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Transcatheter Aortic Valve Replacement

科研文章

荐读文献

Raising the Evidentiary Bar for Guideline Recommendations for TAVR: JACC Review Topic of the Week Coronary Protection to Prevent Coronary Obstruction During TAVR: A Multicenter International Registry Edoxaban versus Vitamin K Antagonist for Atrial Fibrillation after TAVR Predictors of high residual gradient after transcatheter aortic valve replacement in bicuspid aortic valve stenosis Transcatheter Versus Surgical Aortic Valve Replacement in Patients With Severe Aortic Valve Stenosis: 1-Year Results From the All-Comers NOTION Randomized Clinical Trial Online Quantitative Aortographic Assessment of Aortic Regurgitation After TAVR: Results of the OVAL Study Ascending Aortic Length and Risk of Aortic Adverse Events: The Neglected Dimension Low Transvalvular Flow Rate Predicts Mortality in Patients With Low-Gradient Aortic Stenosis Following Aortic Valve Intervention Temporal Trends in Transcatheter Aortic Valve Replacement in France: FRANCE 2 to FRANCE TAVI A prospective, randomised trial of transapical transcatheter aortic valve implantation vs. surgical aortic valve replacement in operable elderly patients with aortic stenosis: the STACCATO trial

Original ResearchVolume 13, Issue 11, June 2020

JOURNAL:JACC: Cardiovascular Interventions Article Link

Left Ventricular Hypertrophy and Clinical Outcomes Over 5 Years After TAVR: An Analysis of the PARTNER Trials and Registries

H Gonzales, PS Douglas, BR Lindman et al.

ABSTRACT

OBJECTIVES - This study sought to evaluate the association between severity of left ventricular hypertrophy (LVH) before transcatheter aortic valve replacement (TAVR) and outcomes out to 5 years.

 

BACKGROUND - Prior studies assessing the association between baseline LVH and outcomes after surgical or TAVR for aortic stenosis (AS) have yielded conflicting results.

 

METHODS - Patients with severe symptomatic AS at intermediate or high risk in the PARTNER (Placement of Aortic Transcatheter Valve) 1, 2, and S3 trials and registries who received TAVR and had baseline measurements for left ventricular mass index (LVMi) were analyzed. The presence and severity of LVH was determined by LVMi using American Society of Echocardiography sex-specific cutoffs.

 

RESULTS - Among 4,280 patients, those with no (n = 1,325), mild (n = 777), moderate (n = 628), and severe (n = 1,550) LVH had 5-year rates of death of 32.8%, 37.3%, 37.2%, and 44.8%, respectively (p < 0.001), and 5-year rates of cardiovascular (CV) death or rehospitalization of 33.6%, 39.2%, 42.4%, and 49.2%, respectively (p < 0.001). After adjustment, severe LVH (compared with no LVH) was associated with increased all-cause death (adjusted hazard ratio: 1.16; 95% confidence interval: 1.00 to 1.34; p = 0.04) and CV death or rehospitalization (adjusted hazard ratio: 1.34; 95% confidence interval: 1.16 to 1.54; p < 0.001), but no increased hazard was observed for mild or moderate LVH. In spline analyses performed in males and females separately, there was a consistent linear association between increased LVMi and an increased adjusted hazard of CV mortality or rehospitalization. A similar relationship was observed for all-cause death in females, but not males.

 

CONCLUSIONS -Severe baseline LVH is associated with higher 5-year death and rehospitalization rates after TAVR. These findings may have implications for the optimal timing of valve replacement and the potential role for medical therapy to slow or prevent LVH as AS progresses before valve replacement, but further studies are needed.