Cargando…
The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets
Leaflet durability and costs restrict contemporary trans-catheter aortic valve replacement (TAVR) largely to elderly patients in affluent countries. TAVR that are easily deployable, avoid secondary procedures and are also suitable for younger patients and non-calcific aortic regurgitation (AR) would...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928444/ https://www.ncbi.nlm.nih.gov/pubmed/35310972 http://dx.doi.org/10.3389/fcvm.2022.791949 |
_version_ | 1784670642965053440 |
---|---|
author | Appa, Harish Park, Kenneth Bezuidenhout, Deon van Breda, Braden de Jongh, Bruce de Villiers, Jandré Chacko, Reno Scherman, Jacques Ofoegbu, Chima Swanevelder, Justiaan Cousins, Michael Human, Paul Smith, Robin Vogt, Ferdinand Podesser, Bruno K. Schmitz, Christoph Conradi, Lenard Treede, Hendrik Schröfel, Holger Fischlein, Theodor Grabenwöger, Martin Luo, Xinjin Coombes, Heather Matskeplishvili, Simon Williams, David F. Zilla, Peter |
author_facet | Appa, Harish Park, Kenneth Bezuidenhout, Deon van Breda, Braden de Jongh, Bruce de Villiers, Jandré Chacko, Reno Scherman, Jacques Ofoegbu, Chima Swanevelder, Justiaan Cousins, Michael Human, Paul Smith, Robin Vogt, Ferdinand Podesser, Bruno K. Schmitz, Christoph Conradi, Lenard Treede, Hendrik Schröfel, Holger Fischlein, Theodor Grabenwöger, Martin Luo, Xinjin Coombes, Heather Matskeplishvili, Simon Williams, David F. Zilla, Peter |
author_sort | Appa, Harish |
collection | PubMed |
description | Leaflet durability and costs restrict contemporary trans-catheter aortic valve replacement (TAVR) largely to elderly patients in affluent countries. TAVR that are easily deployable, avoid secondary procedures and are also suitable for younger patients and non-calcific aortic regurgitation (AR) would significantly expand their global reach. Recognizing the reduced need for post-implantation pacemakers in balloon-expandable (BE) TAVR and the recent advances with potentially superior leaflet materials, a trans-catheter BE-system was developed that allows tactile, non-occlusive deployment without rapid pacing, direct attachment of both bioprosthetic and polymer leaflets onto a shape-stabilized scallop and anchorage achieved by plastic deformation even in the absence of calcification. Three sizes were developed from nickel-cobalt-chromium MP35N alloy tubes: Small/23 mm, Medium/26 mm and Large/29 mm. Crimp-diameters of valves with both bioprosthetic (sandwich-crosslinked decellularized pericardium) and polymer leaflets (triblock polyurethane combining siloxane and carbonate segments) match those of modern clinically used BE TAVR. Balloon expansion favors the wing-structures of the stent thereby creating supra-annular anchors whose diameter exceeds the outer diameter at the waist level by a quarter. In the pulse duplicator, polymer and bioprosthetic TAVR showed equivalent fluid dynamics with excellent EOA, pressure gradients and regurgitation volumes. Post-deployment fatigue resistance surpassed ISO requirements. The radial force of the helical deployment balloon at different filling pressures resulted in a fully developed anchorage profile of the valves from two thirds of their maximum deployment diameter onwards. By combining a unique balloon-expandable TAVR system that also caters for non-calcific AR with polymer leaflets, a powerful, potentially disruptive technology for heart valve disease has been incorporated into a TAVR that addresses global needs. While fulfilling key prerequisites for expanding the scope of TAVR to the vast number of patients of low- to middle income countries living with rheumatic heart disease the system may eventually also bring hope to patients of high-income countries presently excluded from TAVR for being too young. |
format | Online Article Text |
id | pubmed-8928444 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-89284442022-03-18 The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets Appa, Harish Park, Kenneth Bezuidenhout, Deon van Breda, Braden de Jongh, Bruce de Villiers, Jandré Chacko, Reno Scherman, Jacques Ofoegbu, Chima Swanevelder, Justiaan Cousins, Michael Human, Paul Smith, Robin Vogt, Ferdinand Podesser, Bruno K. Schmitz, Christoph Conradi, Lenard Treede, Hendrik Schröfel, Holger Fischlein, Theodor Grabenwöger, Martin Luo, Xinjin Coombes, Heather Matskeplishvili, Simon Williams, David F. Zilla, Peter Front Cardiovasc Med Cardiovascular Medicine Leaflet durability and costs restrict contemporary trans-catheter aortic valve replacement (TAVR) largely to elderly patients in affluent countries. TAVR that are easily deployable, avoid secondary procedures and are also suitable for younger patients and non-calcific aortic regurgitation (AR) would significantly expand their global reach. Recognizing the reduced need for post-implantation pacemakers in balloon-expandable (BE) TAVR and the recent advances with potentially superior leaflet materials, a trans-catheter BE-system was developed that allows tactile, non-occlusive deployment without rapid pacing, direct attachment of both bioprosthetic and polymer leaflets onto a shape-stabilized scallop and anchorage achieved by plastic deformation even in the absence of calcification. Three sizes were developed from nickel-cobalt-chromium MP35N alloy tubes: Small/23 mm, Medium/26 mm and Large/29 mm. Crimp-diameters of valves with both bioprosthetic (sandwich-crosslinked decellularized pericardium) and polymer leaflets (triblock polyurethane combining siloxane and carbonate segments) match those of modern clinically used BE TAVR. Balloon expansion favors the wing-structures of the stent thereby creating supra-annular anchors whose diameter exceeds the outer diameter at the waist level by a quarter. In the pulse duplicator, polymer and bioprosthetic TAVR showed equivalent fluid dynamics with excellent EOA, pressure gradients and regurgitation volumes. Post-deployment fatigue resistance surpassed ISO requirements. The radial force of the helical deployment balloon at different filling pressures resulted in a fully developed anchorage profile of the valves from two thirds of their maximum deployment diameter onwards. By combining a unique balloon-expandable TAVR system that also caters for non-calcific AR with polymer leaflets, a powerful, potentially disruptive technology for heart valve disease has been incorporated into a TAVR that addresses global needs. While fulfilling key prerequisites for expanding the scope of TAVR to the vast number of patients of low- to middle income countries living with rheumatic heart disease the system may eventually also bring hope to patients of high-income countries presently excluded from TAVR for being too young. Frontiers Media S.A. 2022-03-03 /pmc/articles/PMC8928444/ /pubmed/35310972 http://dx.doi.org/10.3389/fcvm.2022.791949 Text en Copyright © 2022 Appa, Park, Bezuidenhout, van Breda, de Jongh, de Villiers, Chacko, Scherman, Ofoegbu, Swanevelder, Cousins, Human, Smith, Vogt, Podesser, Schmitz, Conradi, Treede, Schröfel, Fischlein, Grabenwöger, Luo, Coombes, Matskeplishvili, Williams and Zilla. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Cardiovascular Medicine Appa, Harish Park, Kenneth Bezuidenhout, Deon van Breda, Braden de Jongh, Bruce de Villiers, Jandré Chacko, Reno Scherman, Jacques Ofoegbu, Chima Swanevelder, Justiaan Cousins, Michael Human, Paul Smith, Robin Vogt, Ferdinand Podesser, Bruno K. Schmitz, Christoph Conradi, Lenard Treede, Hendrik Schröfel, Holger Fischlein, Theodor Grabenwöger, Martin Luo, Xinjin Coombes, Heather Matskeplishvili, Simon Williams, David F. Zilla, Peter The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title | The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title_full | The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title_fullStr | The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title_full_unstemmed | The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title_short | The Technological Basis of a Balloon-Expandable TAVR System: Non-occlusive Deployment, Anchorage in the Absence of Calcification and Polymer Leaflets |
title_sort | technological basis of a balloon-expandable tavr system: non-occlusive deployment, anchorage in the absence of calcification and polymer leaflets |
topic | Cardiovascular Medicine |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8928444/ https://www.ncbi.nlm.nih.gov/pubmed/35310972 http://dx.doi.org/10.3389/fcvm.2022.791949 |
work_keys_str_mv | AT appaharish thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT parkkenneth thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT bezuidenhoutdeon thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT vanbredabraden thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT dejonghbruce thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT devilliersjandre thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT chackoreno thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schermanjacques thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT ofoegbuchima thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT swanevelderjustiaan thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT cousinsmichael thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT humanpaul thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT smithrobin thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT vogtferdinand thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT podesserbrunok thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schmitzchristoph thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT conradilenard thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT treedehendrik thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schrofelholger thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT fischleintheodor thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT grabenwogermartin thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT luoxinjin thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT coombesheather thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT matskeplishvilisimon thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT williamsdavidf thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT zillapeter thetechnologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT appaharish technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT parkkenneth technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT bezuidenhoutdeon technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT vanbredabraden technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT dejonghbruce technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT devilliersjandre technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT chackoreno technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schermanjacques technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT ofoegbuchima technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT swanevelderjustiaan technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT cousinsmichael technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT humanpaul technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT smithrobin technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT vogtferdinand technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT podesserbrunok technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schmitzchristoph technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT conradilenard technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT treedehendrik technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT schrofelholger technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT fischleintheodor technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT grabenwogermartin technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT luoxinjin technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT coombesheather technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT matskeplishvilisimon technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT williamsdavidf technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets AT zillapeter technologicalbasisofaballoonexpandabletavrsystemnonocclusivedeploymentanchorageintheabsenceofcalcificationandpolymerleaflets |