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Updated: Sep 8, 2025

A Simplified Stepwise Approach to Echo Guidance during Percutaneous Mitral Valve Repair
Published on: October 16, 2021
Heart failure with reduced ejection fraction and ventricular secondary mitral regurgitation: a holistic approach
Marianna Adamo1, Matteo Pagnesi1, Nina Ajmone Marsan2
1Department of Medical and Surgical Specialties, Radiological Sciences, and Public Health, Cardiology and Cardiac Catheterization Laboratory, ASST Spedali Civili, University of Brescia, Piazza Mercato, 1, 25123 Brescia, Italy.
Abstract:
Optimal management of patients with heart failure with reduced ejection fraction (HFrEF) and secondary mitral regurgitation (SMR) requires the integration of multiple competencies with the interplay of guideline-directed medical therapy (GDMT) for HFrEF, devices, namely cardiac resynchronization therapy (CRT), when indicated, and mitral transcatheter edge-to-edge repair (M-TEER). Both GDMT and CRT can reduce SMR severity. However, GDMT may not be tolerated in patients with HFrEF who develop hypotension and worsening kidney function following uptitration. On the other hand, a successful M-TEER can increase forward stroke volume and blood pressure and improve kidney perfusion so that GDMT may be better tolerated after rather than before this procedure. Thus, similarly to CRT, M-TEER may serve as enabling therapy for GDMT. Notably, catheter ablation for atrial fibrillation and coronary revascularization may have a role in very selected patients. Furthermore, these patients with HFrEF and SMR remain at high risk of clinical events even after successful transcatheter treatments (i.e. M-TEER). Careful follow-up and continuous implementation of GDMT remain a major priority both before and after any intervention. The aim of this state-of-the-art review is to summarize current knowledge about management of HFrEF and ventricular SMR including the entire patient pathway (i.e. diagnosis, treatment and follow-up) with a focus on the effects of GDMT and CRT on SMR as well as on the effects of successful M-TEER on GDMT tolerability.
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