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Endocrine hormone imbalance in heart failure with reduced ejection fraction: A cross-sectional study
Matthias P Nägele1, Jens Barthelmes1, Leonie Kreysing1
1Cardiology University Heart Center Zurich, University Hospital Zurich Zurich Switzerland.
Insights
Heart failure patients show hormonal imbalances, including altered thyroid, parathyroid, cortisol, and testosterone levels, even with treatment. These endocrine changes highlight the complex nature of heart failure progression.
Area of Science:
- Endocrinology
- Cardiology
- Internal Medicine
Background:
- Sustained neurohormonal activation is central to heart failure (HF) progression.
- Endocrine axes beyond the primary neurohormonal pathways may be affected in HF.
- Understanding these hormonal changes is crucial for managing HF patients on disease-modifying therapy.
Purpose of the Study:
- To investigate the endocrine profile of patients with HF and reduced ejection fraction (EF).
- To assess thyroid, parathyroid, glucocorticoid, and sex hormone levels in HF patients on established therapy.
- To compare endocrine profiles between HF patients, those at risk for HF, and healthy controls.
Main Methods:
- Prospective measurement of morning fasting hormones in 52 stable HF patients (EF < 50%).
- Comparison of hormone levels with 54 patients at elevated HF risk and 62 healthy controls (HC).
- Statistical analysis included one-way ANOVA for comparisons and linear regression for associations with biomarkers.
Main Results:
- HF patients exhibited a reduced free triiodothyronine (fT3)/free thyroxine (fT4) ratio compared to HC.
- Parathyroid hormone (PTH) and cortisol levels were elevated in HF patients versus HC and at-risk groups.
- Total testosterone was reduced in male HF patients; lower fT3 correlated with lower EF and predicted NT-proBNP and troponin T levels.
Conclusions:
- Evidence of endocrine hormonal imbalance exists in HF with reduced EF, extending beyond principal neurohormones.
- These imbalances persist despite contemporary disease-modifying therapy.
- The findings underscore the importance of assessing a broader endocrine profile in HF management.
Background And Aims:
Sustained neurohormonal activation plays a central role in the progression of heart failure (HF). Other endocrine axes may also be affected. It was the aim of this study to examine the endocrine profile (thyroid, parathyroid, glucocorticoid, and sex hormones) in a contemporary sample of patients with HF and reduced ejection fraction (EF) on established disease-modifying therapy.
Methods:
This study prospectively measured morning fasting hormones in 52 ambulatory and stable HF patients with EF < 50% on disease-modifying therapy (mean age 63 ± 11 years, 29% female, mean LVEF 32 ± 9.6%) and compared them to 54 patients at elevated risk for HF (61 ± 12 years, 28% female) and 62 healthy controls (HC; 61 ± 13 years, 27% female). Main comparisons were performed using one-way analysis of variance. Associations with biomarkers were studied with linear regression.
Results:
HF patients showed a reduced free triiodothyronine (fT3)/free thyroxine (fT4) ratio compared to HC (0.30 ± 0.06 vs. 0.33 ± 0.05, p = 0.046). Parathyroid hormone (PTH) and cortisol were increased in HF compared to both HC (median [IQR] 59 [50-84] vs. 46 [37-52] ng/L, p < 0.001 and 497 ± 150 vs. 436 ± 108 nmol/L, p = 0.03, respectively) and patients at risk (both p < 0.001). Total testosterone was reduced in male HF compared to HC (14.4 ± 6.6 vs. 18.6 ± 5.3 nmol/L; p = 0.01). No differences in TSH, estradiol, progesterone, and prolactin were found. Lower fT3 levels were found in HF with EF < 40% versus EF 40%-49% (4.6 ± 0.3 vs. 5.2 ± 0.7 pmol/L, p = 0.009). In HF patients, fT3 was an independent predictor of NT-proBNP and high-sensitivity troponin T in multiple regression analysis. PTH was positively associated with NT-proBNP.
Conclusion:
There is evidence of endocrine hormonal imbalance in HF with reduced EF beyond principal neurohormones and despite the use of disease-modifying therapy.
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