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Drosophila melanogaster as a model for lead neurotoxicology and toxicogenomics research

机译:果蝇果蝇作为铅神经毒理学和毒理基因组学研究的模型

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摘要

Drosophila melanogaster is an excellent model animal for studying the neurotoxicology of lead. It has been known since ancient Roman times that long-term exposure to low levels of lead results in behavioral abnormalities, such as what is now known as attention deficit hyperactivity disorder (ADHD). Because lead alters mechanisms that underlie developmental neuronal plasticity, chronic exposure of children, even at blood lead levels below the current CDC community action level (10 μg/dl), can result in reduced cognitive ability, increased likelihood of delinquency, behaviors associated with ADHD, changes in activity level, altered sensory function, delayed onset of sexual maturity in girls, and changes in immune function. In order to better understand how lead affects neuronal plasticity, we will describe recent findings from a Drosophila behavioral genetics laboratory, a Drosophila neurophysiology laboratory, and a Drosophila quantitative genetics laboratory who have joined forces to study the effects of lead on the Drosophila nervous system. Studying the effects of lead on Drosophila nervous system development will give us a better understanding of the mechanisms of Pb neurotoxicity in the developing human nervous system.
机译:果蝇(Drosophila melanogaster)是研究铅的神经毒理学的优秀模型动物。自古罗马时代以来就已经知道,长期暴露于低水平的铅会导致行为异常,例如现在称为注意力缺陷多动障碍(ADHD)。由于铅改变了发育神经元可塑性的基础,因此儿童的长期暴露,即使血铅水平低于当前CDC社区行动水平(10μg/ dl),也会导致认知能力下降,犯罪的可能性增加,与多动症相关的行为,活动水平的改变,感觉功能的改变,女孩性成熟的延迟发作以及免疫功能的改变。为了更好地理解铅如何影响神经元可塑性,我们将描述果蝇行为遗传学实验室,果蝇神经生理学实验室和果蝇定量遗传学实验室的最新发现,他们共同研究了铅对果蝇神经系统的影响。研究铅对果蝇神经系统发育的影响将使我们更好地了解人类神经系统发育过程中Pb神经毒性的机制。

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