Transapical Mitral Implantation of the Tiara Bioprosthesis

Objectives: This study sought to describe the pre-clinical evaluation of transapical mitral implantation of the Tiara (Neovasc Inc, Vancouver, British Columbia, Canada) valve in preparation for first-in-man implantation. Background: The Tiara is a transcatheter self-expanding mitral bioprosthesis...

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Main Authors: Banai, Shmuel, Verheye, Stefan, Cheung, Anson, Schwartz, Marc, Marko, Alexei, Lane, Randy, Jolicoeur, E. Marc, Garceau, Patrick, Biner, Simon, Tanguay, Jean-Francois, Edelman, Elazer R., White, Christopher J.
Other Authors: Massachusetts Institute of Technology. Center for Biomedical Engineering
Format: Article
Language:en_US
Published: Elsevier 2016
Online Access:http://hdl.handle.net/1721.1/102795
https://orcid.org/0000-0002-7832-7156
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author Banai, Shmuel
Verheye, Stefan
Cheung, Anson
Schwartz, Marc
Marko, Alexei
Lane, Randy
Jolicoeur, E. Marc
Garceau, Patrick
Biner, Simon
Tanguay, Jean-Francois
Edelman, Elazer R.
White, Christopher J.
author2 Massachusetts Institute of Technology. Center for Biomedical Engineering
author_facet Massachusetts Institute of Technology. Center for Biomedical Engineering
Banai, Shmuel
Verheye, Stefan
Cheung, Anson
Schwartz, Marc
Marko, Alexei
Lane, Randy
Jolicoeur, E. Marc
Garceau, Patrick
Biner, Simon
Tanguay, Jean-Francois
Edelman, Elazer R.
White, Christopher J.
author_sort Banai, Shmuel
collection MIT
description Objectives: This study sought to describe the pre-clinical evaluation of transapical mitral implantation of the Tiara (Neovasc Inc, Vancouver, British Columbia, Canada) valve in preparation for first-in-man implantation. Background: The Tiara is a transcatheter self-expanding mitral bioprosthesis, specifically designed for the complex anatomic configuration of the mitral apparatus. Methods: Tiara valves were implanted in a short-term porcine model, in a long-term ovine model, and in human cadavers. Results: Short-term and long-term evaluation demonstrated excellent function and alignment of the valves, with no left ventricular outflow tract obstruction, coronary artery obstruction, or transvalvular gradients. Long-term evaluation of 7 sheep demonstrated clinically stable animals. A mild degree of prosthetic valve regurgitation was seen in 2 of the 7 sheep. A mild-to-moderate degree of paravalvular leak, which was attributed to this animal model, was observed in 6 of these animals. Cardioscopy and macroscopic evaluation demonstrated stable and secure positioning of the Tiara valve with no evidence of injury to the ventricular or atrial walls. Pericardial leaflets were free and mobile without calcifications. Implantation of the Tiara valves in human cadaver hearts demonstrated, upon visual inspection, proper anatomic alignment and seating of the valve, both at the atrial and at the ventricular aspects of the native mitral apparatus. Conclusions: In preparation for the first-in-man transcatheter mitral valve implantation, we report the successful pre-clinical evaluation of the Tiara transcatheter self-expanding mitral bioprosthetic valve. In porcine and ovine models without mitral regurgitation, transapical mitral implantation of the Tiara valve is technically feasible and safe, and results in a stable and well-functioning mitral bioprosthesis.
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spelling mit-1721.1/1027952022-10-01T13:43:35Z Transapical Mitral Implantation of the Tiara Bioprosthesis Banai, Shmuel Verheye, Stefan Cheung, Anson Schwartz, Marc Marko, Alexei Lane, Randy Jolicoeur, E. Marc Garceau, Patrick Biner, Simon Tanguay, Jean-Francois Edelman, Elazer R. White, Christopher J. Massachusetts Institute of Technology. Center for Biomedical Engineering Edelman, Elazer R. Objectives: This study sought to describe the pre-clinical evaluation of transapical mitral implantation of the Tiara (Neovasc Inc, Vancouver, British Columbia, Canada) valve in preparation for first-in-man implantation. Background: The Tiara is a transcatheter self-expanding mitral bioprosthesis, specifically designed for the complex anatomic configuration of the mitral apparatus. Methods: Tiara valves were implanted in a short-term porcine model, in a long-term ovine model, and in human cadavers. Results: Short-term and long-term evaluation demonstrated excellent function and alignment of the valves, with no left ventricular outflow tract obstruction, coronary artery obstruction, or transvalvular gradients. Long-term evaluation of 7 sheep demonstrated clinically stable animals. A mild degree of prosthetic valve regurgitation was seen in 2 of the 7 sheep. A mild-to-moderate degree of paravalvular leak, which was attributed to this animal model, was observed in 6 of these animals. Cardioscopy and macroscopic evaluation demonstrated stable and secure positioning of the Tiara valve with no evidence of injury to the ventricular or atrial walls. Pericardial leaflets were free and mobile without calcifications. Implantation of the Tiara valves in human cadaver hearts demonstrated, upon visual inspection, proper anatomic alignment and seating of the valve, both at the atrial and at the ventricular aspects of the native mitral apparatus. Conclusions: In preparation for the first-in-man transcatheter mitral valve implantation, we report the successful pre-clinical evaluation of the Tiara transcatheter self-expanding mitral bioprosthetic valve. In porcine and ovine models without mitral regurgitation, transapical mitral implantation of the Tiara valve is technically feasible and safe, and results in a stable and well-functioning mitral bioprosthesis. 2016-06-01T21:03:36Z 2016-06-01T21:03:36Z 2014-02 2013-10 Article http://purl.org/eprint/type/JournalArticle 19368798 http://hdl.handle.net/1721.1/102795 Banai, Shmuel, Stefan Verheye, Anson Cheung, Marc Schwartz, Alexei Marko, Randy Lane, E. Marc Jolicoeur, et al. “Transapical Mitral Implantation of the Tiara Bioprosthesis.” JACC: Cardiovascular Interventions 7, no. 2 (February 2014): 154–162. https://orcid.org/0000-0002-7832-7156 en_US http://dx.doi.org/10.1016/j.jcin.2013.10.009 JACC: Cardiovascular Interventions Creative Commons Attribution-NonCommercial-NoDerivs License http://creativecommons.org/licenses/by-nc-nd/4.0/ application/pdf Elsevier PMC
spellingShingle Banai, Shmuel
Verheye, Stefan
Cheung, Anson
Schwartz, Marc
Marko, Alexei
Lane, Randy
Jolicoeur, E. Marc
Garceau, Patrick
Biner, Simon
Tanguay, Jean-Francois
Edelman, Elazer R.
White, Christopher J.
Transapical Mitral Implantation of the Tiara Bioprosthesis
title Transapical Mitral Implantation of the Tiara Bioprosthesis
title_full Transapical Mitral Implantation of the Tiara Bioprosthesis
title_fullStr Transapical Mitral Implantation of the Tiara Bioprosthesis
title_full_unstemmed Transapical Mitral Implantation of the Tiara Bioprosthesis
title_short Transapical Mitral Implantation of the Tiara Bioprosthesis
title_sort transapical mitral implantation of the tiara bioprosthesis
url http://hdl.handle.net/1721.1/102795
https://orcid.org/0000-0002-7832-7156
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