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A Role of Thyroid Hormones in Acute Myocardial Infarction: An Update
Rabia Rasool1, Ahsanullah Unar2, Tassadaq Hussain Jafar3
1Institute of Molecular Biology and Biotechnology, The University of Lahore, Lahore, Pakistan.
Insights
Thyroid dysfunction contributes to acute coronary syndrome by impairing antioxidant capacity and inducing oxidative stress, leading to atherosclerosis. Restoring normal thyroid function can reverse cardiovascular abnormalities.
Area of Science:
- Cardiology
- Endocrinology
- Pathophysiology
Background:
- Acute coronary syndrome (ACS) is a life-threatening condition encompassing myocardial ischemia, unstable angina, and myocardial infarction.
- Risk factors like obesity, smoking, and alcohol contribute to ACS by promoting atherosclerosis.
- Thyroid hormones regulate cardiac gene expression; dysfunction can cause significant cardiovascular manifestations.
Purpose of the Study:
- To explore the link between thyroid dysfunction, oxidative stress, and acute myocardial infarction.
- To elucidate the cellular mechanisms by which thyroid hormones influence cardiovascular function.
- To highlight the potential for thyroid function restoration in managing ACS.
Main Methods:
- Review of existing literature on thyroid hormones, oxidative stress, and cardiovascular disease.
- Analysis of cellular mechanisms of thyroid hormone action on the heart.
- Correlation of thyroid dysfunction with cardiovascular hemodynamics and atherosclerosis.
Main Results:
- Thyroid dysfunction exacerbates oxidative stress and reduces antioxidant capacity, promoting endothelial dysfunction and atherosclerosis.
- Alterations in thyroid hormone levels impact cardiac gene expression, leading to rhythm disturbances and changes in cardiac output, blood pressure, contractility, and vascular resistance.
- Restoration of normal thyroid function has been observed to reverse cardiovascular hemodynamic abnormalities.
Conclusions:
- Thyroid dysfunction is a significant contributor to the development of acute myocardial infarction through oxidative stress and atherosclerosis.
- Understanding thyroid hormone's cellular mechanisms provides insight into cardiovascular manifestations of thyroid disease.
- Managing thyroid function is crucial for reversing cardiovascular abnormalities associated with acute coronary syndrome.
Abstract:
The acute coronary syndrome is one of the commonest life-threatening illnesses. It encompasses the clinical spectrum of acute myocardial ischemia and includes unstable angina and acute myocardial infarction both with and without ST segment elevation. The acute coronary syndrome can be attributed to a significant hemodynamic insult that leads to atherosclerosis of the epicardial coronary arteries. The main causative risk factors, such as obesity, smoking, and alcohol intake, increase the burden of acute coronary syndrome. Owing to an increase in the utilization of antioxidants, the antioxidant capacity decreases concerning the scavenging of lipid peroxides. Moreover, the thyroid hormones are important regulators of the expression of cardiac genes, and many of the cardiac manifestations of thyroid dysfunction are associated with alterations in triiodothyronine- mediated gene expression. Cardiovascular signs and symptoms of thyroid disease are among the most acute clinically relevant findings that occur in combination with both hypothyroidism and hyperthyroidism. By understanding the cellular mechanism of the action of thyroid hormones on the heart and cardiovascular system, it is possible to explain rhythm disturbances and alterations in cardiac output, blood pressure, cardiac contractility, and vascular resistance that result from thyroid dysfunction. Oxidative stress is thereby induced, together with a decrease in antioxidant capacity for overcoming oxidative stress, which leads to endothelial dysfunction, subsequent atherosclerosis, and, ultimately, acute myocardial infarction. The implications for the identification of the effects of thyroid disease on acute myocardial infarction include the observation that restoration of normal thyroid function repeatedly reverses abnormalities in cardiovascular hemodynamics.
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