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首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >Systematic Analysis of Environmental Chemicals That Dysregulate Critical Period Plasticity-Related Gene Expression Reveals Common Pathways That Mimic Immune Response to Pathogen
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Systematic Analysis of Environmental Chemicals That Dysregulate Critical Period Plasticity-Related Gene Expression Reveals Common Pathways That Mimic Immune Response to Pathogen

机译:环境化学品的系统分析,疑虑关键时期可塑性相关基因表达的含有对病原体的免疫应答的常见途径

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The tens of thousands of industrial and synthetic chemicals released into the environment have an unknown but potentially significant capacity to interfere with neurodevelopment. Consequently, there is an urgent need for systematic approaches that can identify disruptive chemicals. Little is known about the impact of environmental chemicals on critical periods of developmental neuroplasticity, in large part, due to the challenge of screening thousands of chemicals. Using an integrative bioinformatics approach, we systematically scanned 2001 environmental chemicals and identified 50 chemicals that consistently dysregulate two transcriptional signatures of critical period plasticity. These chemicals included pesticides (e.g., pyridaben), antimicrobials (e.g., bacitracin), metals (e.g., mercury), anesthetics (e.g., halothane), and other chemicals and mixtures (e.g., vehicle emissions). Application of a chemogenomic enrichment analysis and hierarchical clustering across these diverse chemicals identified two clusters of chemicals with one that mimicked an immune response to pathogen, implicating inflammatory pathways and microglia as a common chemically induced neuropathological process. Thus, we established an integrative bioinformatics approach to systematically scan thousands of environmental chemicals for their ability to dysregulate molecular signatures relevant to critical periods of development.
机译:释放到环境中的成千上万的工业和合成化学物质具有未知但潜在的显着能力来干扰神经发育。因此,迫切需要可以识别破坏性化学品的系统方法。由于筛选成千上万化学品的挑战,众所周知,关于环境化学品对环境化学品对发育神经塑性的关键时期的影响。使用综合生物信息学方法,我们系统地扫描了2001年的环境化学品,并确定了50种化学物质,始终如一地传递临界时期可塑性的两个转录特征。这些化学品包括杀虫剂(例如,Pyridaben),抗微生物(例如,Bacitracin),金属(例如,汞),麻醉剂(例如,氟烷)和其他化学品和混合物(例如,车辆排放)。在这些不同化学品中,在这些不同化学品中施用化学素浓缩分析和分级聚类,其中鉴定了一种与病原体的免疫反应模仿,将炎性途径和小胶质细化为常见的化学诱导的神经病理过程。因此,我们建立了一种综合的生物信息学方法,以系统地扫描数千个环境化学品,以便能够消除与临界发展时期相关的分子签名。

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