Early rhythm control reduced major complications with HR 0.55 in atrial fibrillation patients having medium BMP10 levels (~2.11 ng/ml), but not in low BMP10 group.
Does early rhythm control improve primary outcomes in atrial fibrillation patients stratified by baseline BMP10 concentrations?
Baseline BMP10 concentrations may help identify atrial fibrillation patients who benefit most from early rhythm control, suggesting those with low levels may not require immediate rhythm therapy.
Absolute Event Rate: 0% vs 0%
Abstract Background Atrial fibrillation is a major risk factor for stroke, worsening of heart failure, acute coronary syndrome (ACS), and cardiovascular death. Early rhythm control (ERC) reduced major complications of atrial fibrillation in the EAST AFNET 4 trial. The concentrations of selected cardiovascular biomolecules identify patients at high and low risk for experiencing complications independent of the treatment. Whether these biomolecules can help to select patients for rhythm control is not known. Purpose This secondary analysis of the EAST-AFNET 4 trial studied interactions between patient subgroups defined by biomolecule concentrations and the treatment effects of ERC. Methods In the EAST-AFNET 4 biomolecule study (n=1586, median age 70 years, 45% women), the biomolecules angiopoietin 2 (ANGPT2), bone morphogenetic protein 10 (BMP10), cancer antigen 125 (CA125), C-reactive protein (CRP), endothelial specific molecule 1 (ESM1), fatty acid binding protein 3 (FABP3), fibroblast growth factor 23 (FGF23), growth differentiation factor 15 (GDF15), insulin-like growth factor binding protein 7 (IGFBP7), interleukin-6 (IL-6), N-terminal pro–B-type natriuretic peptide (NT-proBNP), cardiac troponin (TnT), and serum creatinine (sCr), were quantified at baseline. Patients were categorized into quintiles based on biomolecule concentrations, followed by assignment to low (lowest quintile), medium (middle three quintiles), and high (upper quintile) concentration groups after natural log-transformation and 1% upper winsorization of each biomolecule. Cox proportional hazard models examined primary outcomes over a median follow-up of 4.8 years, including the study centre as a frailty term and interaction terms between biomarkers and treatment type (usual care vs. ERC). Models were adjusted for sex, age, and heart rhythm at blood draw. Results Only BMP10 concentrations showed significant interaction with ERC (p-interaction=0.03). No other tested biomolecule showed similar interactions (p-interaction=0.95-0.07). Patients with medium BMP10 concentrations (median 2.11 interquartile range (IQR) 1.96-2.28 ng/ml) showed a benefit from ERC (hazard ratio (HR) 0.55, 95% CI 0.41-0.75, p0.001). High BMP10 concentrations (median 2.89 IQR 2.68-3.18 ng/ml) showed a trend toward treatment effect (HR 0.71, 95% CI 0.45-1.12, p=0.138). Patients with low BMP10 concentrations (median 1.62 IQR 1.51 - 1.70 ng/ml) did not benefit from ERC (HR 1.41, 95% CI 0.73-2.72, p=0.308) and events were lower in usual care in patients with the lowest BMP10 concentrations (figure 1). Patient characteristics are shown in table 1. Conclusion These findings suggest that low BMP10 concentrations may identify AF patients for whom rhythm therapy is not immediately necessary. Further validation studies are required to confirm these results.Event Free Survival Probability by BMP10 Table 1:Clinical Characteristics
Al-Taie et al. (Sat,) reported a other. Early rhythm control reduced major complications with HR 0.55 in atrial fibrillation patients having medium BMP10 levels (~2.11 ng/ml), but not in low BMP10 group.