物预警方法;

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