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Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality

Many polyurethanes (PUs) are blood-contacting materials due to their good mechanical properties, fatigue resistance, cytocompatibility, biosafety, and relatively good hemocompatibility. Further functionalization of the PUs using chemical synthetic methods is especially attractive for expanding their...

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Autores principales: Zhou, Lei, Zhang, Lu, Li, Peichuang, Maitz, Manfred F., Wang, Kebing, Shang, Tengda, Dai, Sheng, Fu, Yudie, Zhao, Yuancong, Yang, Zhilu, Wang, Jin, Li, Xin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9639449/
https://www.ncbi.nlm.nih.gov/pubmed/36349335
http://dx.doi.org/10.34133/2022/9795682
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author Zhou, Lei
Zhang, Lu
Li, Peichuang
Maitz, Manfred F.
Wang, Kebing
Shang, Tengda
Dai, Sheng
Fu, Yudie
Zhao, Yuancong
Yang, Zhilu
Wang, Jin
Li, Xin
author_facet Zhou, Lei
Zhang, Lu
Li, Peichuang
Maitz, Manfred F.
Wang, Kebing
Shang, Tengda
Dai, Sheng
Fu, Yudie
Zhao, Yuancong
Yang, Zhilu
Wang, Jin
Li, Xin
author_sort Zhou, Lei
collection PubMed
description Many polyurethanes (PUs) are blood-contacting materials due to their good mechanical properties, fatigue resistance, cytocompatibility, biosafety, and relatively good hemocompatibility. Further functionalization of the PUs using chemical synthetic methods is especially attractive for expanding their applications. Herein, a series of catechol functionalized PU (C-PU-PTMEG) elastomers containing variable molecular weight of polytetramethylene ether glycol (PTMEG) soft segment are reported by stepwise polymerization and further introduction of catechol. Tailoring the molecular weight of PTMEG fragment enables a regulable catechol content, mobility of the chain segment, hydrogen bond and microphase separation of the C-PU-PTMEG elastomers, thus offering tunability of mechanical strength (such as breaking strength from 1.3 MPa to 5.7 MPa), adhesion, self-healing efficiency (from 14.9% to 96.7% within 2 hours), anticoagulant, antioxidation, anti-inflammatory properties and cellular growth behavior. As cardiovascular stent coatings, the C-PU-PTMEGs demonstrate enough flexibility to withstand deformation during the balloon dilation procedure. Of special importance is that the C-PU-PTMEG-coated surfaces show the ability to rapidly scavenge free radicals to maintain normal growth of endothelial cells, inhibit smooth muscle cell proliferation, mediate inflammatory response, and reduce thrombus formation. With the universality of surface adhesion and tunable multifunctionality, these novel C-PU-PTMEG elastomers should find potential usage in artificial heart valves and surface engineering of stents.
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spelling pubmed-96394492022-11-07 Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality Zhou, Lei Zhang, Lu Li, Peichuang Maitz, Manfred F. Wang, Kebing Shang, Tengda Dai, Sheng Fu, Yudie Zhao, Yuancong Yang, Zhilu Wang, Jin Li, Xin Research (Wash D C) Research Article Many polyurethanes (PUs) are blood-contacting materials due to their good mechanical properties, fatigue resistance, cytocompatibility, biosafety, and relatively good hemocompatibility. Further functionalization of the PUs using chemical synthetic methods is especially attractive for expanding their applications. Herein, a series of catechol functionalized PU (C-PU-PTMEG) elastomers containing variable molecular weight of polytetramethylene ether glycol (PTMEG) soft segment are reported by stepwise polymerization and further introduction of catechol. Tailoring the molecular weight of PTMEG fragment enables a regulable catechol content, mobility of the chain segment, hydrogen bond and microphase separation of the C-PU-PTMEG elastomers, thus offering tunability of mechanical strength (such as breaking strength from 1.3 MPa to 5.7 MPa), adhesion, self-healing efficiency (from 14.9% to 96.7% within 2 hours), anticoagulant, antioxidation, anti-inflammatory properties and cellular growth behavior. As cardiovascular stent coatings, the C-PU-PTMEGs demonstrate enough flexibility to withstand deformation during the balloon dilation procedure. Of special importance is that the C-PU-PTMEG-coated surfaces show the ability to rapidly scavenge free radicals to maintain normal growth of endothelial cells, inhibit smooth muscle cell proliferation, mediate inflammatory response, and reduce thrombus formation. With the universality of surface adhesion and tunable multifunctionality, these novel C-PU-PTMEG elastomers should find potential usage in artificial heart valves and surface engineering of stents. AAAS 2022-10-26 /pmc/articles/PMC9639449/ /pubmed/36349335 http://dx.doi.org/10.34133/2022/9795682 Text en Copyright © 2022 Lei Zhou et al. https://creativecommons.org/licenses/by/4.0/Exclusive Licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Zhou, Lei
Zhang, Lu
Li, Peichuang
Maitz, Manfred F.
Wang, Kebing
Shang, Tengda
Dai, Sheng
Fu, Yudie
Zhao, Yuancong
Yang, Zhilu
Wang, Jin
Li, Xin
Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title_full Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title_fullStr Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title_full_unstemmed Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title_short Adhesive and Self-Healing Polyurethanes with Tunable Multifunctionality
title_sort adhesive and self-healing polyurethanes with tunable multifunctionality
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9639449/
https://www.ncbi.nlm.nih.gov/pubmed/36349335
http://dx.doi.org/10.34133/2022/9795682
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