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Developmental Neurotoxicity of Pyrethroid Insecticides: Critical Review and Future Research Needs

机译:拟除虫菊酯类杀虫剂的发育性神经毒性:关键评论和未来研究的需要。

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摘要

Pyrethroid insecticides have been used for more than 40 years and account for 25% of the worldwide insecticide market. Although their acute neurotoxicity to adults has been well characterized, information regarding the potential developmental neurotoxicity of this class of compounds is limited. There is a large age dependence to the acute toxicity of pyrethroids in which neonatal rats are at least an order of magnitude more sensitive than adults to two pyrethroids. There is no information on age-dependent toxicity for most pyrethroids. In the present review we examine the scientific data related to potential for age-dependent and developmental neurotoxicity of pyrethroids. As a basis for understanding this neurotoxicity, we discuss the heterogeneity and ontogeny of voltage-sensitive sodium channels, a primary neuronal target of pyrethroids. We also summarize 22 studies of the developmental neurotoxicity of pyrethroids and review the strengths and limitations of these studies. These studies examined numerous end points, with changes in motor activity and muscarinic acetylcholine receptor density the most common. Many of the developmental neurotoxicity studies suffer from inadequate study design, problematic statistical analyses, use of formulated products, and/or inadequate controls. These factors confound interpretation of results. To better understand the potential for developmental exposure to pyrethroids to cause neurotoxicity, additional, well-designed and well-executed developmental neurotoxicity studies are needed. These studies should employ state-of-the-science methods to promote a greater understanding of the mode of action of pyrethroids in the developing nervous system.
机译:拟除虫菊酯类杀虫剂已经使用了40多年,占全球杀虫剂市场的25%。尽管已经很好地表征了它们对成年人的急性神经毒性,但是有关此类化合物潜在的发育神经毒性的信息仍然有限。拟除虫菊酯的急性毒性具有很大的年龄依赖性,其中新生大鼠对两种拟除虫菊酯的敏感性至少比成年大鼠高一个数量级。没有关于大多数拟除虫菊酯的年龄依赖性毒性的信息。在本综述中,我们研究了与拟除虫菊酯的年龄依赖性和发育性神经毒性潜能有关的科学数据。作为理解这种神经毒性的基础,我们讨论了电压敏感的钠通道(拟除虫菊酯的主要神经靶标)的异质性和本体论。我们还总结了22种拟除虫菊酯对发育神经毒性的研究,并综述了这些研究的优势和局限性。这些研究检查了许多终点,其中最常见的是运动活动和毒蕈碱乙酰胆碱受体密度的变化。许多发育性神经毒性研究遭受研究设计不足,统计分析有问题,配制产品的使用和/或对照不足的困扰。这些因素混淆了结果的解释。为了更好地了解潜在暴露于拟除虫菊酯引起神经毒性的潜力,还需要进行其他精心设计和执行良好的发育神经毒性研究。这些研究应采用科学方法,以促进对拟除虫菊酯在发育中的神经系统中的作用方式的更多了解。

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