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Real-World Outcomes of Dedicated Leaflet Modification for Bioprosthetic Valve-In-Valve TAVR: A 150-Patient Commercial
Raj R Makkar1, Aakriti Gupta1, Ignacio Inglessis2
1Karsh Center for Interventional Cardiology, Smidt Heart Institute, Cedars-Sinai, Los Angeles, California, USA.
Background:
Coronary obstruction during valve-in-valve (ViV) transcatheter aortic valve replacement (TAVR) is infrequent but catastrophic. Mechanical splitting of bioprosthetic leaflets may mitigate this risk, but real-world experience remains limited.
Objectives:
The aim of this is to evaluate procedural performance and in-hospital outcomes of a dedicated mechanical leaflet-splitting device in ViV TAVR.
Methods:
Consecutive postapproval cases were performed at 28 centers from February to November 2025. Patients were selected for elevated risk based on preprocedural computed tomography criteria, including virtual valve-to-coronary distance ≤4 mm and/or virtual valve-to-sinotubular junction distance ≤3 mm. Procedural outcomes were assessed among patients in whom splitting was attempted; safety outcomes were assessed among all patients in whom the device was introduced. Events were adjudicated using Valve Academic Research Consortium-3 definitions.
Results:
Among 150 patients (age 78.9 ± 8.5 years; 60.0% female), 95 of 150 (63.3%) underwent ViV TAVR for failed surgical and 55 of 150 (36.7%) for failed transcatheter valves. Computed tomography analysis showed predicted acute coronary obstruction risk in 131 of 150 (87.3%) patients, including combined sinus sequestration and direct ostial obstruction in 76 of 150 (50.7%). Leaflet splitting was attempted in 145 patients and was successful in 144 of 145 (99.3%); dual-leaflet splitting was performed in 83 of 145 (57.2%). Coronary obstruction occurred in 3 of 150 (2.0%; 95% CI: 0.7-5.7). All-cause mortality occurred in 3 of 150 (2.0%; 95% CI: 0.7-5.7), including 2 deaths from left ventricular perforation and 1 after stroke. Conversion to surgery occurred in 2 of 150 (1.3%; 95% CI: 0.4-4.7).
Conclusions:
In this early U.S. commercial experience, mechanical leaflet splitting demonstrated high procedural success in an anatomically high-risk ViV TAVR cohort. Serious complications occurred, and longer-term systematic follow-up remains important.
