Aortic effects of thyroid hormone in male mice

Sogol Gachkar1, Sebastian Nock1, Cathleen Geissler2

  • 1Molecular Endocrinology, Medical Department I, University of Lübeck, Lübeck, Germany.

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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