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Published on: January 28, 2020
Enhanced Discrimination of Coronary Artery Disease Severity by Circulating Phoenixin-14: Evidence from a Clinical
İsmail Polat1, Bekir Dagdeviren2, Mehdi Karasu1
1Department of Cardiology, Fethi Sekin City Hospital, 23119 Elazig, Turkey.
Insights
Phoenixin-14 shows promise for diagnosing coronary artery disease (CAD) severity. This novel biomarker effectively identifies obstructive and non-obstructive CAD, outperforming others in diagnostic accuracy.
Area of Science:
- Cardiovascular Diagnostics
- Biomarker Discovery
- Medical Research
Background:
- Early identification of coronary artery disease (CAD) is crucial but challenging.
- Novel circulating biomarkers may enhance risk stratification beyond conventional methods.
- Existing diagnostic tools require improvement for accurate CAD severity assessment.
Purpose of the Study:
- To investigate the diagnostic utility of four emerging biomarkers: Phoenixin-14, Syntenin-1, Alamandine, and Cerebellin-1.
- To assess the biomarkers' ability to discriminate between severe CAD, non-critical CAD, and normal controls.
- To evaluate Phoenixin-14 as a potential biomarker for CAD severity and clinical risk stratification.
Main Methods:
- Prospective observational study of 90 participants undergoing coronary angiography.
- Categorization into severe CAD (≥70% stenosis), non-critical CAD (<70% stenosis), and control groups.
- Quantification of circulating biomarker concentrations using enzyme-linked immunosorbent assay (ELISA) and receiver operating characteristic (ROC) analysis.
Main Results:
- Phoenixin-14 concentrations progressively declined with increasing CAD severity (p < 0.001).
- Phoenixin-14 demonstrated outstanding discrimination for severe CAD (AUC, 0.969) and robust discrimination for non-critical CAD (AUC, 0.832).
- Phoenixin-14 significantly outperformed Syntenin-1, Alamandine, and Cerebellin-1 in diagnostic performance.
Conclusions:
- Phoenixin-14 exhibits superior diagnostic performance for both obstructive and non-obstructive CAD.
- Phoenixin-14 is a promising candidate biomarker for CAD severity assessment and risk stratification.
- Larger multicenter studies are needed to validate these findings for clinical practice.
Abstract:
Early identification of anatomically significant coronary artery disease (CAD) remains a major clinical challenge despite advances in cardiovascular diagnostics. Novel circulating biomarkers may improve risk stratification and diagnostic discrimination beyond conventional parameters. We investigated the diagnostic utility of four emerging biomarkers-Phoenixin-14, Syntenin-1, Alamandine, and Cerebellin-1-for the assessment of CAD severity. In this prospective observational study, 90 participants undergoing coronary angiography were categorized into three groups: severe CAD (≥70% stenosis; n = 30), non-obstructive/non-critical CAD (<70% stenosis; n = 30), and angiographically normal controls (n = 30). Patients with acute coronary syndrome, diabetes mellitus, prior coronary revascularization, cardiomyopathy, or significant systemic disease were excluded. Circulating biomarker concentrations were quantified using the enzyme-linked immunosorbent assay. Comparative analyses, correlation testing, and receiver operating characteristic (ROC) analyses were performed to evaluate discriminatory performance. Circulating Phoenixin-14 concentrations progressively declined across the control, non-critical CAD, and severe CAD groups [40.1 (29.0-49.7) vs. 24.4 (18.5-30.1) vs. 16.7 (13.4-19.0) pg/mL, respectively; p < 0.001]. Phoenixin-14 demonstrated outstanding discrimination for severe CAD, achieving an area under the ROC curve (AUC) of 0.969 (95% CI, 0.888-0.997), with 86.7% sensitivity and 96.7% specificity at a threshold of ≤20.2 pg/mL. Diagnostic performance was substantially lower for Syntenin-1 (AUC, 0.795), Alamandine (AUC, 0.661), and Cerebellin-1 (AUC, 0.597). Phoenixin-14 also showed robust discrimination for non-critical CAD (AUC, 0.832). Biomarker concentrations exhibited correlations with metabolic indices while remaining largely independent of traditional cardiovascular risk factors. Among the evaluated novel circulating biomarkers, Phoenixin-14 demonstrated superior diagnostic performance for both obstructive and non-obstructive CAD, markedly outperforming Syntenin-1, Alamandine, and Cerebellin-1. These findings identify Phoenixin-14 as a promising candidate biomarker for CAD severity assessment and clinical risk stratification. Larger multicenter studies are warranted to validate these exploratory findings and determine their incremental value in contemporary cardiovascular practice.
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