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Spontaneous Right Ventricular Pseudoaneurysms and Increased Arrhythmogenicity in a Mouse Model of Marfan Syndrome
Felke Steijns1, Marjolijn Renard1, Marine Vanhomwegen1
1Center for Medical Genetics, Department of Biomolecular Medicine, Ghent University, 9000 Ghent, Belgium.
Abstract:
Patients with Marfan syndrome (MFS), a connective tissue disorder caused by pathogenic variants in the gene encoding the extracellular matrix protein fibrillin-1, have an increased prevalence of primary cardiomyopathy, arrhythmias, and sudden cardiac death. We have performed an in-depth in vivo and ex vivo study of the cardiac phenotype of Fbn1 mice, an established mouse model of MFS with a severely reduced expression of fibrillin-1. Using ultrasound measurements, we confirmed the presence of aortic dilatation and observed cardiac diastolic dysfunction in male Fbn1 mice. Upon post-mortem examination, we discovered that the mutant mice consistently presented myocardial lesions at the level of the right ventricular free wall, which we characterized as spontaneous pseudoaneurysms. Histological investigation demonstrated a decrease in myocardial compaction in the MFS mouse model. Furthermore, continuous 24 h electrocardiographic analysis showed a decreased heart rate variability and an increased prevalence of extrasystolic arrhythmic events in Fbn1 mice compared to wild-type littermates. Taken together, in this paper we document a previously unreported cardiac phenotype in the Fbn1 MFS mouse model and provide a detailed characterization of the cardiac dysfunction and rhythm disorders which are caused by fibrillin-1 deficiency. These findings highlight the wide spectrum of cardiac manifestations of MFS, which might have implications for patient care.
Insights
Marfan syndrome (MFS) in mice shows new cardiac issues, including pseudoaneurysms and arrhythmias, linked to fibrillin-1 deficiency. These findings reveal a wider spectrum of MFS cardiac dysfunction.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Connective Tissue Disorders
Background:
- Marfan syndrome (MFS) is a genetic connective tissue disorder caused by mutations in the fibrillin-1 gene (FBN1).
- Patients with MFS exhibit a higher incidence of cardiac abnormalities, including cardiomyopathy, arrhythmias, and sudden cardiac death.
Purpose of the Study:
- To investigate the cardiac phenotype in a mouse model (Fbn1 mice) of Marfan syndrome.
- To characterize cardiac dysfunction and rhythm disorders associated with fibrillin-1 deficiency in vivo and ex vivo.
Main Methods:
- Ultrasound measurements to assess cardiac structure and function.
- Post-mortem examination and histological analysis of myocardial tissue.
- 24-hour electrocardiographic monitoring to evaluate heart rate variability and arrhythmias.
Main Results:
- Fbn1 mice exhibited aortic dilatation and diastolic dysfunction, particularly in males.
- Spontaneous pseudoaneurysms were consistently observed in the right ventricular free wall of mutant mice.
- Reduced myocardial compaction, decreased heart rate variability, and increased extrasystolic events were noted in Fbn1 mice.
Conclusions:
- This study documents a previously unreported cardiac phenotype in the Fbn1 MFS mouse model.
- Fibrillin-1 deficiency leads to significant cardiac dysfunction and rhythm disorders.
- Findings expand the understanding of MFS cardiac manifestations and may inform patient care strategies.
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