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Consortium-based science: The NIEHS's multipronged, collaborative approach to assessing the health effects of Bisphenol A

机译:基于联合体的科学:NIEHS采用多管齐下的协作方法评估双酚A对健康的影响

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Background: Bisphenol A (BPA) is a high production volume chemical used to make polycarbonate plastic and is found in many consumer products. Some studies using animal models have suggested that BPA exposures may have adverse health effects. However, research gaps have precluded a full understanding of the effects of BPA in humans and engendered controversies surrounding the chemical's potential toxicity. Objectives: The National Institute of Environmental Health Sciences (NIEHS) and National Toxicology Program (NTP) have developed an integrated, multipronged, consortium-based approach to optimize BPA-focused research investments to more effectively address data gaps and inform decision making. Discussion: NIEHS/NTP BPA research investments made over the past 4 years include extramural research grants, establishment of a BPA Grantee Consortium, intramural research activities on BPA's mechanisms of action, the launch of two clinical studies and an occupational study, development of a round-robin experiment to validate BPA measurements in human serum, and, in collaboration with the Food and Drug Administration (FDA), formation of a consortium to design and execute a chronic toxicity study of BPA in rats. The NIEHS's new consortium-based approach has led to more integrated, collaborative efforts and should improve our ability to resolve controversies over the potential human health effects of exposures to low levels of endocrine-active agents.
机译:背景:双酚A(BPA)是一种高产量的化学品,用于制造聚碳酸酯塑料,并且在许多消费产品中都有使用。一些使用动物模型的研究表明,接触BPA可能会对健康产生不利影响。但是,研究空白使得人们无法完全了解BPA对人类的影响,并引发了有关该化学物质潜在毒性的争论。目标:美国国家环境卫生科学研究所(NIEHS)和国家毒理学计划(NTP)已开发出一种基于财团的综合,多管齐下的方法,以优化针对BPA的研究投资,从而更有效地解决数据缺口并为决策提供依据。讨论:NIEHS / NTP BPA在过去4年中进行的研究投资包括校外研究补助金,BPA受赠人联盟的建立,关于BPA作用机制的院内研究活动,开展了两项临床研究和一项职业研究,以及一轮研究-robin实验以验证人血清中BPA的含量,并与美国食品药品监督管理局(FDA)合作成立了一个财团,以设计和进行大鼠BPA的慢性毒性研究。 NIEHS基于联盟的新方法已经导致了更多的整合,协作努力,并且应该提高我们解决因暴露于低水平的内分泌活性剂对人类健康的潜在影响而引起的争议的能力。

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