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Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents

INTRODUCTION: This work reports on the development of a biodegradable dual-drug-eluting stent with sequential-like and sustainable drug-release of anti-platelet acetylsalicylic acid and anti-smooth muscle cell (SMC) proliferative paclitaxel. METHODS: To fabricate the biodegradable stents, poly-L-lac...

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Autores principales: Lee, Cheng-Hung, Yu, Chia-Ying, Chang, Shang-Hung, Hung, Kuo-Chun, Liu, Shih-Jung, Wang, Chao-Jan, Hsu, Ming-Yi, Hsieh, I-Chang, Chen, Wei-Jan, Ko, Yu-Shien, Wen, Ming-Shien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157626/
https://www.ncbi.nlm.nih.gov/pubmed/25206303
http://dx.doi.org/10.2147/IJN.S67721
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author Lee, Cheng-Hung
Yu, Chia-Ying
Chang, Shang-Hung
Hung, Kuo-Chun
Liu, Shih-Jung
Wang, Chao-Jan
Hsu, Ming-Yi
Hsieh, I-Chang
Chen, Wei-Jan
Ko, Yu-Shien
Wen, Ming-Shien
author_facet Lee, Cheng-Hung
Yu, Chia-Ying
Chang, Shang-Hung
Hung, Kuo-Chun
Liu, Shih-Jung
Wang, Chao-Jan
Hsu, Ming-Yi
Hsieh, I-Chang
Chen, Wei-Jan
Ko, Yu-Shien
Wen, Ming-Shien
author_sort Lee, Cheng-Hung
collection PubMed
description INTRODUCTION: This work reports on the development of a biodegradable dual-drug-eluting stent with sequential-like and sustainable drug-release of anti-platelet acetylsalicylic acid and anti-smooth muscle cell (SMC) proliferative paclitaxel. METHODS: To fabricate the biodegradable stents, poly-L-lactide strips are first cut from a solvent-casted film. They are rolled onto the surface of a metal pin to form spiral stents. The stents are then consecutively covered by acetylsalicylic acid and paclitaxel-loaded polylactide-polyglycolide nanofibers via electrospinning. RESULTS: Biodegradable stents exhibit mechanical properties that are superior to those of metallic stents. Biodegradable stents sequentially release high concentrations of acetylsalicylic acid and paclitaxel for more than 30 and 60 days, respectively. In vitro, the eluted drugs promote endothelial cell numbers on days 3 and 7, and reduce the proliferation of SMCs in weeks 2, 4, and 8. The stents markedly inhibit the adhesion of platelets on days 3, 7, and 14 relative to a non-drug-eluting stent. In vivo, the implanted stent is intact, and no stent thrombosis is observed in the stent-implanted vessels without the administration of daily oral acetylsalicylic acid. Promotion of endothelial recovery and inhibition of neointimal hyperplasia are also observed on the stented vessels. CONCLUSION: The work demonstrates the efficiency and safety of the biodegradable dual-drug-eluting stents with sequential and sustainable drug release to diseased arteries.
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spelling pubmed-41576262014-09-09 Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents Lee, Cheng-Hung Yu, Chia-Ying Chang, Shang-Hung Hung, Kuo-Chun Liu, Shih-Jung Wang, Chao-Jan Hsu, Ming-Yi Hsieh, I-Chang Chen, Wei-Jan Ko, Yu-Shien Wen, Ming-Shien Int J Nanomedicine Original Research INTRODUCTION: This work reports on the development of a biodegradable dual-drug-eluting stent with sequential-like and sustainable drug-release of anti-platelet acetylsalicylic acid and anti-smooth muscle cell (SMC) proliferative paclitaxel. METHODS: To fabricate the biodegradable stents, poly-L-lactide strips are first cut from a solvent-casted film. They are rolled onto the surface of a metal pin to form spiral stents. The stents are then consecutively covered by acetylsalicylic acid and paclitaxel-loaded polylactide-polyglycolide nanofibers via electrospinning. RESULTS: Biodegradable stents exhibit mechanical properties that are superior to those of metallic stents. Biodegradable stents sequentially release high concentrations of acetylsalicylic acid and paclitaxel for more than 30 and 60 days, respectively. In vitro, the eluted drugs promote endothelial cell numbers on days 3 and 7, and reduce the proliferation of SMCs in weeks 2, 4, and 8. The stents markedly inhibit the adhesion of platelets on days 3, 7, and 14 relative to a non-drug-eluting stent. In vivo, the implanted stent is intact, and no stent thrombosis is observed in the stent-implanted vessels without the administration of daily oral acetylsalicylic acid. Promotion of endothelial recovery and inhibition of neointimal hyperplasia are also observed on the stented vessels. CONCLUSION: The work demonstrates the efficiency and safety of the biodegradable dual-drug-eluting stents with sequential and sustainable drug release to diseased arteries. Dove Medical Press 2014-08-27 /pmc/articles/PMC4157626/ /pubmed/25206303 http://dx.doi.org/10.2147/IJN.S67721 Text en © 2014 Lee et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Lee, Cheng-Hung
Yu, Chia-Ying
Chang, Shang-Hung
Hung, Kuo-Chun
Liu, Shih-Jung
Wang, Chao-Jan
Hsu, Ming-Yi
Hsieh, I-Chang
Chen, Wei-Jan
Ko, Yu-Shien
Wen, Ming-Shien
Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title_full Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title_fullStr Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title_full_unstemmed Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title_short Promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
title_sort promoting endothelial recovery and reducing neointimal hyperplasia using sequential-like release of acetylsalicylic acid and paclitaxel-loaded biodegradable stents
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157626/
https://www.ncbi.nlm.nih.gov/pubmed/25206303
http://dx.doi.org/10.2147/IJN.S67721
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