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A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility

Control of premature corrosion of magnesium (Mg) alloy bioresorbable stents (BRS) is frequently achieved by the addition of rare earth elements. However, limited long-term experience with these elements causes concerns for clinical application and alternative methods of corrosion control are sought...

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Autores principales: Dou, Zhenglong, Chen, Shuiling, Wang, Jiacheng, Xia, Li, Maitz, Manfred F., Tu, Qiufen, Zhang, Wentai, Yang, Zhilu, Huang, Nan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9929524/
https://www.ncbi.nlm.nih.gov/pubmed/36817823
http://dx.doi.org/10.1016/j.bioactmat.2023.02.004
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author Dou, Zhenglong
Chen, Shuiling
Wang, Jiacheng
Xia, Li
Maitz, Manfred F.
Tu, Qiufen
Zhang, Wentai
Yang, Zhilu
Huang, Nan
author_facet Dou, Zhenglong
Chen, Shuiling
Wang, Jiacheng
Xia, Li
Maitz, Manfred F.
Tu, Qiufen
Zhang, Wentai
Yang, Zhilu
Huang, Nan
author_sort Dou, Zhenglong
collection PubMed
description Control of premature corrosion of magnesium (Mg) alloy bioresorbable stents (BRS) is frequently achieved by the addition of rare earth elements. However, limited long-term experience with these elements causes concerns for clinical application and alternative methods of corrosion control are sought after. Herein, we report a “built-up” composite film consisting of a bottom layer of MgF(2) conversion coating, a sandwich layer of a poly (1, 3-trimethylene carbonate) (PTMC) and 3-aminopropyl triethoxysilane (APTES) co-spray coating (PA) and on top a layer of poly (lactic-co-glycolic acid) (PLGA) ultrasonic spray coating to decorate the rare earth element-free Mg–2Zn–1Mn (ZM21) BRS for tailoring both corrosion resistance and biological functions. The developed “built-up” composite film shows synergistic functionalities, allowing the compression and expansion of the coated ZM21 BRS on an angioplasty balloon without cracking or peeling. Of special importance is that the synergistic corrosion control effects of the “built-up” composite film allow for maintaining the mechanical integrity of stents for up to 3 months, where complete biodegradation and no foreign matter residue were observed about half a year after implantation in rabbit iliac arteries. Moreover, the functionalized ZM21 BRS accomplished re-endothelialization within one month.
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spelling pubmed-99295242023-02-16 A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility Dou, Zhenglong Chen, Shuiling Wang, Jiacheng Xia, Li Maitz, Manfred F. Tu, Qiufen Zhang, Wentai Yang, Zhilu Huang, Nan Bioact Mater Article Control of premature corrosion of magnesium (Mg) alloy bioresorbable stents (BRS) is frequently achieved by the addition of rare earth elements. However, limited long-term experience with these elements causes concerns for clinical application and alternative methods of corrosion control are sought after. Herein, we report a “built-up” composite film consisting of a bottom layer of MgF(2) conversion coating, a sandwich layer of a poly (1, 3-trimethylene carbonate) (PTMC) and 3-aminopropyl triethoxysilane (APTES) co-spray coating (PA) and on top a layer of poly (lactic-co-glycolic acid) (PLGA) ultrasonic spray coating to decorate the rare earth element-free Mg–2Zn–1Mn (ZM21) BRS for tailoring both corrosion resistance and biological functions. The developed “built-up” composite film shows synergistic functionalities, allowing the compression and expansion of the coated ZM21 BRS on an angioplasty balloon without cracking or peeling. Of special importance is that the synergistic corrosion control effects of the “built-up” composite film allow for maintaining the mechanical integrity of stents for up to 3 months, where complete biodegradation and no foreign matter residue were observed about half a year after implantation in rabbit iliac arteries. Moreover, the functionalized ZM21 BRS accomplished re-endothelialization within one month. KeAi Publishing 2023-02-08 /pmc/articles/PMC9929524/ /pubmed/36817823 http://dx.doi.org/10.1016/j.bioactmat.2023.02.004 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Dou, Zhenglong
Chen, Shuiling
Wang, Jiacheng
Xia, Li
Maitz, Manfred F.
Tu, Qiufen
Zhang, Wentai
Yang, Zhilu
Huang, Nan
A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title_full A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title_fullStr A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title_full_unstemmed A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title_short A “built-up” composite film with synergistic functionalities on Mg–2Zn–1Mn bioresorbable stents improves corrosion control effects and biocompatibility
title_sort “built-up” composite film with synergistic functionalities on mg–2zn–1mn bioresorbable stents improves corrosion control effects and biocompatibility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9929524/
https://www.ncbi.nlm.nih.gov/pubmed/36817823
http://dx.doi.org/10.1016/j.bioactmat.2023.02.004
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