J 2024

In vitro assessment of thyroid peroxidase inhibition by chemical exposure: comparison of cell models and detection methods

LIU, Runze, Jiří NOVÁK and Klára HILSCHEROVÁ

Basic information

Original name

In vitro assessment of thyroid peroxidase inhibition by chemical exposure: comparison of cell models and detection methods

Authors

LIU, Runze (156 China, belonging to the institution), Jiří NOVÁK (203 Czech Republic, belonging to the institution) and Klára HILSCHEROVÁ (203 Czech Republic, guarantor, belonging to the institution)

Edition

Archives of Toxicology, HEIDELBERG, Springer, 2024, 0340-5761

Other information

Language

English

Type of outcome

Article in a journal

Country of publisher

Germany

Confidentiality degree

is not subject to a state or trade secret

References:

RIV identification code

RIV/00216224:14310/24:00137045

Organization

Přírodovědecká fakulta – Repository – Repository

UT WoS

001234023900002

EID Scopus

2-s2.0-85194396724

Keywords in English

Thyroid; Peroxidation; In vitro; Amplex UltraRed; Luminol; Cross-species

Links

GX20-04676X, research and development project. 825753, interní kód Repo. 857560, interní kód Repo. RECETOX RI II, large research infrastructures.
Changed: 6/6/2025 00:50, RNDr. Daniel Jakubík

Abstract

V originále

Disruption of the thyroid hormone (TH) system is connected with diverse adverse health outcomes in wildlife and humans. It is crucial to develop and validate suitable in vitro assays capable of measuring the disruption of the thyroid hormone (TH) system. These assays are also essential to comply with the 3R principles, aiming to replace the ex vivo tests often utilised in the chemical assessment. We compared the two commonly used assays applicable for high throughput screening [Luminol and Amplex UltraRed (AUR)] for the assessment of inhibition of thyroid peroxidase (TPO, a crucial enzyme in TH synthesis) using several cell lines and 21 compounds from different use categories. As the investigated cell lines derived from human and rat thyroid showed low or undetectable TPO expression, we developed a series of novel cell lines overexpressing human TPO protein. The HEK-TPOA7 model was prioritised for further research based on the high and stable TPO gene and protein expression. Notably, the Luminol assay detected significant peroxidase activity and signal inhibition even in Nthy-ori 3-1 and HEK293T cell lines without TPO expression, revealing its lack of specificity. Conversely, the AUR assay was specific to TPO activity. Nevertheless, despite the different specificity, both assays identified similar peroxidation inhibitors. Over half of the tested chemicals with diverse structures and from different use groups caused TPO inhibition, including some widespread environmental contaminants suggesting a potential impact of environmental chemicals on TH synthesis. Furthermore, in silico SeqAPASS analysis confirmed the high similarity of human TPO across mammals and other vertebrate classes, suggesting the applicability of HEK-TPOA7 model findings to other vertebrates.

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