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Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy

Stenting is currently the major therapeutic treatment for cardiovascular diseases. However, the nonbiogenic metal stents are inclined to trigger a cascade of cellular and molecular events including inflammatory response, thrombogenic reactions, smooth muscle cell hyperproliferation accompanied by th...

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Detalles Bibliográficos
Autores principales: Yang, Ying, Gao, Peng, Wang, Juan, Tu, Qiufen, Bai, Long, Xiong, Kaiqin, Qiu, Hua, Zhao, Xin, Maitz, Manfred F., Wang, Huaiyu, Li, Xiangyang, Zhao, Qiang, Xiao, Yin, Huang, Nan, Yang, Zhilu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7196174/
https://www.ncbi.nlm.nih.gov/pubmed/32405627
http://dx.doi.org/10.34133/2020/9203906
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author Yang, Ying
Gao, Peng
Wang, Juan
Tu, Qiufen
Bai, Long
Xiong, Kaiqin
Qiu, Hua
Zhao, Xin
Maitz, Manfred F.
Wang, Huaiyu
Li, Xiangyang
Zhao, Qiang
Xiao, Yin
Huang, Nan
Yang, Zhilu
author_facet Yang, Ying
Gao, Peng
Wang, Juan
Tu, Qiufen
Bai, Long
Xiong, Kaiqin
Qiu, Hua
Zhao, Xin
Maitz, Manfred F.
Wang, Huaiyu
Li, Xiangyang
Zhao, Qiang
Xiao, Yin
Huang, Nan
Yang, Zhilu
author_sort Yang, Ying
collection PubMed
description Stenting is currently the major therapeutic treatment for cardiovascular diseases. However, the nonbiogenic metal stents are inclined to trigger a cascade of cellular and molecular events including inflammatory response, thrombogenic reactions, smooth muscle cell hyperproliferation accompanied by the delayed arterial healing, and poor reendothelialization, thus leading to restenosis along with late stent thrombosis. To address prevalence critical problems, we present an endothelium-mimicking coating capable of rapid regeneration of a competently functioning new endothelial layer on stents through a stepwise metal (copper)-catechol-(amine) (MCA) surface chemistry strategy, leading to combinatorial endothelium-like functions with glutathione peroxidase-like catalytic activity and surface heparinization. Apart from the stable nitric oxide (NO) generating rate at the physiological level (2.2 × 10(−10) mol/cm(2)/min lasting for 60 days), this proposed strategy could also generate abundant amine groups for allowing a high heparin conjugation efficacy up to ∼1 μg/cm(2), which is considerably higher than most of the conventional heparinized surfaces. The resultant coating could create an ideal microenvironment for bringing in enhanced anti-thrombogenicity, anti-inflammation, anti-proliferation of smooth muscle cells, re-endothelialization by regulating relevant gene expressions, hence preventing restenosis in vivo. We envision that the stepwise MCA coating strategy would facilitate the surface endothelium-mimicking engineering of vascular stents and be therefore helpful in the clinic to reduce complications associated with stenosis.
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spelling pubmed-71961742020-05-13 Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy Yang, Ying Gao, Peng Wang, Juan Tu, Qiufen Bai, Long Xiong, Kaiqin Qiu, Hua Zhao, Xin Maitz, Manfred F. Wang, Huaiyu Li, Xiangyang Zhao, Qiang Xiao, Yin Huang, Nan Yang, Zhilu Research (Wash D C) Research Article Stenting is currently the major therapeutic treatment for cardiovascular diseases. However, the nonbiogenic metal stents are inclined to trigger a cascade of cellular and molecular events including inflammatory response, thrombogenic reactions, smooth muscle cell hyperproliferation accompanied by the delayed arterial healing, and poor reendothelialization, thus leading to restenosis along with late stent thrombosis. To address prevalence critical problems, we present an endothelium-mimicking coating capable of rapid regeneration of a competently functioning new endothelial layer on stents through a stepwise metal (copper)-catechol-(amine) (MCA) surface chemistry strategy, leading to combinatorial endothelium-like functions with glutathione peroxidase-like catalytic activity and surface heparinization. Apart from the stable nitric oxide (NO) generating rate at the physiological level (2.2 × 10(−10) mol/cm(2)/min lasting for 60 days), this proposed strategy could also generate abundant amine groups for allowing a high heparin conjugation efficacy up to ∼1 μg/cm(2), which is considerably higher than most of the conventional heparinized surfaces. The resultant coating could create an ideal microenvironment for bringing in enhanced anti-thrombogenicity, anti-inflammation, anti-proliferation of smooth muscle cells, re-endothelialization by regulating relevant gene expressions, hence preventing restenosis in vivo. We envision that the stepwise MCA coating strategy would facilitate the surface endothelium-mimicking engineering of vascular stents and be therefore helpful in the clinic to reduce complications associated with stenosis. AAAS 2020-04-24 /pmc/articles/PMC7196174/ /pubmed/32405627 http://dx.doi.org/10.34133/2020/9203906 Text en Copyright © 2020 Ying Yang et al. http://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
Yang, Ying
Gao, Peng
Wang, Juan
Tu, Qiufen
Bai, Long
Xiong, Kaiqin
Qiu, Hua
Zhao, Xin
Maitz, Manfred F.
Wang, Huaiyu
Li, Xiangyang
Zhao, Qiang
Xiao, Yin
Huang, Nan
Yang, Zhilu
Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title_full Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title_fullStr Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title_full_unstemmed Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title_short Endothelium-Mimicking Multifunctional Coating Modified Cardiovascular Stents via a Stepwise Metal-Catechol-(Amine) Surface Engineering Strategy
title_sort endothelium-mimicking multifunctional coating modified cardiovascular stents via a stepwise metal-catechol-(amine) surface engineering strategy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7196174/
https://www.ncbi.nlm.nih.gov/pubmed/32405627
http://dx.doi.org/10.34133/2020/9203906
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