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Metabolic Remodeling in the Pressure-Loaded Right Ventricle: Shifts in Glucose and Fatty Acid Metabolism-A Systematic Review and Meta-Analysis
- Source :
- Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease, Journal of the American Heart Association, 8(21):e012086. Wiley
- Publication Year :
- 2019
-
Abstract
- Background Right ventricular ( RV ) failure because of chronic pressure load is an important determinant of outcome in pulmonary hypertension. Progression towards RV failure is characterized by diastolic dysfunction, fibrosis and metabolic dysregulation. Metabolic modulation has been suggested as therapeutic option, yet, metabolic dysregulation may have various faces in different experimental models and disease severity. In this systematic review and meta‐analysis, we aimed to identify metabolic changes in the pressure loaded RV and formulate recommendations required to optimize translation between animal models and human disease. Methods and Results Medline and EMBASE were searched to identify original studies describing cardiac metabolic variables in the pressure loaded RV . We identified mostly rat‐models, inducing pressure load by hypoxia, Sugen‐hypoxia, monocrotaline (MCT), pulmonary artery banding ( PAB ) or strain (fawn hooded rats, FHR ), and human studies. Meta‐analysis revealed increased Hedges’ g (effect size) of the gene expression of GLUT 1 and HK 1 and glycolytic flux. The expression of MCAD was uniformly decreased. Mitochondrial respiratory capacity and fatty acid uptake varied considerably between studies, yet there was a model effect in carbohydrate respiratory capacity in MCT ‐rats. Conclusions This systematic review and meta‐analysis on metabolic remodeling in the pressure‐loaded RV showed a consistent increase in glucose uptake and glycolysis, strongly suggest a downregulation of beta‐oxidation, and showed divergent and model‐specific changes regarding fatty acid uptake and oxidative metabolism. To translate metabolic results from animal models to human disease, more extensive characterization, including function, and uniformity in methodology and studied variables, will be required.
- Subjects :
- PULMONARY ARTERIAL-HYPERTENSION
medicine.medical_specialty
myocardial biology
MITOCHONDRIAL DYSFUNCTION
Heart Ventricles
Hypertension, Pulmonary
ENERGY-METABOLISM
heart failure
030204 cardiovascular system & hematology
UP-REGULATION
PROLIFERATOR-ACTIVATED RECEPTOR
03 medical and health sciences
chemistry.chemical_compound
0302 clinical medicine
Internal medicine
pulmonary hypertension
medicine
Animals
Humans
OXIDATIVE STRESS
030304 developmental biology
remodeling
0303 health sciences
Fatty acid metabolism
Ventricular Remodeling
business.industry
Systematic Review and Meta‐analysis
Fatty Acids
MURINE MODEL
Metabolism
medicine.disease
Pulmonary hypertension
Mitochondria
PROGNOSTIC VALUE
TRANSCRIPTION FACTORS
medicine.anatomical_structure
Glucose
chemistry
Ventricle
Pressure load
Heart failure
Meta-analysis
Cardiology
HEART-FAILURE
Cardiology and Cardiovascular Medicine
business
metabolism
Subjects
Details
- ISSN :
- 20479980 and 00392499
- Volume :
- 8
- Issue :
- 21
- Database :
- OpenAIRE
- Journal :
- Journal of the American Heart Association
- Accession number :
- edsair.doi.dedup.....38c244693bd157b75df7b95302a0db4f