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Oxygenation-sensitive Cardiac MRI with Vasoactive Breathing Maneuvers for the Non-invasive Assessment of Coronary Microvascular Dysfunction
Published on: August 17, 2022
Coronary Microvascular Dysfunction in Patients with Congenital Heart Disease
Inne Vanreusel1,2, Vincent F M Segers1,2, Emeline Van Craenenbroeck1,2
1Department of Cardiology, Antwerp University Hospital, Drie Eikenstraat 655, Edegem 2650, Belgium.
Insights
Congenital heart disease patients often experience coronary microvascular dysfunction, impacting their prognosis. More research is needed to fully understand its role in congenital heart disease progression.
Area of Science:
- Cardiology
- Vascular Biology
- Pediatric Cardiology
Background:
- Congenital heart disease (CHD) survival has improved, increasing the adult CHD population.
- CHD patients face worse prognoses than healthy individuals, with overlapping pathophysiology to other heart failure types.
- Coronary microvascular dysfunction (CMD) is a key factor in heart failure and may play a role in CHD.
Approach:
- Systematic review of studies on maximal coronary vasodilatory capacity in CHD patients.
- PubMed database search for relevant literature.
- Analysis of existing data on CMD in the context of congenital heart disease.
Key Points:
- Studies on CMD in CHD are rare and heterogeneous.
- The prevalence, extent, and clinical significance of CMD in CHD are not well-established.
- CMD is a potential modulator of disease initiation and progression in congenital heart disease.
Conclusions:
- Coronary microvascular dysfunction in congenital heart disease is currently poorly understood.
- Further research is essential to elucidate the role of CMD in CHD.
- Understanding CMD could lead to improved management and outcomes for CHD patients.
Abstract:
Congenital heart diseases represent a wide range of cardiac malformations. Medical and surgical advances have dramatically increased the survival of patients with congenital heart disease, leading to a continuously growing number of children, adolescents, and adults with congenital heart disease. Nevertheless, congenital heart disease patients have a worse prognosis compared to healthy individuals of similar age. There is substantial overlap in the pathophysiology of congenital heart disease and heart failure induced by other etiologies. Among the pathophysiological changes in heart failure, coronary microvascular dysfunction has recently emerged as a crucial modulator of disease initiation and progression. Similarly, coronary microvascular dysfunction could be important in the pathophysiology of congenital heart diseases as well. For this systematic review, studies on maximal vasodilatory capacity in the coronary microvascular bed in patients with congenital heart disease were searched using the PubMed database. To date, coronary microvascular dysfunction in congenital heart disease patients is incompletely understood because studies on this topic are rare and heterogeneous. The prevalence, extent, and pathophysiological relevance of coronary microvascular dysfunction in congenital heart diseases remain to be elucidated. Herein, we discuss what is currently known about coronary microvascular dysfunction in congenital heart disease and future directions.
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