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PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process

In this work, a functionalized polycaprolactone (PCL) composite fiber combining calf-type I collagen (CO) and natural drug usnic acid (UA) was prepared, in which UA was used as an antibacterial agent. Through 3D near-field electrospinning, the mixed solution was prepared into PCL/CO/UA composite fib...

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Detalles Bibliográficos
Autores principales: Mai, Zhirui, Liu, Qilong, Bian, Yongshuang, Wang, Peng, Fu, Xuewei, Lin, Dongsong, Kong, Nianzi, Huang, Yuqing, Zeng, Zijun, Li, Dingfan, Zheng, Wenxu, Xia, Yuanjun, Zhou, Wuyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9824864/
https://www.ncbi.nlm.nih.gov/pubmed/36616572
http://dx.doi.org/10.3390/polym15010223
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author Mai, Zhirui
Liu, Qilong
Bian, Yongshuang
Wang, Peng
Fu, Xuewei
Lin, Dongsong
Kong, Nianzi
Huang, Yuqing
Zeng, Zijun
Li, Dingfan
Zheng, Wenxu
Xia, Yuanjun
Zhou, Wuyi
author_facet Mai, Zhirui
Liu, Qilong
Bian, Yongshuang
Wang, Peng
Fu, Xuewei
Lin, Dongsong
Kong, Nianzi
Huang, Yuqing
Zeng, Zijun
Li, Dingfan
Zheng, Wenxu
Xia, Yuanjun
Zhou, Wuyi
author_sort Mai, Zhirui
collection PubMed
description In this work, a functionalized polycaprolactone (PCL) composite fiber combining calf-type I collagen (CO) and natural drug usnic acid (UA) was prepared, in which UA was used as an antibacterial agent. Through 3D near-field electrospinning, the mixed solution was prepared into PCL/CO/UA composite fibers (PCUCF), which has a well-defined perfect arrangement structure. The influence of electrospinning process parameters on fiber diameter was investigated, the optimal electrospinning parameters were determined, and the electric field simulation was conducted to verify the optimal parameters. The addition of 20% collagen made the composite fiber have good hydrophilicity and water absorption property. In the presence of PCUCF, 1% UA content significantly inhibited the growth rate of Gram-positive and negative bacteria in the plate culture. The AC-PCUCF (after crosslinking PCUCF) prepared by crosslinking collagen with genipin showed stronger mechanical properties, water absorption property, thermal stability, and drug release performance. Cell proliferation experiments showed that PCUCF and AC-PCUCF had no cytotoxicity and could promote cell proliferation and adhesion. The results show that PCL/CO/UA composite fiber has potential application prospects in biomedical dressing.
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spelling pubmed-98248642023-01-08 PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process Mai, Zhirui Liu, Qilong Bian, Yongshuang Wang, Peng Fu, Xuewei Lin, Dongsong Kong, Nianzi Huang, Yuqing Zeng, Zijun Li, Dingfan Zheng, Wenxu Xia, Yuanjun Zhou, Wuyi Polymers (Basel) Article In this work, a functionalized polycaprolactone (PCL) composite fiber combining calf-type I collagen (CO) and natural drug usnic acid (UA) was prepared, in which UA was used as an antibacterial agent. Through 3D near-field electrospinning, the mixed solution was prepared into PCL/CO/UA composite fibers (PCUCF), which has a well-defined perfect arrangement structure. The influence of electrospinning process parameters on fiber diameter was investigated, the optimal electrospinning parameters were determined, and the electric field simulation was conducted to verify the optimal parameters. The addition of 20% collagen made the composite fiber have good hydrophilicity and water absorption property. In the presence of PCUCF, 1% UA content significantly inhibited the growth rate of Gram-positive and negative bacteria in the plate culture. The AC-PCUCF (after crosslinking PCUCF) prepared by crosslinking collagen with genipin showed stronger mechanical properties, water absorption property, thermal stability, and drug release performance. Cell proliferation experiments showed that PCUCF and AC-PCUCF had no cytotoxicity and could promote cell proliferation and adhesion. The results show that PCL/CO/UA composite fiber has potential application prospects in biomedical dressing. MDPI 2022-12-31 /pmc/articles/PMC9824864/ /pubmed/36616572 http://dx.doi.org/10.3390/polym15010223 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mai, Zhirui
Liu, Qilong
Bian, Yongshuang
Wang, Peng
Fu, Xuewei
Lin, Dongsong
Kong, Nianzi
Huang, Yuqing
Zeng, Zijun
Li, Dingfan
Zheng, Wenxu
Xia, Yuanjun
Zhou, Wuyi
PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title_full PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title_fullStr PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title_full_unstemmed PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title_short PCL/Collagen/UA Composite Biomedical Dressing with Ordered Microfiberous Structure Fabricated by a 3D Near-Field Electrospinning Process
title_sort pcl/collagen/ua composite biomedical dressing with ordered microfiberous structure fabricated by a 3d near-field electrospinning process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9824864/
https://www.ncbi.nlm.nih.gov/pubmed/36616572
http://dx.doi.org/10.3390/polym15010223
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