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Updated: Apr 26, 2026

Author Spotlight: Exploring the Relationship Between Lipotoxicity and HFpEF
Published on: March 29, 2024
Levothyroxine replacement in hypothyroid humans reduces myocardial lipid load and improves cardiac function
Thomas Scherer1, Peter Wolf, Yvonne Winhofer
1Department of Medicine III, Division of Endocrinology and Metabolism (T.S., P.W., Y.W., A.G., A.L., S.B.-P., M.Krš., M.Kre.); Department of Nuclear Medicine (H.D., M.H.); Department of Medical and Chemical Laboratory Diagnostics (E.E.); Department of Biomedical Imaging and Image Guided Therapy, High Field Magnetic Resonance Centre of Excellence (S.T., M.Krš.); and Department of Internal Medicine II, Division of Cardiology (A.N.), Medical University of Vienna, 1090 Vienna, Austria.
Context:
Hypothyroidism is a common endocrine disorder frequently accompanied by alterations in lipid metabolism, such as hypercholesterolemia and high circulating triglycerides, both risk factors for nonischemic cardiomyopathy. Rodent studies suggest that the hypothyroid state promotes cardiac lipid retention by increasing lipid uptake into cardiomyocytes while reducing fatty acid oxidation. Furthermore, increased cardiac lipid load has been linked to cardiac dysfunction.
Objective:
Dyslipidemia and hypothyroidism frequently coexist; thus, we hypothesized that overt hypothyroidism causes cardiac lipid deposition and ultimately cardiac dysfunction.
Design:
An interventional prospective study with balanced within-subject comparison. PARTICIPANTS/SETTING/INTERVENTION: Ten patients recruited at an academic center, who underwent a thyroidectomy due to differentiated thyroid carcinoma, were examined 4 weeks postoperatively in the overtly hypothyroid state, right before radioiodine therapy, and 6-8 weeks after initiation of levothyroxine replacement.
Main Outcome Parameters:
We measured cardiac lipid content and function in vivo before and after levothyroxine treatment using electrocardiogram-gated (1)H-magnetic resonance spectroscopy and imaging.
Results:
Levothyroxine therapy reduced cardiac lipid content in nine of the 10 patients (0.35 ± 0.09 vs 0.22 ± 0.06 % water signal; P = .008; n = 10) and improved cardiac index (2 ± 0.2 vs 2.4 ± 0.1 L/min/m(2); P = .047) when comparing the hypothyroid with the euthyroid state, independent of changes in liver fat content (7.5 ± 3.2 vs 7.1 ± 2.6% magnetic resonance spectroscopy signal; P = .60) or body weight.
Conclusion:
Here we show that levothyroxine treatment reduces lipid accumulation in the heart and increases cardiac output in overtly hypothyroid patients. These results could in part explain the increased risk of death and heart failure in hypothyroid patients.
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