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Everolimus-eluting stent implantation for unprotected left main coronary artery stenosis. The PRECOMBAT-2 (Premier of Randomized Comparison of Bypass Surgery versus Angioplasty Using Sirolimus-Eluting Stent in Patients with Left Main Coronary Artery Disease) study Contemporary prevalence of pulmonary arterial hypertension in adult congenital heart disease following the updated clinical classification Pulmonary Artery Denervation for Patients With Residual Pulmonary Hypertension After Pulmonary Endarterectomy Evaluation and Management of Aortic Stenosis in Chronic Kidney Disease: A Scientific Statement From the American Heart Association Pulmonary Hypertension Caused by a Coconut Left Atrium Low shear stress induces vascular eNOS uncoupling via autophagy-mediated eNOS phosphorylation Percutaneous coronary intervention versus coronary-artery bypass grafting for severe coronary artery disease Incidence and Management of Restenosis After Treatment of Unprotected Left Main Disease With Second-Generation Drug-Eluting Stents (from Failure in Left Main Study With 2nd Generation Stents-Cardiogroup III Study) Radial versus femoral artery access in patients undergoing PCI for left main coronary artery disease: analysis from the EXCEL trial Definition and Management of Segmental Pulmonary Hypertension

Original ResearchVolume 13, Issue 5, March 2020

JOURNAL:JACC Cardiovasc Interv. Article Link

Balloon Aortic Valvuloplasty as a Bridge to Aortic Valve Replacement: A Contemporary Nationwide Perspective

A Kawsara, F Alqahtani, MF Eleid et al. Keywords: aortic stenosis; BAV; TAVR

ABSTRACT


OBJECTIVES - This study sought to use a national representative database to assess the incidence, predictors, and outcomes of balloon aortic valvuloplasty (BAV) as a bridge to transcatheter aortic valve replacement (TAVR) in contemporary practice.

 

BACKGROUND - Nationwide data on the use and outcomes of BAV as a bridge to TAVR are limited.

 

METHODS - Patients who underwent BAV between January and June in 2015 and 2016 were identified in the National Readmission Database. We assessed rate of subsequent TAVR following BAV, and predictors and timing of subsequent TAVR. We then identified a group of patients who had direct TAVR (without prior BAV) in the original 2015 to 2016 National Readmission Database dataset. We compared in-hospital outcomes following TAVR between patients with prior bridging BAV and those undergoing direct TAVR.

 

RESULTS - Among the 3,691 included patients 1,426 (38.6%) had subsequent TAVR. Timing of TAVR was pre-discharge in 7.4%, within 30 days in 35%, between 31 and 90 days in 47%, between 91 and 180 days in 14%, and >180 days in 4%. Negative predictors of subsequent TAVR included prior defibrillator (odds ratio [OR]: 0.56; 95% confidence interval [CI]: 0.36 to 0.85), dementia (OR: 0.60; 95% CI: 0.46 to 0.79), malnutrition (OR: 0.64; 95% CI: 0.45 to 0.90), and malignancy (OR: 0.62; 95% CI: 0.47 to 0.82). In propensity-score matched cohorts of patients who underwent direct TAVR versus those with prior BAV, in-hospital mortality during TAVR admission was similar (3.7% vs. 3.5%; p = 0.91). Major complications, length of stay, and discharge disposition were also comparable. However, cost of the hospitalization was higher in the direct TAVR group.

 

CONCLUSIONS - About 40% of BAV patients undergo subsequent TAVR mostly within 90 days. In-hospital outcomes of TAVR in these patients were comparable with propensity-score matched patients who underwent TAVR without prior BAV. Further investigations are needed to define the role of BAV in contemporary practice.