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Circulating Reactive Oxygen Species in Adults with Congenital Heart Disease
Inne Vanreusel1,2, Dorien Vermeulen1, Inge Goovaerts1
1Department of Cardiology, Antwerp University Hospital, 2650 Edegem, Belgium.
Insights
Adults with congenital heart disease (CHD) show no increased oxidative stress. However, iron levels are linked to oxidative stress in CHD patients, suggesting a key role for iron in disease mechanisms.
Area of Science:
- Cardiology
- Biochemistry
- Physiology
Background:
- Oxidative stress is implicated in cardiovascular disorders.
- Limited research exists on oxidative stress in adults with congenital heart disease (CHD).
Purpose of the Study:
- To investigate oxidative stress levels in adults with CHD.
- To examine associations between oxidative stress, inflammation, exercise capacity, and endothelial function in CHD.
Main Methods:
- Compared 36 adults with CHD to 36 healthy controls.
- Measured superoxide anion radical levels using electron paramagnetic resonance spectroscopy.
- Assessed inflammation, endothelial function, and cardiorespiratory fitness.
Main Results:
- Superoxide anion radical levels did not differ significantly between CHD adults and controls.
- Oxidative stress showed no correlation with inflammation, endothelial function, or cardiorespiratory fitness in CHD.
- A significant negative correlation was found between oxidative stress and iron saturation.
Conclusions:
- Whole blood oxidative stress levels are not elevated in adults with CHD.
- Iron levels appear to play a more significant role in oxidative stress mechanisms in CHD than in healthy individuals.
- Further research is needed to elucidate the pathophysiology of CHD.
Abstract:
Oxidative stress is an important pathophysiological mechanism in the development of numerous cardiovascular disorders, but few studies have examined the levels of oxidative stress in adults with congenital heart disease (CHD). The objective of this study was to investigate oxidative stress levels in adults with CHD and the association with inflammation, exercise capacity and endothelial function. To this end, 36 adults with different types of CHD and 36 age- and gender-matched healthy controls were enrolled. Blood cell counts, hs-CRP, NT-proBNP, fasting glucose, cholesterol levels, iron saturation and folic acid concentrations were determined in venous blood samples. Levels of superoxide anion radical in whole blood were determined using electron paramagnetic resonance spectroscopy in combination with the spin probe CMH. Physical activity was assessed with the IPAQ-SF questionnaire. Vascular function assessment (EndoPAT) and cardiopulmonary exercise testing were performed in the patient group. Superoxide anion radical levels were not statistically significantly different between adults with CHD and the matched controls. Moreover, oxidative stress did not correlate with inflammation, or with endothelial function or cardiorespiratory fitness in CHD; however, a significant negative correlation with iron saturation was observed. Overall, whole blood superoxide anion radical levels in adults with CHD were not elevated, but iron levels seem to play a more important role in oxidative stress mechanisms in CHD than in healthy controls. More research will be needed to improve our understanding of the underlying pathophysiology of CHD.
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