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Serum thyroid hormone levels may not accurately reflect thyroid tissue levels and cardiac function in mild
Yingheng Liu1, Rebecca A Redetzke, Suleman Said
1Cardiovascular Research Center, Sanford Research/University of South Dakota, 1100 East 21st Street, Sioux Falls, SD 57105, USA.
Insights
Mild thyroid dysfunction impacts heart function and blood vessels. This study developed a rat model showing that even borderline low thyroid hormone levels impair cardiac health, highlighting the need for careful diagnosis.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Animal Modeling
Background:
- Thyroid dysfunction is linked to cardiovascular disease, but effects of mild dysfunction are unclear.
- A suitable animal model is needed to study cardiovascular consequences of graded thyroid activity.
Purpose of the Study:
- To characterize a rat model for investigating cardiovascular function under varying thyroid hormone levels.
- To assess the impact of different thyroxine (T4) doses on cardiac function and myocardial arteriolar density.
Main Methods:
- Rats underwent surgical thyroidectomy and received subcutaneous T4 pellets at three doses for 3 weeks.
- Cardiac function was assessed via echocardiography and hemodynamics; myocardial arteriolar density was quantified.
- Serum and heart tissue thyroid hormone levels were measured using radioimmunoassay (RIA).
Main Results:
- Thyroidectomy caused cardiac atrophy, dysfunction, and arteriolar loss.
- Low-dose T4 normalized serum hormones but not cardiac function or arteriolar density.
- Mid-dose T4 normalized cardiac function and arteriolar density; high-dose T4 induced hyperthyroidism.
Conclusions:
- Thyroid hormones are crucial regulators of cardiac function and myocardial vascularization.
- This rat model is valuable for studying mild thyroid dysfunction's cardiovascular effects.
- Cardiac function assessment may aid in diagnosing subtle thyroid conditions.
Abstract:
The link between thyroid dysfunction and cardiovascular diseases has been recognized for more than 100 years. Although overt hypothyroidism leads to impaired cardiac function and possibly heart failure, the cardiovascular consequences of borderline low thyroid function are not clear. Establishment of a suitable animal model would be helpful. In this study, we characterized a rat model to study the relationship between cardiovascular function and graded levels of thyroid activity. We used rats with surgical thyroidectomy and subcutaneous implantation of slow release pellets with three different T(4) doses for 3 wk. In terminal experiments, cardiac function was evaluated by echocardiograms and hemodynamics. Myocardial arteriolar density was also quantified morphometrically. Thyroid hormone levels in serum and heart tissue were determined by RIA assays. Thyroidectomy alone led to cardiac atrophy, severe cardiac dysfunction, and a dramatic loss of arterioles. The low T(4) dose normalized serum T(3) and T(4) levels, but cardiac tissue T(3) and T(4) remained below normal. Low-dose T(4) failed to prevent cardiac atrophy or restore cardiac function and arteriolar density to normal values. All cardiac function parameters and myocardial arteriolar density were normalized with the middle dose of T(4), whereas the high dose produced hyperthyroidism. Our results show that thyroid hormones are important regulators of cardiac function and myocardial arteriolar density. This animal model will be useful in studying the pathophysiological consequences of mild thyroid dysfunction. Results also suggest that cardiac function may provide valuable supplemental information in proper diagnosis of mild thyroid conditions.
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