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Consensus statement on the need for innovation transition and implementation of developmental neurotoxicity (DNT) testing for regulatory purposes

机译:关于出于监管目的需要创新过渡和实施发育性神经毒性(DNT)测试的共识声明

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摘要

This consensus statement voices the agreement of scientific stakeholders from regulatory agencies, academia and industry that a new framework needs adopting for assessment of chemicals with the potential to disrupt brain development. An increased prevalence of neurodevelopmental disorders in children has been observed that cannot solely be explained by genetics and recently pre- and postnatal exposure to environmental chemicals has been suspected as a causal factor. There is only very limited information on neurodevelopmental toxicity, leaving thousands of chemicals, that are present in the environment, with high uncertainty concerning their developmental neurotoxicity (DNT) potential. Closing this data gap with the current test guideline approach is not feasible, because the in vivo bioassays are far too resource-intensive concerning time, money and number of animals. A variety of in vitro methods are now available, that have the potential to close this data gap by permitting mode-of-action-based DNT testing employing human stem cells-derived neuronal/glial models. In vitro DNT data together with in silico approaches will in the future allow development of predictive models for DNT effects. The ultimate application goals of these new approach methods for DNT testing are their usage for different regulatory purposes.
机译:这份共识性声明表达了来自监管机构,学术界和行业的科学利益相关者的共识,即需要采用一种新的框架来评估可能破坏大脑发育的化学物质。观察到儿童神经发育障碍的患病率增加,不能仅通过遗传学来解释,最近怀疑产前和产后接触环境化学物质是其致病因素。关于神经发育毒性的信息非常有限,因此环境中存在成千上万种化学药品,其神经发育毒性(DNT)潜力不确定性很高。用当前的测试指南方法弥合该数据缺口是不可行的,因为体内生物测定法在时间,金钱和动物数量方面都过于资源密集。现在有多种体外方法可用,它们有可能通过允许使用基于人类干细胞的神经元/神经胶质模型的基于作用模式的DNT测试来缩小此数据鸿沟。将来,体外DNT数据和计算机方法将允许开发DNT效果的预测模型。这些用于DNT测试的新方法的最终应用目标是将它们用于不同的法规目的。

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