ToxStrategies, Inc., Asheville, NC, USA.
ToxStrategies, Inc., Jacksonville, FL, USA.
Food Chem Toxicol. 2020 Jun;140:111310. doi: 10.1016/j.fct.2020.111310. Epub 2020 Apr 7.
Seven US FDA-batch certified synthetic food colors are approved for use as food additives in the United States. Perceived neurodevelopmental concerns for these colors persist. This study assessed the plausibility of such an association through the evaluation of mechanistic evidence collected from in vitro assays or other alternative models. Mechanisms and molecular targets underlying neurodevelopmental processes associated with attention deficit and hyperactivity disorder (ADHD) and other neurodevelopmental-related symptoms (e.g., cognitive function, learning and memory disorder, etc.) were identified. Publicly available data from the ToxCast/Tox21 high-throughput screening (HTS) program and peer-reviewed literature that measure activity of the colors for such molecular targets were analyzed and reviewed. Erythrosine (Red No. 3) was active in several assays mapped to neurodevelopmental processes - specifically, HTS assays that measure signals in neurotransmitter pathways. The remaining six colors do not appear to alter signaling pathways related to neurodevelopmental processes on the molecular or cellular level. This assessment provides an approach for systematically identifying and mapping mechanistic data to putative neurodevelopmental processes as a means to prioritize substances for possible further investigation. The assessment also provides insights into the lack of activity of synthetic food colors for key events in neurodevelopmental signaling pathways.
七种获得美国食品和药物管理局批次认证的合成食用色素被批准作为食品添加剂在美国使用。人们对这些颜色的神经发育担忧仍然存在。本研究通过评估从体外测定或其他替代模型收集的机制证据,评估了这种关联的合理性。确定了与注意力缺陷多动障碍(ADHD)和其他神经发育相关症状(如认知功能、学习和记忆障碍等)相关的神经发育过程的潜在机制和分子靶标。分析和审查了来自 ToxCast/Tox21 高通量筛选 (HTS) 计划和同行评议文献中的公开可用数据,这些数据衡量了这些颜色对这些分子靶标的活性。赤藓红(红色 No.3)在几种与神经发育过程相关的测定中具有活性 - 特别是,用于测量神经递质途径信号的 HTS 测定。其余六种颜色似乎不会改变分子或细胞水平上与神经发育过程相关的信号通路。这种评估提供了一种系统地识别和映射机制数据与假定神经发育过程的方法,以便为可能的进一步研究确定物质的优先级。该评估还深入了解了合成食用色素在神经发育信号通路的关键事件中缺乏活性。