4.4 Article

Screening for chemicals with thyroid hormone-disrupting effects using zebrafish embryo

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REPRODUCTIVE TOXICOLOGY
卷 121, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.reprotox.2023.108463

关键词

Zebrafish; New Approach Methodology (NAM); Hypothalamus-Pituitary-Thyroid (HPT) axis; Reproduction Adverse Effects; Endocrine Disruption; in vivo Fluorescence imaging; Thyroid hormone; Liquid Chromatography Mass Spectrometry; (LCMS)

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Thyroid disruption is a growing concern in the use and development of chemicals and new drugs. This study presents a tiered approach using zebrafish embryos for medium-throughput screening to assess the thyroid-disrupting potential of chemicals. By analyzing fluorescence levels and measuring thyroid hormone levels, the study identifies the thyroid disruption effects of chemicals.
Thyroid disruption is an increasingly recognized issue in the use and development of chemicals and new drugs, especially to help toxicologist to complement the reproductive and developmental toxicology information of chemicals. Still, adequate assessment methods are scarce and often suffer a trade-off between physiological relevance and labor-and cost-intensive assays. Here, we present a tiered approach for a medium-throughput screening of chemicals to identify their thyroid disrupting potential in zebrafish embryos as a New Approach Methodology (NAM). After identifying the maximum tolerated concentrations, we exposed zebrafish larvae to sub-adverse effect levels of the reference compounds benzophenone-2, bisphenol A, phenylthiourea, potassium perchlorate, propylthiouracil, and phloroglucinol to exclude any systemic toxicity. Applying the transgenic zebrafish line that carries a gene for the red fluorescence protein (Tg(tg:mCherry)) under the thyroglobulin promoter, we could identify the thyroid disrupting effects of the chemicals by a time and cost-effective image analysis measuring the fluorescence levels in the thyroid glands. Our observations could be confirmed by altered expression patterns of genes involved in the hypothalamus-pituitary-thyroid (HPT) axis. Finally, to anchor the observed thyroid disruption, we determined some changes in the Thyroid hormone levels of triiodothyronine (T3) and Thyroxine (T4) using a newly developed liquid chromatography mass spectrometric (LCMS) method. The presented approach carries the potential to extend the toolbox for legislative authorities and chemical producers for the assessment of thyroid-specific endocrine disruption and to overcome current challenges in the evaluation of endocrine disruptors.

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