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Alterations in Glucose Metabolism During the Transition to Heart Failure: The Contribution of UCP-2.
- Source :
-
Cells [Cells] 2020 Feb 27; Vol. 9 (3). Date of Electronic Publication: 2020 Feb 27. - Publication Year :
- 2020
-
Abstract
- The cardiac expression of the mitochondrial uncoupling protein (UCP)-2 is increased in patients with heart failure. However, the underlying causes as well as the possible consequences of these alterations during the transition from hypertrophy to heart failure are still unclear. To investigate the role of UCP-2 mechanistically, expression of UCP-2 was silenced by small interfering RNA in adult rat ventricular cardiomyocytes. We demonstrate that a downregulation of UCP-2 by siRNA in cardiomyocytes preserves contractile function in the presence of angiotensin II. Furthermore, silencing of UCP-2 was associated with an upregulation of glucose transporter type (Glut)-4, increased glucose uptake, and reduced intracellular lactate levels, indicating improvement of the oxidative glucose metabolism. To study this adaptation in vivo, spontaneously hypertensive rats served as a model for cardiac hypertrophy due to pressure overload. During compensatory hypertrophy, we found low UCP-2 levels with an upregulation of Glut-4, while the decompensatory state with impaired function was associated with an increase of UCP-2 and reduced Glut-4 expression. By blocking the aldosterone receptor with spironolactone, both cardiac function as well as UCP-2 and Glut-4 expression levels of the compensated phase could be preserved. Furthermore, we were able to confirm this by left ventricular (LV) biopsies of patients with end-stage heart failure. The results of this study show that UCP-2 seems to impact the cardiac glucose metabolism during the transition from hypertrophy to failure by affecting glucose uptake through Glut-4. We suggest that the failing heart could benefit from low UCP-2 levels by improving the efficiency of glucose oxidation. For this reason, UCP-2 inhibition might be a promising therapeutic strategy to prevent the development of heart failure.<br />Competing Interests: UCP-2, uncoupling protein 2
- Subjects :
- Animals
Blood Pressure drug effects
Cardiomegaly complications
Cardiomegaly metabolism
Cardiomegaly physiopathology
Cell Survival drug effects
Chronic Disease
Female
Glucose Transporter Type 4 metabolism
Heart Failure complications
Heart Failure physiopathology
Heart Ventricles pathology
Humans
Hypertension complications
Hypertension metabolism
Hypertension physiopathology
Iridoids pharmacology
Male
Mitochondria, Heart metabolism
Models, Cardiovascular
Myocytes, Cardiac drug effects
Myocytes, Cardiac metabolism
Myocytes, Cardiac pathology
Rats, Wistar
Spironolactone pharmacology
Glucose metabolism
Heart Failure metabolism
Uncoupling Protein 2 metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 2073-4409
- Volume :
- 9
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Cells
- Publication Type :
- Academic Journal
- Accession number :
- 32120777
- Full Text :
- https://doi.org/10.3390/cells9030552