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Published on: November 18, 2022
Aggressive cardiovascular phenotype of aneurysms-osteoarthritis syndrome caused by pathogenic SMAD3 variants
Denise van der Linde1, Ingrid M B H van de Laar, Aida M Bertoli-Avella
1Department of Cardiology, Erasmus Medical Center, Rotterdam, the Netherlands.
Insights
Aneurysms-osteoarthritis syndrome (AOS), linked to SMAD3 variants, causes severe cardiovascular issues and high mortality. Early aortic repair is recommended due to dissections occurring at mild diameters.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Rheumatology
Background:
- Aneurysms-osteoarthritis syndrome (AOS) is an autosomal dominant disorder caused by pathogenic SMAD3 variants.
- It is characterized by a combination of arterial aneurysms, tortuosity, and osteoarthritis.
Purpose of the Study:
- To describe the cardiovascular phenotype in patients with AOS.
- To establish clinical recommendations for managing AOS-related cardiovascular complications.
Main Methods:
- Cardiovascular evaluation of 44 AOS patients from 7 families with pathogenic SMAD3 variants.
- Methods included imaging, arterial stiffness measurements, and biochemical studies (NT-proBNP).
Main Results:
- 71% had aortic root aneurysms; 33% had aneurysms in other arteries; 48% showed arterial tortuosity.
- 56% of patients with cerebrovascular imaging had abnormalities. Aortic dissection was the cause of death in 60% of 15 deaths.
- High NT-proBNP and increased aortic stiffness (pulse wave velocity) were observed, correlating significantly.
Conclusions:
- AOS leads to aggressive, widespread cardiovascular disease with significant mortality.
- Aortic dissections can occur at mildly increased aortic diameters, necessitating early elective repair.
- Cerebrovascular abnormalities are common in AOS patients.
Objectives:
The purpose of this study was describe the cardiovascular phenotype of the aneurysms-osteoarthritis syndrome (AOS) and to provide clinical recommendations.
Background:
AOS, caused by pathogenic SMAD3 variants, is a recently described autosomal dominant syndrome characterized by aneurysms and arterial tortuosity in combination with osteoarthritis.
Methods:
AOS patients in participating centers underwent extensive cardiovascular evaluation, including imaging, arterial stiffness measurements, and biochemical studies.
Results:
We included 44 AOS patients from 7 families with pathogenic SMAD3 variants (mean age: 42 ± 17 years). In 71%, an aortic root aneurysm was found. In 33%, aneurysms in other arteries in the thorax and abdomen were diagnosed, and in 48%, arterial tortuosity was diagnosed. In 16 patients, cerebrovascular imaging was performed, and cerebrovascular abnormalities were detected in 56% of them. Fifteen deaths occurred at a mean age of 54 ± 15 years. The main cause of death was aortic dissection (9 of 15; 60%), which occurred at mildly increased aortic diameters (range: 40 to 63 mm). Furthermore, cardiac abnormalities were diagnosed, such as congenital heart defects (6%), mitral valve abnormalities (51%), left ventricular hypertrophy (19%), and atrial fibrillation (22%). N-terminal brain natriuretic peptide (NT-proBNP) was significantly higher in AOS patients compared with matched controls (p < 0.001). Aortic pulse wave velocity was high-normal (9.2 ± 2.2 m/s), indicating increased aortic stiffness, which strongly correlated with NT-proBNP (r = 0.731, p = 0.005).
Conclusions:
AOS predisposes patients to aggressive and widespread cardiovascular disease and is associated with high mortality. Dissections can occur at relatively mildly increased aortic diameters; therefore, early elective repair of the ascending aorta should be considered. Moreover, cerebrovascular abnormalities were encountered in most patients.
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