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Updated: Jun 19, 2026

Transcatheter Pulmonary Valve Replacement from Autologous Pericardium with a Self-Expandable Nitinol Stent in an Adult Sheep Model
Published on: June 8, 2022
Prospective Midterm Outcomes of the PULSTA Self-Expandable Transcatheter Pulmonary Valve: The PULSTA CE Approval
Sang-Yun Lee1, Gi Beom Kim1, Mario Carminati2
1Department of Pediatrics, Seoul National University Children's Hospital, Seoul National University School of Medicine, Republic of Korea (S.-Y.L., G.B.K.).
Background:
Patients with congenital or acquired right ventricular outflow tract dysfunction frequently require pulmonary valve replacement and are exposed to repeated surgical interventions due to prosthetic valve degeneration. The PULSTA self-expanding transcatheter pulmonary valve was designed to address a broad spectrum of native and surgically repaired right ventricular outflow tract anatomies. This study reports the midterm safety, hemodynamic performance, and durability outcomes of the prospective, multinational PULSTA CE approval trial (PULSTA Carpentier Edwards).
Methods:
This premarket, multicenter, nonrandomized study enrolled 58 patients across 11 centers in 6 countries. Successful PULSTA implantation was achieved in 57 patients (98.3%), including 4 valve-in-valve procedures. Patients were followed for a median duration of 4.1 years. Primary end points included procedural or device-related serious adverse events, hemodynamic improvement, and sustained valve function.
Results:
At 6 months, cardiac magnetic resonance imaging demonstrated significant reverse right ventricular remodeling, with marked reductions in right ventricular end-diastolic volume index, end-systolic volume index, and pulmonary regurgitation fraction (all P<0.001). Valve performance remained stable throughout follow-up, with 93.8% of patients exhibiting mild or less pulmonary regurgitation at 4.1 years. Freedom from reintervention was 98.2% at 5 years. One patient required a PULSTA-in-PULSTA implantation due to paravalvular leakage, and one case of infective endocarditis was successfully managed with antibiotic therapy. No stent fractures or structural valve deterioration were observed.
Conclusions:
The PULSTA transcatheter pulmonary valve demonstrated high procedural success, durable valve function, and sustained hemodynamic benefits. Its adaptability to diverse right ventricular outflow tract anatomies and favorable safety profile supports its role as an effective therapeutic option for patients with right ventricular outflow tract dysfunction.
Registration:
URL: https://www.clinicaltrials.gov; Unique identifier: NCT03983512.
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