Right ventricular (RV) failure is the predominant cause of death in pulmonary arterial hypertension (PAH). No RV-specific therapies are available, in part because the underlying mechanisms of RV dysfunction are poorly understood. Given the heart's preference for fatty acids (FA) as an energy source, a deeper understanding of FA metabolism may shed light on RV adaptation to elevated afterload in PAH. The purpose of this study is to test the hypothesis that defects in fatty acid metabolism are common in PAH and contribute to RV failure. The investigators will measure peripheral and transcardiac lipid and glucose metabolites in PAH patients in comparison with patients with pulmonary venous hypertension and no evidence of pulmonary hypertension. The investigators will also correlate metabolites with concurrent measurement of right ventricular function.
Study Type
OBSERVATIONAL
Enrollment
15
Vanderbilt Univeristy
Nashville, Tennessee, United States
Peripheral blood oleoylcarnitine in PAH versus control
Time frame: At time of clinic visit, within 24 hrs prior to right heart catheritization
Percent change across the cardiac circulation of oleate and the glucose/lactate ratio.
The combination of these findings will indicate if there is a decreased reliance on FAO and and increased glycolysis
Time frame: At time of right heart catheterization
Correlation of oleoylcarnitine, other acylcarnitines and free fatty acids with the homeostatic index of insulin resistance, tricuspid annular plane systolic excursion, and six minute walk distance
Time frame: At time of clinic visit, within 24hrs prior to right heart catheritization
Correlation of the trans-cardiac gradient of oleate and lactate/glucose with right ventricular ejection fraction on cardiac MRI and six minute walk distance.
Time frame: At time of right heart catheterization
Measurement of trans-cardiac acylcarnitines
Time frame: At time of right heart catheterization
Measurement of trans-cardiac and trans-pulmonary glucose metabolites
Time frame: At time of right heart catheterization
Measurement of trans-cardiac and trans-pulmonary lipid metabolites
Time frame: At time of right heart catheterization
Measurement of trans-cardiac and trans-pulmonary amino acid metabolites
Time frame: At time of right heart catheterization
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