Key result
Paroxysmal/persistent atrial fibrillation was independently associated with higher baseline values of sNOX2-dp (β=-224, p=0.007) and urinary isoprostanes (β=-231, p=0.005) compared to permanent AF.
Why the study?
Are NOX2 activation and oxidative stress markers elevated differently in paroxysmal/persistent versus permanent atrial fibrillation?
Observational (n=264)
Are NOX2 activation and oxidative stress markers elevated differently in paroxysmal/persistent versus permanent atrial fibrillation?
Effect estimate: β=-224
p-value: p=0.007
NOX2 is upregulated specifically in patients with paroxysmal/persistent atrial fibrillation, leading to overproduction of isoprostanes, suggesting a potential role for NOX2 inhibition in this AF subtype.
May inform subtype-specific NOX2 inhibition trials in AF; leaves open clinical relevance pending prospective data.
BACKGROUND: NOX2, the catalytic subunit of NADPH oxidase, is suggested to play a role in favouring the occurrence of atrial fibrillation (AF) after cardiac surgery via formation of reactive oxidant species. However, its role in spontaneous AF is still unclear. OBJECTIVE: To define the role of NOX2 and isoprostanes, a marker of oxidative stress, in the different settings of AF. METHODS: The study was performed on 174 patients with AF (82 with paroxysmal/persistent AF and 92 with permanent AF) and 90 controls matched for sex, age and atherosclerotic risk factors. Urinary isoprostanes and serum levels of soluble NOX2-derived peptide (sNOX2-dp) were measured in each patient. RESULTS: Urinary isoprostanes and sNOX2-dp concentrations were significantly higher in patients with paroxysmal/persistent AF than in those with permanent AF and controls. Compared with controls, patients with permanent AF showed a weak increase in sNOX2-dp and no difference in isoprostanes. Multivariable analyses demonstrated that baseline values of sNOX2-dp and urinary isoprostanes were independently associated with the type of AF (paroxysmal/persistent vs permanent; β=-224, p=0.007 and β=-231, p=0.005, respectively). A significant correlation between sNOX2-dp levels and urinary excretion of isoprostanes was also detected (R=0.707, p<0.001). CONCLUSIONS: This study provides evidence that NOX2 is upregulated only in patients with paroxysmal/persistent AF and is responsible for overproduction of isoprostanes. This finding warrants further study to see if inhibition of NOX2 may reduce the risk of paroxysmal/persistent AF.
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Cangemi et al. (2012) conducted an observational in Atrial fibrillation (n=264). Paroxysmal/persistent atrial fibrillation vs. Permanent atrial fibrillation and controls was evaluated on Association of sNOX2-dp and urinary isoprostanes with the type of AF (paroxysmal/persistent vs permanent) (β=-224, p=0.007). Paroxysmal/persistent atrial fibrillation was independently associated with higher baseline values of sNOX2-dp (β=-224, p=0.007) and urinary isoprostanes (β=-231, p=0.005) compared to permanent AF.
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