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Subclinical Hypothyroidism Is Associated With Adverse Prognosis in Heart Failure Patients
Yu Sato1, Akiomi Yoshihisa1, Yusuke Kimishima1
1Department of Cardiovascular Medicine, Fukushima Medical University, Fukushima, Japan.
Insights
Subclinical hypothyroidism (sub-hypo) is linked to worse outcomes in heart failure (HF) patients. This condition is associated with reduced exercise capacity and increased pulmonary arterial pressure, leading to higher cardiac event rates and mortality.
Area of Science:
- Cardiology
- Endocrinology
- Internal Medicine
Background:
- Overt thyroid dysfunction is a known cause of heart failure (HF).
- Emerging evidence suggests subclinical hypothyroidism (sub-hypo) is associated with atherosclerosis, HF development, and cardiovascular death.
Purpose of the Study:
- To investigate the impact of sub-hypo on HF prognosis.
- To explore the effects of sub-hypo on hemodynamics and exercise capacity in HF patients.
Main Methods:
- Serum thyroid-stimulating hormone (TSH) and free thyroxine (FT4) levels were measured in 1100 HF patients.
- Patients were categorized into euthyroid and sub-hypo groups based on TSH and FT4 levels.
- Echocardiography, cardiopulmonary exercise testing, cardiac catheterization, and follow-up for cardiac events and mortality were performed.
Main Results:
- The sub-hypo group exhibited lower peak oxygen consumption and higher mean pulmonary arterial pressure compared to the euthyroid group.
- Kaplan-Meier analysis revealed significantly higher cardiac event rates and all-cause mortality in the sub-hypo group.
- Cox proportional hazard analysis identified sub-hypo as a predictor of adverse outcomes in HF patients.
Conclusions:
- Sub-hypo is associated with an adverse prognosis in HF patients.
- Impaired exercise capacity and elevated pulmonary arterial pressure accompany sub-hypo in HF.
- Sub-hypo may serve as a prognostic marker in heart failure management.
Background:
It is widely recognized that overt hyper- as well as hypothyroidism are potential causes of heart failure (HF). Additionally it has been recently reported that subclinical hypothyroidism (sub-hypo) is associated with atherosclerosis, development of HF, and cardiovascular death. We aimed to clarify the effect of sub-hypo on prognosis of HF, and underlying hemodynamics and exercise capacity.
Methods:
We measured the serum levels of thyroid stimulating hormone (TSH) and free thyroxine (FT4) in 1100 consecutive HF patients. We divided these patients into 5 groups on the basis of plasma levels of TSH and FT4, and focused on euthyroidism (0.4 ≤ TSH ≤ 4 μIU/mL and 0.7 ≤ FT4 ≤ 1.9 ng/dL; n = 911; 82.8%) and sub-hypo groups (TSH > 4 μIU/mL and 0.7 ≤ FT4 ≤ 1.9 ng/dL; n = 132; 12.0%). We compared parameters of echocardiography, cardiopulmonary exercise testing, and cardiac catheterization, and followed up for cardiac event rate and all-cause mortality between the 2 groups.
Results:
Although left ventricular ejection fraction did not differ between the 2 groups, the sub-hypo group had lower peak breath-by-breath oxygen consumption and higher mean pulmonary arterial pressure than the euthyroidism group (peak breath-by-breath oxygen consumption, 14.0 vs 15.9 mL/min/kg; P = 0.012; mean pulmonary arterial pressure, 26.8 vs 23.5 mm Hg, P = 0.020). In Kaplan-Meier analysis (mean 1098 days), the cardiac event rate and all-cause mortality were significantly higher in the sub-hypo group than those in the euthyroidism group (log rank, P < 0.01, respectively). In Cox proportional hazard analysis, sub-hypo was a predictor of cardiac event rate and all-cause mortality in HF patients (P < 0.05, respectively).
Conclusions:
Sub-hypo might be associated with adverse prognosis, accompanied by impaired exercise capacity and higher pulmonary arterial pressure, in HF patients.
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