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Updated: Jun 24, 2025

An Image Guided Transapical Mitral Valve Leaflet Puncture Model of Controlled Volume Overload from Mitral Regurgitation in the Rat
Published on: May 19, 2020
Updated pathophysiological overview of functional MR (ventricular and atrial)
Jun Akashi1, Yutaka Otsuji2, Yosuke Nishimura3
1Second Department of Internal Medicine, School of Medicine, University of Occupational and Environmental Health, Kitakyushu, Japan.
Abstract:
Basic mechanism of ventricular functional mitral regurgitation (FMR) is subvalvular tethering. Left ventricular (LV) dilatation, in association with mitral valve (MV) annular dilatation, causes outward displacement of papillary muscles (PMs), which abnormally pulls or tethers MV leaflets, resulting in MV tenting, reduction in leaflets coaptation and MR. Because surgical annuloplasty does shorten distance between anterior and posterior MV annuli to improve coaptation but does not address this subvalvular tethering, ventricular FMR frequently persists or recurs in the chronic stage after surgical annuloplasty. This high incidence of persistent/recurrent MR requires additional procedures to reduce subvalvular tethering. Although patients occasionally show marked improvements after annuloplasty with surgical tethering reduction procedures such as PM approximation, evidence to support benefits of such surgery is limited, requiring further trials. Recently, MV adaptation or MV leaflets tissue growth associated with LV dilatation attracts attention. Patients with larger MV leaflets with significant LV dilatation/dysfunction show less MV tethering and MR compared to those with smaller MV leaflets but with similar LV remodeling, suggesting the protective or beneficial role of MV leaflets tissue growth against LV remodeling. The MV leaflets tissue growth has the potential to lead to novel strategies of treatment for ventricular FMR. It is well known that atrial FMR is frequent in patients with left atrial dilatation, typically in those with isolated atrial fibrillation. The degree of atrial FMR is usually mild, even when it is present, and occasionally moderate, and severe atrial FMR is really rare. It is known that only severe regurgitation causes heart failure in primary MR, resulting in description on indications of surgery or intervention for only severe MR in current guidelines. Therefore, this atrial FMR up to moderate degree did not attract attention for a long time. However, recent studies have shown that patients with only moderate atrial FMR develop severe heart failure, suggesting more aggressive indication of MV surgery or intervention for "moderate" regurgitation in patients with atrial FMR. Therefore, atrial FMR is now recognized highly important. The unveiled malignant nature of atrial FMR arises many questions, including (1) why patients with only moderate atrial FMR develop heart failure? (2) do patients with mild atrial FMR develop heart failure or not?, and many others. Atrial FMR seems even more mysterious after the unveiling of its significance.
Insights
Functional mitral regurgitation (FMR) mechanisms differ between ventricles and atria. Ventricular FMR involves subvalvular tethering, while atrial FMR, often overlooked, can cause severe heart failure even at moderate levels.
Area of Science:
- Cardiology
- Cardiac Surgery
- Biomedical Engineering
Background:
- Ventricular functional mitral regurgitation (FMR) is primarily caused by subvalvular tethering due to left ventricular (LV) and mitral valve (MV) annular dilatation.
- Standard surgical annuloplasty often fails to address subvalvular tethering, leading to persistent or recurrent FMR.
- Recent research highlights the potential protective role of mitral valve leaflet tissue growth against LV remodeling in ventricular FMR.
Purpose of the Study:
- To elucidate the distinct mechanisms of ventricular and atrial functional mitral regurgitation.
- To investigate the implications of subvalvular tethering and MV leaflet adaptation in ventricular FMR.
- To emphasize the newly recognized significance of atrial FMR and its association with heart failure.
Main Methods:
- Review of existing literature on the pathophysiology of ventricular and atrial functional mitral regurgitation.
- Analysis of the impact of LV remodeling and MV annular dilatation on subvalvular structures.
- Examination of recent findings on MV leaflet tissue growth and its role in mitigating FMR.
Main Results:
- Ventricular FMR is characterized by papillary muscle displacement and MV leaflet tethering, often inadequately treated by annuloplasty alone.
- Mitral valve leaflet tissue growth may offer a protective mechanism against ventricular remodeling and FMR.
- Atrial FMR, previously underestimated, is now recognized as a significant contributor to heart failure, even at moderate severity.
Conclusions:
- Novel therapeutic strategies for ventricular FMR may involve addressing subvalvular tethering and promoting MV leaflet adaptation.
- Atrial FMR warrants more aggressive clinical attention and potentially revised surgical indications due to its association with severe heart failure.
- Further research is crucial to understand the underlying mechanisms and optimize treatment for both types of functional mitral regurgitation.
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