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Estimating Bilateral Atrial Function by Cardiovascular Magnetic Resonance Feature Tracking in Patients with Paroxysmal Atrial Fibrillation
Published on: July 20, 2022
L1 cell adhesion molecule may be a protective molecule for atrial fibrillation in patients with valvular heart
Dayu Wang1, Bo Hu2, Guangtao Xu3
1Department of Cardiology, Guangzhou Panyu Central Hospital, Guangzhou 511400, GD, China.
Insights
Soluble L1 cell adhesion molecule (L1CAM) levels are decreased in patients with atrial fibrillation (AF). Lower L1CAM indicates increased AF risk in valvular heart disease, suggesting a protective role.
Area of Science:
- Cardiology
- Biomarkers
- Arrhythmia Research
Background:
- Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia.
- L1 cell adhesion molecule (L1CAM) is implicated in crucial cell signaling pathways.
- Investigating soluble L1CAM in serum offers insights into AF pathophysiology.
Purpose of the Study:
- To evaluate the clinical significance of serum soluble L1CAM in patients with AF.
- To determine the association between L1CAM levels and AF in valvular heart disease (VHD).
- To assess L1CAM's utility as a predictive biomarker for AF.
Main Methods:
- Retrospective study of 118 patients (VHD with AF/SR, healthy controls).
- Plasma L1CAM levels measured via enzyme-linked immunosorbent assay.
- Statistical analyses included correlation, multivariable logistic regression, and ROC curve analysis.
Main Results:
- Plasma L1CAM levels were significantly lower in AF patients compared to controls and sinus rhythm (SR) patients.
- L1CAM showed a negative correlation with left atrial size (LA) and NT-proBNP.
- L1CAM independently predicted AF risk in VHD patients, improving predictive model accuracy.
Conclusions:
- Soluble L1CAM serves as an independent risk indicator for AF in VHD patients.
- Incorporating L1CAM into predictive models enhances prognostic and predictive capabilities for AF.
- L1CAM may function as a protective factor against AF in the context of VHD.
Background:
Atrial fibrillation (AF) is the most prevalent sustained arrhythmia. L1 cell adhesion molecule (L1CAM) served as a crucial regulator of signaling pathways. This research sought to examine the clinical value and functions of soluble L1CAM in the serum of AF patients.
Methods:
In total, 118 patients (valvular heart disease patients [VHD, total: n = 93; AF: n = 47; sinus rhythm (SR): n = 46] and healthy controls [n = 25]) were recruited in this retrospective study. Plasma levels of L1CAM were detected by enzyme-linked immunosorbent assays. The Pearson's correlation approach, as applicable, was used for analyzing the correlations. The L1CAM was shown to independently serve as a risk indicator of AF in VHD after being analyzed by the multivariable logistic regression. To examine the specificity and sensitivity of AF, receiver operating characteristic (ROC) curves and the area under the curve (AUC) were used. A nomogram was developed for the visualisation of the model. We further evaluate the prediction model for AF using calibration plot and decision curve analysis.
Results:
The plasma level of L1CAM was substantially decreased in AF patients as opposed to healthy control and SR patients (healthy control = 46.79 ± 12.55 pg/ml, SR = 32.86 ± 6.11 pg/ml, AF = 22.48 ± 5.39 pg/ml; SR vs. AF, P < 0.001; control vs. AF, P < 0.001). L1CAM was significantly and negatively correlated with LA and NT-proBNP (LA: r = -0.344, P = 0.002; NT-proBNP: r = -0.380, P = 0.001). Analyses using logistic regression showed a substantial correlation between L1CAM and AF in patients with VHD (For L1CAM, Model 1: OR = 0.704, 95%CI = 0.607-0.814, P < 0.001; Model 2: OR = 0.650, 95% CI = 0.529-0.798, P < 0.001; Model 3: OR = 0.650, 95% CI = 0.529-0.798, P < 0.001). ROC analysis showed that inclusion of L1CAM in the model significantly improved the ability of other clinical indicators to predict AF. The predictive model including L1CAM, LA, NT-proBNP and LVDd had excellent discrimination and a nomogram was developed. The model had good the calibration and clinical utility.
Conclusion:
L1CAM was shown to independently serve as a risk indicator for AF in VHD. In AF patients with VHD, the prognostic and predictive effectiveness of models incorporating L1CAM was satisfactory. Collectively, L1CAM may be a protective molecule for atrial fibrillation in patients with valvular heart disease.
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