Key result
Transcatheter edge-to-edge repair for severe primary mitral regurgitation altered myocardial work, and baseline global wasted work predicted 1-year reverse remodeling (β = -0.29, p = 0.03).
Why the study?
This study aimed to evaluate the acute and chronic impact of TEER on myocardial work parameters and LV remodeling in patients with severe primary mitral regurgitation.
Does transcatheter edge-to-edge repair (TEER) alter myocardial work parameters and predict LV remodeling in patients with severe primary mitral regurgitation?
Cohort (n=71)
Does transcatheter edge-to-edge repair (TEER) alter myocardial work parameters and predict LV remodeling in patients with severe primary mitral regurgitation?
Effect estimate: β = -0.29
p-value: p=0.03
In patients with severe primary mitral regurgitation undergoing TEER, baseline global wasted work independently predicts left ventricular reverse remodeling at 1 year.
TEER acutely impairs MW indices with partial recovery by 1 year in PMR; baseline GWW may predict remodeling but leaves open clinical utility.
Background: The noninvasive assessment of myocardial work (MW) allows for the evaluation of left ventricular (LV) performance by considering the effect of LV afterload. This study aims to evaluate the acute and chronic impact of transcatheter edge-to-edge repair (TEER) on MW parameters and LV remodeling in patients with severe primary mitral regurgitation (PMR). Methods: A total of 71 patients (age: 77 ± 9 years, females: 44%) with moderate–to-severe or severe PMR (effective regurgitant orifice: 0.57 ± 0.31 cm2; regurgitant volume: 80 ± 34 mL; LV end-systolic diameter: 42 ± 12 mm) underwent TEER after a global assessment by the heart team. MW indices were evaluated before the procedure, at hospital discharge, and at 1-year follow-up. LV remodeling was described as the percentage variation in LVEDV between baseline and 1-year follow-up. Results: TEER caused an acute reduction in LVEF, global longitudinal strain (GLS), global MW index (GWI), work efficiency (GWE), and mechanical dispersion (MD) and a significant increase in wasted work (GWW). One year after the procedure, GLS, GWI, GWE, and MD recovered, whereas GWW remained significantly impaired. Baseline GWW (β = −0.29, p = 0.03) was an independent predictor of LV reverse remodeling at 1-year follow-up. Conclusions: In patients with severe PMR undergoing TEER, the acute reduction in LV preload causes significant impairment to all the parameters of LV performance. Baseline GWW was the only independent predictor of LV reverse remodeling, suggesting that a lower myocardial energetic efficiency in the context of chronic preload increase might impact the left ventricular response to mitral regurgitation correction.
No takes yet. Share an insight, caveat, or question.
Galli et al. (2023) conducted a cohort in Severe primary mitral regurgitation (n=71). Transcatheter edge-to-edge repair (TEER) was evaluated on Left ventricular reverse remodeling (percentage variation in LVEDV between baseline and 1-year follow-up) (β = -0.29, p=0.03). Transcatheter edge-to-edge repair for severe primary mitral regurgitation altered myocardial work, and baseline global wasted work predicted 1-year reverse remodeling (β = -0.29, p = 0.03).
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: