Related Experiment Video
Updated: Jun 26, 2026

Magnetic Adjustment of Afterload in Engineered Heart Tissues
Published on: May 5, 2020
Cardiac hypertrophy and thyroid hormone signaling
1University of California, San Diego, USA. wdoffice@ucsd.edu
Insights
Thyroid hormone significantly impacts cardiovascular function, influencing contraction, relaxation, and heart rate. In heart failure, reduced thyroid hormone signaling worsens cardiac function, highlighting a potential therapeutic target.
Area of Science:
- Cardiovascular Physiology
- Endocrinology
- Molecular Cardiology
Background:
- Thyroid hormone (TH) profoundly influences the cardiovascular system, affecting contractility, relaxation, heart rate, and vascular tone.
- Key effects are mediated by thyroid hormone receptors (TRalpha and TRbeta), with TRalpha predominant in the heart.
- Both genomic and rapid non-genomic TH actions are observed, impacting calcium flux and gene expression.
Purpose of the Study:
- To elucidate the multifaceted roles of thyroid hormone in cardiovascular regulation.
- To investigate the complex interplay between thyroid hormone action and cardiac hypertrophy in both physiological and pathological states.
- To examine the implications of altered thyroid hormone signaling in heart failure.
Main Methods:
- Analysis of thyroid hormone receptor (TR) expression and function in cardiac myocytes.
- Investigation of gene expression changes related to calcium handling (SERCa2, phospholamban) and myofibrillar proteins (myosin heavy chain).
- Examination of thyroid hormone signaling in animal models of cardiac hypertrophy and heart failure.
Main Results:
- Increased thyroid hormone enhances systolic contraction and diastolic relaxation but increases heart rate and atrial fibrillation risk.
- Thyroid hormone influences calcium handling by regulating SERCa2 and ryanodine channels.
- In heart failure, a downregulation of thyroid hormone receptors and decreased serum T3 levels are observed, correlating with poor prognosis.
Conclusions:
- Thyroid hormone exerts both beneficial and detrimental effects on the cardiovascular system.
- Heart failure is associated with a hypothyroid-like state in the heart, contributing to diminished cardiac function.
- Restoring thyroid hormone receptor levels may represent a therapeutic strategy for improving cardiac function in heart failure.
Abstract:
Thyroid hormone exerts a large number of influences on the cardiovascular system. Increased thyroid hormone action increases the force and speed of systolic contraction and the speed of diastolic relaxation and these are largely beneficial effects. Furthermore, thyroid hormone has marked electrophysiological effects increasing heart rate and the propensity for atrial fibrillation and these effects are largely mal-adaptive. In addition, thyroid hormone markedly increases cardiac angiogenesis and decreases vascular tone. These multiple thyroid hormone effects are largely mediated by the action of nuclear based thyroid hormone receptors (TR) the thyroid hormone receptor alpha and beta. TRalpha is the predominant isoform in the heart. Rapid nongenomic thyroid hormone effects also occur, which can be clearly demonstrated in ex-vivo experiments. Some of the most marked thyroid hormone effects in cardiac myocytes involve influences on calcium flux, with thyroid hormone promoting expression of the gene encoding the calcium pump of the sarcoplasmic reticulum (SERCa2). In contrast, in hypothyroid animals phospholamban levels, which inhibit the SERCa2 pump, are increased. In addition, marked effects are exerted on the calcium channel of the sarcoplasmic reticulum the ryanodine channel. Related to myofibrillar proteins, myosin heavy chain alpha is increased by T3 and MHC beta is decreased. Complex and interesting interactions occur between cardiac hypertrophy induced by excess thyroid hormone action and cardiac hypertrophy occurring with heart failure. The thyroid hormone mediated cardiac hypertrophy in its initial phases presents a physiological hypertrophy with increases in SERCa2 levels and decreased expression of MHC beta. In contrast, pressure overload induced heart failure leads to a "pathological" cardiac hypertrophy which is largely mediated by activation of the calcineurin system and the MAPkinases signaling system. Recent evidence indicates that heart failure can lead to a downregulation of the thyroid hormone signaling system in the heart. In the failing heart, decreases of thyroid hormone receptor levels occur. In addition, serum levels of T4 and T3 are decreased with heart failure in the frame of the non-thyroidal illness syndrome. The decrease in T3 serves as an indicator for a bad prognosis in the heart failure patient being linked to increased mortality. In animal models, it can be shown that in pressure overload-induced cardiac hypertrophy a decrease of thyroid hormone receptor levels occurs. Cardiac function can be improved by increasing expression of thyroid hormone receptors mediated by adeno-associated virus based gene transfer. The failing heart may develop a "hypothyroid" status contributing to diminished cardiac contractile function.
Related Concept Videos
Cellular Adaptation II: Hypertrophy
Hyperthyroidism II: Pathophysiology
Functions of Thyroid Hormones
TH is indispensable for the normal development and maturation of the skeletal, muscular, and nervous systems during fetal and childhood growth. It facilitates bone mineral turnover and regulates protein synthesis in developing tissues, contributing significantly to overall growth and...
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The iodine is then...
Graves Disease II: Pathophysiology
Heart Failure II: Pathophysiology

