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Published on: January 27, 2013
T-Screen as a tool to identify thyroid hormone receptor active compounds
Arno C Gutleb1, Ilonka A T M Meerts, Joost H Bergsma
1Toxicology Section, Wageningen University, Tuinlaan 5, NL-6703 HE Wageningen, The Netherlands.
Abstract:
The T-Screen represents an in vitro bioassay based on thyroid hormone dependent cell proliferation of a rat pituitary tumour cell line (GH3) in serum-free medium. It can be used to study interference of compounds with thyroid hormone at the cellular level, thus bridging the gap between limitations of assays using either isolated molecules (enzymes, transport proteins) or complex in vivo experiments with all the complex feedback mechanisms present. Compounds are tested both in the absence and presence of thyroid hormone (EC(50) concentration of T(3)) to test for both agonistic and antagonistic potency. Thyroid hormones (3,3'-5-triiodothyronine: T(3) and 3,3',5,5'-tetraiodothyroxine: T(4)) and compounds resembling the structure of thyroid hormones (3,3'-5-triiodothyroacetic acid: Triac; 3,3',5,5'-tetraiodothyroacetic acid: Tetrac) induced cell growth, with the rank order Triac > T(3) > Tetrac > T(4) (relative potency = 1.35 > 1 > 0.29 > 0.07), which is identical to published affinities of these compounds for nuclear thyroid hormone receptors. Exposure to 5,5'-diphenylhydantoin (DPH) in the presence of 0.25nM T(3) resulted in up to 60% decreased cell growth at 200μM DPH. No effect of DPH on basal metabolic activity of GH3 cells was observed at this concentration. Fentinchloride (IC(50) = 21nM) decreased cell growth induced by 0.25nM T(3), whereas parallel exposure to these concentrations in the absence of T(3) did not alter basal metabolic activities of GH3 cells. Apolar sediment extracts from the Dommel (34%) and Terneuzen (14%) decreased cell growth in the presence of 0.25nM T(3), whereas the extract from Hoogeveen increased cell growth (26%) and the extract from North Sea Channel had no effect. The T-Screen proved to be a fast and functional assay for assessing thyroid hormone receptor active potencies of pure chemicals or environmental mixtures.
Insights
The T-Screen assay measures thyroid hormone activity by assessing cell proliferation. This method effectively evaluates compounds and environmental mixtures for their potential to interfere with thyroid hormone pathways.
Area of Science:
- Endocrinology
- Cell Biology
- Environmental Toxicology
Background:
- Thyroid hormones (T3 and T4) are crucial for cellular functions.
- Existing assays have limitations in studying thyroid hormone interference.
- A need exists for a functional assay to assess thyroid hormone receptor activity.
Purpose of the Study:
- To introduce and validate the T-Screen, an in vitro bioassay for thyroid hormone activity.
- To assess the agonistic and antagonistic potential of compounds and environmental samples.
- To bridge the gap between isolated molecule assays and complex in vivo studies.
Main Methods:
- Utilized the GH3 rat pituitary tumor cell line in serum-free medium.
- Measured thyroid hormone-dependent cell proliferation.
- Tested compounds and extracts in the presence and absence of thyroid hormone (T3).
Main Results:
- Thyroid hormones (T3, T4) and analogs (Triac, Tetrac) demonstrated dose-dependent cell growth.
- Rank order of potency: Triac > T(3) > Tetrac > T(4), correlating with nuclear receptor affinities.
- 5,5'-diphenylhydantoin and Fentinchloride inhibited T3-induced cell growth.
- Environmental extracts showed varied effects on cell proliferation, with some inhibiting and others stimulating growth.
Conclusions:
- The T-Screen is a rapid and functional assay for evaluating thyroid hormone receptor activity.
- It can assess the potency of pure chemicals and complex environmental mixtures.
- The assay provides insights into potential endocrine disruption by environmental contaminants.
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