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Circulating Ectonucleotidases Signal Impaired Myocardial Perfusion at Rest and Stress
Rachel G Kroll1, Corey Powell2, Jun Chen1
1Division of Cardiovascular Medicine, Department of Medicine Michigan Medicine Ann Arbor MI.
Insights
Measuring plasma levels of ectonucleotidases CD39 and CD73 may indicate coronary artery dysfunction. Higher levels of these enzymes were linked to reduced stress myocardial blood flow and flow reserve.
Area of Science:
- Cardiovascular Biology
- Biomarker Discovery
- Enzymology
Background:
- Ectonucleotidases (CD39, CD73) are crucial for vascular homeostasis, regulating inflammation and thrombosis.
- Their dysfunction is linked to human diseases, but plasma levels as biomarkers for coronary artery dysfunction are unstudied.
Purpose of the Study:
- To investigate the utility of plasma ectonucleotidase (CD39, CD73) levels as biomarkers for coronary artery dysfunction.
- To determine the association between circulating ectonucleotidase levels and myocardial blood flow or reserve.
Main Methods:
- Retrospective analysis of 529 individuals undergoing positron emission tomography stress testing.
- Assessed plasma CD39 and CD73 levels using ELISAs.
- Correlated enzyme levels with clinical data, stress test results, and coronary artery calcium scores.
Main Results:
- Plasma CD39 levels differed significantly between White and Black participants.
- Ectonucleotidase levels were associated with liver disease but not traditional coronary artery disease risk factors.
- Detectable CD39 levels inversely correlated with stress myocardial blood flow; CD73 inversely correlated with global myocardial flow reserve, independent of liver disease.
Conclusions:
- Plasma ectonucleotidase levels show an inverse relationship with stress myocardial blood flow (CD39) and myocardial flow reserve (CD73).
- Shed ectonucleotidases may contribute to reduced myocardial blood flow and reserve, suggesting potential as novel biomarkers.
Abstract:
Background Ectonucleotidases maintain vascular homeostasis by metabolizing extracellular nucleotides, modulating inflammation and thrombosis, and potentially, myocardial flow through adenosine generation. Evidence implicates dysfunction or deficiency of ectonucleotidases CD39 or CD73 in human disease; the utility of measuring levels of circulating ectonucleotidases as plasma biomarkers of coronary artery dysfunction or disease has not been previously reported. Methods and Results A total of 529 individuals undergoing clinically indicated positron emission tomography stress testing between 2015 and 2019 were enrolled in this single-center retrospective analysis. Baseline demographics, clinical data, nuclear stress test, and coronary artery calcium score variables were collected, as well as a blood sample. CD39 and CD73 levels were assessed as binary (detectable, undetectable) or continuous variables using ELISAs. Plasma CD39 was detectable in 24% of White and 8% of Black study participants (P=0.02). Of the clinical history variables examined, ectonucleotidase levels were most strongly associated with underlying liver disease and not other traditional coronary artery disease risk factors. Intriguingly, detection of circulating ectonucleotidase was inversely associated with stress myocardial blood flow (2.3±0.8 mL/min per g versus 2.7 mL/min per g±1.1 for detectable versus undetectable CD39 levels, P<0.001) and global myocardial flow reserve (Pearson correlation between myocardial flow reserve and log(CD73) -0.19, P<0.001). A subanalysis showed these differences held true independent of liver disease. Conclusions Vasodilatory adenosine is the expected product of local ectonucleotidase activity, yet these data support an inverse relationship between plasma ectonucleotidases, stress myocardial blood flow (CD39), and myocardial flow reserve (CD73). These findings support the conclusion that plasma levels of ectonucleotidases, which may be shed from the endothelial surface, contribute to reduced stress myocardial blood flow and myocardial flow reserve.
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