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Catheter Ablation in Combination With Left Atrial Appendage Closure for Atrial Fibrillation
Published on: February 26, 2013
C-reactive protein and microalbuminuria are associated with atrial fibrillation
Folkert W Asselbergs1, Maarten P van den Berg, Gilles F H Diercks
1Department of Clinical Pharmacology, University of Groningen, Groningen, The Netherlands. f.w.asselbergs@thorax.azg.nl
Insights
Elevated C-reactive protein (CRP) and microalbuminuria are linked to atrial fibrillation (AF). The combination of high CRP and microalbuminuria significantly increases the risk of developing AF.
Area of Science:
- Cardiology
- Nephrology
- Inflammation research
Background:
- Atrial fibrillation (AF) poses a significant risk for cardiovascular disease.
- Early detection of AF and identification of novel pathophysiological pathways are crucial.
- This study investigates the association of microalbuminuria and C-reactive protein (CRP) with AF.
Purpose of the Study:
- To determine if microalbuminuria and CRP are independently associated with AF.
- To assess the combined effect of microalbuminuria and CRP on AF risk.
- To identify potential biomarkers for early AF detection and intervention.
Main Methods:
- 7546 subjects underwent standard 12-lead electrocardiograms.
- Microalbuminuria was defined as urinary albumin excretion between 30-300 mg/24h.
- High-sensitive CRP was dichotomized into low (<2.87 mg/l) and high (>2.87 mg/l) levels.
Main Results:
- AF was detected in 1.0% of subjects (75 individuals).
- Elevated CRP (OR 1.79) and microalbuminuria (OR 1.93) were independently associated with AF.
- The combination of high CRP and microalbuminuria showed a fourfold higher association with AF (OR 3.80).
Conclusions:
- Elevated CRP and microalbuminuria are significant independent predictors of AF.
- The concurrent presence of high CRP and microalbuminuria substantially increases AF risk.
- These markers may aid in identifying individuals at higher risk for AF.
Background:
Atrial fibrillation (AF) is associated with an increased risk for cardiovascular disease. It is important to detect AF at an early stage and to search for new pathophysiological pathways to intervene. We hypothesized that microalbuminuria and C-reactive protein (CRP), a marker of generalized vascular damage and inflammation, respectively, are associated with AF.
Methods:
Standard 12-lead electrocardiograms were recorded in 7546 subjects (mean age 49+/-13 years, 51% male). AF was defined according to Minnesota codes. The urinary albumin excretion rate was measured as the mean of two 24-h urine collections and microalbuminuria was defined as an albumin excretion rate between 30 and 300 mg per 24 h. High-sensitive CRP was dichotomized (low: three lowest quartiles, CRP<2.87 mg/l vs. high: highest quartile, CRP>2.87 mg/l). Data are expressed as odds ratios (95% confidence intervals).
Results:
AF was present in 75 (1.0%) subjects. In multivariate analysis, an age >60 years, the presence of ischemic heart disease, left ventricular hypertrophy, elevated CRP level (1.79 [1.07-2.97], p=0.03) and microalbuminuria (1.93 [1.10-3.37], p=0.02) were significantly associated with AF. Surprisingly, the combination of elevated CRP and the presence of microalbuminuria showed an even higher association with AF after adjusting for all cardiovascular risk factors (3.80 [1.89-7.63], p<0.001).
Conclusions:
An elevated CRP level and microalbuminuria are associated with AF. Moreover, the combination of both indicates a fourfold higher association with the presence of AF in a population at large.
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