U.S. Department of Energy , Oak Ridge Institute for Science and Education , Oak Ridge , Tennessee 37831 , United States.
Environ Sci Technol. 2018 May 1;52(9):5417-5426. doi: 10.1021/acs.est.7b06145. Epub 2018 Apr 11.
Thyroid uptake of iodide via the sodium-iodide symporter (NIS) is the first step in the biosynthesis of thyroid hormones that are critical for health and development in humans and wildlife. Despite having long been a known target of endocrine disrupting chemicals such as perchlorate, information regarding NIS inhibition activity is still unavailable for the vast majority of environmental chemicals. This study applied a previously validated high-throughput approach to screen for NIS inhibitors in the ToxCast phase I library, representing 293 important environmental chemicals. Here 310 blinded samples were screened in a tiered-approach using an initial single-concentration (100 μM) radioactive-iodide uptake (RAIU) assay, followed by 169 samples further evaluated in multi-concentration (0.001 μM-100 μM) testing in parallel RAIU and cell viability assays. A novel chemical ranking system that incorporates multi-concentration RAIU and cytotoxicity responses was also developed as a standardized method for chemical prioritization in current and future screenings. Representative chemical responses and thyroid effects of high-ranking chemicals are further discussed. This study significantly expands current knowledge of NIS inhibition potential in environmental chemicals and provides critical support to U.S. EPA's Endocrine Disruptor Screening Program (EDSP) initiative to expand coverage of thyroid molecular targets, as well as the development of thyroid adverse outcome pathways (AOPs).
碘通过钠-碘转运体(NIS)的摄取是甲状腺激素生物合成的第一步,甲状腺激素对人类和野生动物的健康和发育至关重要。尽管高氯酸盐等内分泌干扰化学物质早已被公认为是其已知的靶标,但对于绝大多数环境化学物质,其 NIS 抑制活性的信息仍然未知。本研究应用了先前验证的高通量方法,在 ToxCast 一期文库中筛选 NIS 抑制剂,该文库代表了 293 种重要的环境化学物质。在此,310 个盲样采用分层方法进行筛选,首先使用单一浓度(100μM)放射性碘摄取(RAIU)测定法进行初步筛选,然后对 169 个样本进行多浓度(0.001μM-100μM)测试,同时平行进行 RAIU 和细胞活力测定。还开发了一种新的化学物质排名系统,该系统将多浓度 RAIU 和细胞毒性反应相结合,作为当前和未来筛选中化学物质优先排序的标准化方法。还进一步讨论了高排名化学物质的代表性化学响应和甲状腺效应。本研究显著扩展了环境化学物质中 NIS 抑制潜力的现有知识,并为美国环保署的内分泌干扰物筛选计划(EDSP)倡议提供了重要支持,该倡议旨在扩大甲状腺分子靶标的覆盖范围,以及开发甲状腺不良结局途径(AOPs)。