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高级神经行为分析策略在水生态毒理学中的应用。

Applications of advanced neuro-behavioral analysis strategies in aquatic ecotoxicology.

机构信息

Department of Hydrobiology and Protection of Ecosystems, Faculty of Environmental Biology, University of Life Sciences, Lublin, Poland.

School of Science, RMIT University, Melbourne, VIC, Australia.

出版信息

Sci Total Environ. 2021 Jun 10;772:145577. doi: 10.1016/j.scitotenv.2021.145577. Epub 2021 Feb 4.

Abstract

Despite mounting evidence of pleiotropic ecological risks, the understanding of the eco-neurotoxic impact of most industrially relevant chemicals is still very limited. In particularly the acute and chronic exposures to industrial pollutants on nervous systems and thus potential alterations in ecological fitness remain profoundly understudied. Since the behavioral phenotype is the highest-level and functional manifestation of integrated neurological functions, the alterations in neuro-behavioral traits have been postulated as very sensitive and physiologically integrative endpoints to assess eco-neurotoxicological risks associated with industrial pollutants. Due to a considerable backlog of risk assessments of existing and new production chemicals there is a need for a paradigm shift from high cost, low throughput ecotoxicity test models to next generation systems amenable to higher throughput. In this review we concentrate on emerging aspects of laboratory-based neuro-behavioral phenotyping approaches that can be amenable for rapid prioritizing pipelines. We outline the importance of development and applications of innovative neuro-behavioral assays utilizing small aquatic biological indicators and demonstrate emerging concepts of high-throughput chemo-behavioral phenotyping. We also discuss new analytical approaches to effectively and rapidly evaluate the impact of pollutants on higher behavioral functions such as sensory-motor assays, decision-making and cognitive behaviors using innovative model organisms. Finally, we provide a snapshot of most recent analytical approaches that can be applied to elucidate mechanistic rationale that underlie the observed neuro-behavioral alterations upon exposure to pollutants. This review is intended to outline the emerging opportunities for innovative multidisciplinary research and highlight the existing challenges as well barriers to future development.

摘要

尽管越来越多的证据表明存在多效生态风险,但对于大多数工业相关化学品的生态神经毒性影响的理解仍然非常有限。特别是,工业污染物对神经系统的急性和慢性暴露,以及由此产生的潜在生态适应性改变,仍然没有得到深入研究。由于行为表型是神经系统综合功能的最高水平和功能表现,因此神经行为特征的改变被认为是评估与工业污染物相关的生态神经毒性风险的非常敏感和生理综合终点。由于对现有和新生产化学品的风险评估存在大量积压,因此需要从高成本、低通量的生态毒性测试模型向更适合高通量的下一代系统转变。在这篇综述中,我们集中讨论了基于实验室的神经行为表型方法的新出现的方面,这些方法可以适用于快速优先化管道。我们概述了利用小型水生生物指标开发和应用创新神经行为测定的重要性,并展示了高通量化学行为表型测定的新兴概念。我们还讨论了新的分析方法,以利用创新的模式生物有效且快速地评估污染物对感官-运动测定、决策和认知行为等更高行为功能的影响。最后,我们提供了最新分析方法的快照,这些方法可用于阐明暴露于污染物后观察到的神经行为改变的潜在机制。本综述旨在概述创新的多学科研究的新机遇,并强调未来发展所面临的现有挑战和障碍。

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