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Advances in percutaneous treatment for adult valvular heart disease
M C G Wong1, D J Clark, M C G Horrigan
1Department of Cardiology, Austin Health, Melbourne, Victoria, Australia.
Insights
Degenerative valvular heart disease is increasing. Less invasive treatments like percutaneous aortic valve implantation and mitral valve repair offer promising alternatives for high-risk patients.
Area of Science:
- Cardiology
- Interventional Cardiology
- Cardiac Surgery
Background:
- Valvular heart disease affects 2-3% of the population, rising with age.
- Degenerative causes, like aortic stenosis and mitral regurgitation, now exceed rheumatic heart disease.
- Traditional surgical valve replacement is effective but invasive.
Purpose of the Study:
- To review current and emerging treatments for valvular heart disease.
- To highlight advancements in less invasive therapeutic options.
- To discuss the evolving landscape of valvular heart disease management.
Main Methods:
- Review of current literature on valvular heart disease etiology and treatment.
- Discussion of traditional surgical interventions.
- Exploration of novel percutaneous and transcatheter techniques for aortic and mitral valve disease.
Main Results:
- Surgical aortic valve replacement remains a gold standard for symptomatic aortic stenosis.
- Percutaneous aortic valve implantation offers a viable option for high-risk surgical candidates.
- Catheter-based mitral valve repair techniques show promise in improving mitral regurgitation.
Conclusions:
- Advances in percutaneous interventions are expanding treatment options for valvular heart disease.
- Less invasive approaches provide new hope for patients previously unsuitable for surgery.
- The management of valvular heart disease is shifting towards more personalized, less invasive strategies.
Abstract:
Valvular heart disease occurs in 2-3% of the general population with an increase in prevalence with advancing age. The aetiology of valvular heart disease has evolved in recent decades with degenerative aortic and mitral valve disease supplanting rheumatic heart disease as a primary cause. The common valve lesions to be discussed in this article are aortic stenosis and mitral regurgitation. The traditional approach to calcific aortic stenosis when either symptoms or left ventricular impairment develops is surgical aortic valve replacement and it remains a treatment with excellent outcomes. In recent years there has been interest in less invasive approaches, including percutaneous and transapical aortic valve implantation. With refinements in technology these approaches are becoming a potential treatment option, primarily for high-risk patients who may otherwise be unsuitable for traditional open surgical treatment. Catheter-based approaches for mitral valve disease are also evolving. Mitral regurgitation may often be the result of mitral annular dilatation seen in patients with an enlarged left ventricle or left atrium. Percutaneous implantation of a constricting device in the coronary sinus, which lies in close proximity to the mitral annulus, results in a change to the geometry of the mitral valve and reduced regurgitation. Another technique in patients with degenerative mitral regurgitation is the endovascular edge-to-edge repair in which coaptation of the mitral valve leaflets can be improved with a percutaneously deployed clip. Small patient series indicate that these new techniques are promising. As such, advances in percutaneous interventional and surgical approaches have the potential to further improve outcomes for selected patients with valvular heart disease.
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