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Published on: February 16, 2016
Cardiac effect of thyrotoxicosis in acromegaly
P Marzullo1, A Cuocolo, D Ferone
1Department of Molecular and Clinical Endocrinology, University Federico II, Naples, Italy.
Insights
Hyperthyroidism negatively impacts the cardiovascular system in acromegaly patients, increasing left ventricular mass and impairing ejection fraction response to exercise. Effective control of growth hormone (GH) and insulin-like growth factor I is crucial for managing cardiovascular risk.
Area of Science:
- Cardiology
- Endocrinology
- Internal Medicine
Background:
- Acromegaly is associated with ventricular hypertrophy and diastolic/systolic dysfunction.
- Hyperthyroidism typically increases heart rate, contractility, and cardiac output.
- The combined effects of acromegaly and hyperthyroidism on cardiac function require further investigation.
Purpose of the Study:
- To compare cardiovascular parameters in hyperthyroid acromegalic patients versus controls.
- To longitudinally assess cardiovascular changes in acromegalic patients during hyperthyroidism and its remission.
- To investigate the impact of growth hormone (GH) and insulin-like growth factor I (IGF-I) on cardiac function in these patients.
Main Methods:
- A two-arm study involving cross-sectional and longitudinal designs.
- Echocardiography and radionuclide angiography were used to assess cardiac structure and function.
- Comparison groups included hyperthyroid acromegalic patients, hyperthyroid non-acromegalic patients, and healthy subjects.
Main Results:
- Hyperthyroid acromegalics exhibited increased left ventricular mass index (LVMi) and hypertrophy compared to controls.
- A significant correlation was found between LVMi and GH levels, and an inverse correlation between GH and left ventricular ejection fraction (LVEF).
- Exercise-induced LVEF response was reduced in acromegalics, and hyperthyroidism worsened LVMi and resting LVEF, while exercise LVEF improved upon hyperthyroid remission.
Conclusions:
- Hyperthyroidism exerts a detrimental cardiovascular effect in acromegaly patients, particularly those with uncontrolled GH/IGF-I.
- Effective control of GH and IGF-I is essential for mitigating persistent cardiovascular risk.
- Continuous endocrine and cardiovascular monitoring is crucial for managing acromegaly patients with coexisting hyperthyroidism.
Abstract:
Cardiac structure and function are affected both by acromegaly and hyperthyroidism. Whereas the former is mainly characterized by ventricular hypertrophy as well as diastolic and systolic impairment, the latter frequently leads to increased heart rate and enhancement of contractility and cardiac output. To further investigate this issue, we designed this two-arm study. In the first cross-sectional study, we compared echocardiography and radionuclide angiography results obtained in eight hyperthyroid acromegalic patients, eight hyperthyroid nonacromegalic patients, and eight healthy subjects. All acromegalic patients were receiving treatment for acromegaly at the onset of hyperthyroidism. In the second longitudinal study, performed in the group of acromegalic patients, we compared the cardiovascular results obtained during hyperthyroidism with the retrospective data obtained at the initial diagnosis of acromegaly and after 1-yr treatment for this disease and those prospective data obtained during the remission of hyperthyroidism. In the cross-sectional study, hyperthyroid acromegalic patients showed an increase in the left ventricular (LV) mass index (LVMi) compared to healthy and hyperthyroid controls (P < 0.05), with evidence of LVMi hypertrophy in five of them (62.5%). A significant correlation was found between LVMi and GH levels (r = 0.785; P < 0.05). The LV ejection fraction (LVEF) at rest was higher in the control hyperthyroid population than in healthy controls (P < 0.05), whereas the LVEF response to exercise was reduced in acromegalic patients (P < 0.05 vs. healthy controls). In acromegalics, the exercise-induced change in LVEF was significantly reduced compared to that in healthy controls (P < 0.001), but not to that in hyperthyroid controls (P < 0.07), being abnormal (<5% increase vs. baseline values) in six patients. Four of these six patients (66%) had elevated GH and insulin-like growth factor I levels during the treatment of acromegaly. An inverse correlation between GH and LVEF at rest (r = -0.896;P < 0.05) and at peak exercise (r = -0.950; P < 0.001) was recorded. The peak filling rate was reduced in hyperthyroid acromegalic patients compared to those in both control populations (P < 0.05). In the longitudinal study, acromegalic patients showed an increased LVMi during hyperthyroidism compared to that observed after successful treatment of acromegaly (P < 0.05); resting LVEF was increased compared to both basal (P < 0.001) and posttreatment values (P < 0.05). However, the exercise-induced change in LVEF was reduced (P < 0.05 vs. previous follow-up values). Remission of hyperthyroidism led to significant reduction of LVMi (P < 0.05) and resting LVEF (P < 0.05) and an increase in exercise-induced LVEF (P < 0.05). In light of these findings, hyperthyroidism produces a detrimental effect on the cardiovascular system of acromegalic patients, particularly in those with uncontrolled disease. Thus, control of GH and insulin-like growth factor I should be a major objective, as cardiovascular risk persists in patients with ineffective hormonal suppression, and constant endocrine and cardiovascular surveillance remain crucial steps in patient follow-up.
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