Assessment of left ventricular tissue mitochondrial bioenergetics in patients with stable coronary artery disease
Richard E Jones1,2,3,4, Anja V Gruszczyk5, Christina Schmidt6
1National Heart and Lung Institute, Imperial College London, London, UK.
Patients with coronary artery disease (CAD) show altered heart energy metabolism and gene expression globally, not just in ischemic areas. This suggests widespread chronic adaptations in the left ventricle (LV) despite stable disease.
Area of Science:
- Cardiology
- Molecular Biology
- Biochemistry
Background:
- Recurrent myocardial ischemia in coronary artery disease (CAD) can impair left ventricular (LV) function.
- Understanding chronic metabolic and transcriptomic changes in the LV myocardium is crucial for managing CAD patients.
Purpose of the Study:
- To investigate global and regional metabolomic and transcriptomic adaptations in the LV myocardium of CAD patients.
- To compare these adaptations to healthy donor hearts and assess differences between ischemic and non-ischemic regions.
Main Methods:
- Observational cohort study involving 33 CAD patients undergoing coronary artery bypass grafting.
- Acquisition of paired transmural LV biopsies from ischemic and non-ischemic regions.
- Analysis of adenosine triphosphate (ATP):adenosine diphosphate (ADP) ratio, gene expression (oxidative phosphorylation - OXPHOS), and metabolite profiles.
- Comparison with LV samples from 11 donor hearts.
Main Results:
- CAD patients exhibited a reduced global myocardial ATP:ADP ratio compared to donors.
- Increased expression of OXPHOS genes was observed across multiple cell types in CAD patients.
- No significant regional differences in ATP:ADP ratio or OXPHOS gene expression were found between ischemic and non-ischemic LV segments.
- Dysregulation of metabolites, including succinate, was noted in patients with reduced LV ejection fraction.
Conclusions:
- Viable myocardium in stable CAD demonstrates global bioenergetic and transcriptional alterations.
- These changes occur systemically within the LV, irrespective of regional inducible ischemia.
- Findings highlight chronic adaptations in heart metabolism and gene expression in response to CAD.
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