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Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances

This article provides a comprehensive review of the current trends and challenges in the development of 3D-printed heart valves and other cardiac implants. By providing personalized solutions and pushing the limits of regenerative medicine, 3D printing technology has revolutionized the field of card...

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Autores principales: Bhandari, Sagar, Yadav, Vikas, Ishaq, Aqsa, Sanipini, Sailakshmn, Ekhator, Chukwuyem, Khleif, Rafeef, Beheshtaein, Alee, Jhajj, Loveleen K, Khan, Aimen Waqar, Al Khalifa, Ahmed, Naseem, Muhammad Arsal, Bellegarde, Sophia B, Nadeem, Muhammad A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cureus 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10411854/
https://www.ncbi.nlm.nih.gov/pubmed/37565179
http://dx.doi.org/10.7759/cureus.43204
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author Bhandari, Sagar
Yadav, Vikas
Ishaq, Aqsa
Sanipini, Sailakshmn
Ekhator, Chukwuyem
Khleif, Rafeef
Beheshtaein, Alee
Jhajj, Loveleen K
Khan, Aimen Waqar
Al Khalifa, Ahmed
Naseem, Muhammad Arsal
Bellegarde, Sophia B
Nadeem, Muhammad A
author_facet Bhandari, Sagar
Yadav, Vikas
Ishaq, Aqsa
Sanipini, Sailakshmn
Ekhator, Chukwuyem
Khleif, Rafeef
Beheshtaein, Alee
Jhajj, Loveleen K
Khan, Aimen Waqar
Al Khalifa, Ahmed
Naseem, Muhammad Arsal
Bellegarde, Sophia B
Nadeem, Muhammad A
author_sort Bhandari, Sagar
collection PubMed
description This article provides a comprehensive review of the current trends and challenges in the development of 3D-printed heart valves and other cardiac implants. By providing personalized solutions and pushing the limits of regenerative medicine, 3D printing technology has revolutionized the field of cardiac healthcare. The use of several organic and synthetic polymers in 3D printing heart valves is explored in this article, with emphasis on both their benefits and drawbacks. In cardiac tissue engineering, stem cells are essential, and their potential to lessen immunological rejection and thrombogenic consequences is highlighted. In the clinical applications section, the article emphasizes the importance of 3D printing in preoperative planning. Surgery results are enhanced when surgeons can visualize and assess the size and placement of implants using patient-specific anatomical models. Customized implants that are designed to match the anatomy of a particular patient reduce the likelihood of complications and enhance postoperative results. The development of physiologically active cardiac implants, made possible by 3D bioprinting, shows promise by eliminating the need for artificial valves. In conclusion, this paper highlights cutting-edge research and the promise of 3D-printed cardiac implants to improve patient outcomes and revolutionize cardiac treatment.
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spelling pubmed-104118542023-08-10 Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances Bhandari, Sagar Yadav, Vikas Ishaq, Aqsa Sanipini, Sailakshmn Ekhator, Chukwuyem Khleif, Rafeef Beheshtaein, Alee Jhajj, Loveleen K Khan, Aimen Waqar Al Khalifa, Ahmed Naseem, Muhammad Arsal Bellegarde, Sophia B Nadeem, Muhammad A Cureus Cardiac/Thoracic/Vascular Surgery This article provides a comprehensive review of the current trends and challenges in the development of 3D-printed heart valves and other cardiac implants. By providing personalized solutions and pushing the limits of regenerative medicine, 3D printing technology has revolutionized the field of cardiac healthcare. The use of several organic and synthetic polymers in 3D printing heart valves is explored in this article, with emphasis on both their benefits and drawbacks. In cardiac tissue engineering, stem cells are essential, and their potential to lessen immunological rejection and thrombogenic consequences is highlighted. In the clinical applications section, the article emphasizes the importance of 3D printing in preoperative planning. Surgery results are enhanced when surgeons can visualize and assess the size and placement of implants using patient-specific anatomical models. Customized implants that are designed to match the anatomy of a particular patient reduce the likelihood of complications and enhance postoperative results. The development of physiologically active cardiac implants, made possible by 3D bioprinting, shows promise by eliminating the need for artificial valves. In conclusion, this paper highlights cutting-edge research and the promise of 3D-printed cardiac implants to improve patient outcomes and revolutionize cardiac treatment. Cureus 2023-08-09 /pmc/articles/PMC10411854/ /pubmed/37565179 http://dx.doi.org/10.7759/cureus.43204 Text en Copyright © 2023, Bhandari et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Cardiac/Thoracic/Vascular Surgery
Bhandari, Sagar
Yadav, Vikas
Ishaq, Aqsa
Sanipini, Sailakshmn
Ekhator, Chukwuyem
Khleif, Rafeef
Beheshtaein, Alee
Jhajj, Loveleen K
Khan, Aimen Waqar
Al Khalifa, Ahmed
Naseem, Muhammad Arsal
Bellegarde, Sophia B
Nadeem, Muhammad A
Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title_full Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title_fullStr Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title_full_unstemmed Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title_short Trends and Challenges in the Development of 3D-Printed Heart Valves and Other Cardiac Implants: A Review of Current Advances
title_sort trends and challenges in the development of 3d-printed heart valves and other cardiac implants: a review of current advances
topic Cardiac/Thoracic/Vascular Surgery
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10411854/
https://www.ncbi.nlm.nih.gov/pubmed/37565179
http://dx.doi.org/10.7759/cureus.43204
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