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Updated: Jan 31, 2026

Author Spotlight: Accurately Assessing Thyroid Hormone-Driven Motor Alterations in Mouse
Published on: October 6, 2023
Aortic effects of thyroid hormone in male mice
Sogol Gachkar1, Sebastian Nock1, Cathleen Geissler2
1Molecular Endocrinology, Medical Department I, University of Lübeck, Lübeck, Germany.
Abstract:
It is well established that thyroid hormones are required for cardiovascular functions; however, the molecular mechanisms remain incompletely understood, especially the individual contributions of genomic and non-genomic signalling pathways. In this study, we dissected how thyroid hormones modulate aortic contractility. To test the immediate effects of thyroid hormones on vasocontractility, we used a wire myograph to record the contractile response of dissected mouse aortas to the adrenergic agonist phenylephrine in the presence of different doses of T3 (3,3',5-triiodothyronine). Interestingly, we observed reduced vasoconstriction under low and high T3 concentrations, indicating an inversed U-shaped curve with maximal constrictive capacity at euthyroid conditions. We then tested for possible genomic actions of thyroid hormones on vasocontractility by treating mice for 4 days with 1 mg/L thyroxine in drinking water. The study revealed that in contrast to the non-genomic actions the aortas of these animals were hyperresponsive to the contractile stimulus, an effect not observed in endogenously hyperthyroid TRβ knockout mice. To identify targets of genomic thyroid hormone action, we analysed aortic gene expression by microarray, revealing several altered genes including the well-known thyroid hormone target gene hairless. Taken together, the findings demonstrate that thyroid hormones regulate aortic tone through genomic and non-genomic actions, although genomic actions seem to prevail in vivo. Moreover, we identified several novel thyroid hormone target genes that could provide a better understanding of the molecular changes occurring in the hyperthyroid aorta.
Insights
Thyroid hormones impact aortic contractility through both rapid non-genomic and slower genomic pathways. Genomic actions appear more significant in vivo, influencing vascular tone and identifying new molecular targets.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Molecular Biology
Background:
- Thyroid hormones are crucial for cardiovascular function.
- The precise molecular mechanisms, including genomic and non-genomic pathways, are not fully understood.
Purpose of the Study:
- To investigate how thyroid hormones modulate aortic contractility.
- To differentiate between the immediate (non-genomic) and delayed (genomic) effects of thyroid hormones on vascular tone.
Main Methods:
- Wire myography was used to assess mouse aortic contractility in response to phenylephrine with varying triiodothyronine (T3) concentrations.
- Mice were treated with thyroxine to study genomic effects, and gene expression was analyzed via microarray.
- TRβ knockout mice were used to investigate the role of specific thyroid hormone receptors.
Main Results:
- Thyroid hormones exhibited an inverse U-shaped effect on aortic vasoconstriction, with maximal response at euthyroid levels.
- Genomic actions led to hyperresponsiveness in aortic contractility, unlike non-genomic effects.
- Microarray analysis identified novel thyroid hormone target genes in the aorta, including hairless.
Conclusions:
- Thyroid hormones regulate aortic tone via both genomic and non-genomic signaling pathways.
- Genomic actions of thyroid hormones appear to be dominant in vivo.
- Novel molecular targets involved in thyroid hormone-mediated aortic function were identified.
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