An advancement in developmental and reproductive toxicity (DART) risk assessment: evaluation of a bioactivity and exposure-based NAM toolbox.

IF 4.6 Q2 TOXICOLOGY
Frontiers in toxicology Pub Date : 2025-06-30 eCollection Date: 2025-01-01 DOI:10.3389/ftox.2025.1602065
Iris Mueller, Ashraf Abdelkhaliq, Paul Carmichael, Matthew Dent, Marleen Feliksik, Luke Flatt, Jade Houghton, José M Horcas Nieto, Amer Jamalpoor, Predrag Kukic, Sophie Malcomber, Beate Nicol, Gopal Pawar, Claire Peart, Katarzyna Przybylak, Magdalena Sawicka, Katy Wilson, Kathryn Wolton
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Abstract

Traditional chemical safety assessment involves identifying the lowest level of a chemical that impacts endpoints measured in standardized animal studies to establish human exposure limits. In vitro assays have shown promise in providing points of departure that can be protective of human health when combined with exposure predictions into a bioactivity:exposure ratio (BER). Using a combination of broad screening tools and DART-targeted assays, we previously demonstrated high biological coverage of this NAM toolbox against a list of DART-relevant genes and pathways. To fully transition to an animal-free paradigm, it is crucial to establish confidence that these in vitro assays sufficiently represent the DART toxicity mechanisms, ensuring a level of protection that is safe for non-pregnant adults, pregnant women, and fetal populations. In this proof-of-concept study, we have extended the toolbox to include additional in vitro and in silico tools and have performed an evaluation using 37 benchmark compounds across 49 exposure scenarios. According to existing regulatory opinions, 18 of these scenarios would be considered high-risk chemical exposures from a DART perspective. Our DART NAM toolbox approach identified 17 out of these 18 high-risk scenarios. We further investigated the impact of population-based changes in pregnancy and the fetus on internal exposures by evaluating human clinical data where available for the 37 compounds. In most instances, the variability resulting from pregnancy or gestational changes falls within the range of toxicokinetic variability observed in the general population. This work demonstrates that protective safety decisions can be made for DART without generating new animal test data.

发育和生殖毒性(DART)风险评估的进展:基于生物活性和暴露的NAM工具箱的评价。
传统的化学品安全评估涉及确定影响标准化动物研究中测量的终点的化学品的最低水平,以确定人类接触限值。体外测定已显示出提供出发点的希望,当与暴露预测结合成生物活性:暴露比(BER)时,这些出发点可保护人类健康。使用广泛筛选工具和dart靶向检测的组合,我们先前证明了该NAM工具箱对dart相关基因和途径列表的高生物学覆盖率。为了完全过渡到无动物模式,至关重要的是要建立信心,这些体外试验充分代表DART毒性机制,确保对未怀孕的成年人、孕妇和胎儿群体的安全保护水平。在这项概念验证研究中,我们扩展了工具箱,包括额外的体外和硅内工具,并在49种暴露情景中使用37种基准化合物进行了评估。根据现有的监管意见,从DART的角度来看,这些情景中有18种被认为是高风险的化学品暴露。我们的DART NAM工具箱方法确定了18种高风险情景中的17种。通过评估37种化合物的人类临床数据,我们进一步研究了基于人群的妊娠和胎儿变化对体内暴露的影响。在大多数情况下,由妊娠或妊娠变化引起的变异在一般人群中观察到的毒性动力学变异范围内。这项工作表明,可以在不产生新的动物试验数据的情况下为DART做出保护性安全决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.80
自引率
0.00%
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审稿时长
13 weeks
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