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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Developmental neurotoxicity of engineered nanomaterials: Identifying research needs to support human health risk assessment
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Developmental neurotoxicity of engineered nanomaterials: Identifying research needs to support human health risk assessment

机译:工程纳米材料的发育性神经毒性:确定研究需求以支持人类健康风险评估

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摘要

Increasing use of engineered nanomaterials (ENM) in consumer products and commercial applications has helped drive a rise in research related to the environmental health and safety (EHS) of these materials. Within the cacophony of information on ENM EHS to date are data indicating that these materials may be neurotoxic in adult animals. Evidence of elevated inflammatory responses, increased oxidative stress levels, alterations in neuronal function, and changes in cell morphology in adult animals suggests that ENM exposure during development could elicit developmental neurotoxicity (DNT), especially considering the greater vulnerability of the developing brain to some toxic insults. In this review, we examine current findings related to developmental neurotoxic effects of ENM in the context of identifying research gaps for future risk assessments. The basic risk assessment paradigm is presented, with an emphasis on problem formulation and assessments of exposure, hazard, and dose response for DNT. Limited evidence suggests that in utero and postpartum exposures are possible, while fewer than 10 animal studies have evaluated DNT, with results indicating changes in synaptic plasticity, gene expression, and neurobehavior. Based on the available information, we use current testing guidelines to highlight research gaps that may inform ENM research efforts to develop data for higher throughput methods and future risk assessments for DNT. Although the available evidence is not strong enough to reach conclusions about DNT risk from ENM exposure, the data indicate that consideration of ENM developmental neurotoxic potential is warranted.
机译:在消费产品和商业应用中工程纳米材料(ENM)的使用不断增加,已推动了与这些材料的环境健康与安全(EHS)有关的研究的增加。迄今为止,有关ENM EHS的信息不明确,有数据表明这些物质在成年动物中可能具有神经毒性。成年动物炎症反应增强,氧化应激水平升高,神经元功能改变以及细胞形态变化的证据表明,在发育过程中暴露于ENM可能引起发育性神经毒性(DNT),尤其是考虑到发育中的大脑对某些毒性物质的更大脆弱性侮辱。在这篇综述中,我们在确定未来风险评估的研究空白的背景下,研究了与ENM发育神经毒性作用有关的当前发现。介绍了基本的风险评估范式,重点在于问题的制定以及对DNT的暴露,危害和剂量反应的评估。有限的证据表明,在子宫内和产后接触是可能的,而少于10项动物研究评估了DNT,结果表明突触可塑性,基因表达和神经行为发生了变化。根据可用信息,我们使用当前的测试指南来强调研究差距,这些差距可能会为ENM研究工作提供信息,以开发用于更高通量方法的数据以及DNT的未来风险评估。尽管现有证据不足以得出有关ENM暴露引起DNT风险的结论,但数据表明需要考虑ENM发育神经毒性的潜力。

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