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Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture

Chitosan (CTS) has been used as a nerve guidance conduit (NGC) material for bridging peripheral nerve defects due to its biocompatible, biodegradable, and non-toxic properties. However, the nerve regeneration effect of chitosan alone is restricted due to its inadequate biological activity. Herein, a...

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Autores principales: Zhang, Yijie, Jiang, Zhiwen, Wang, Yanting, Xia, Lixin, Yu, Shuqin, Li, Hongjian, Zhang, Wei, Liu, Wanshun, Shao, Kai, Han, Baoqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9783930/
https://www.ncbi.nlm.nih.gov/pubmed/36558171
http://dx.doi.org/10.3390/molecules27249039
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author Zhang, Yijie
Jiang, Zhiwen
Wang, Yanting
Xia, Lixin
Yu, Shuqin
Li, Hongjian
Zhang, Wei
Liu, Wanshun
Shao, Kai
Han, Baoqin
author_facet Zhang, Yijie
Jiang, Zhiwen
Wang, Yanting
Xia, Lixin
Yu, Shuqin
Li, Hongjian
Zhang, Wei
Liu, Wanshun
Shao, Kai
Han, Baoqin
author_sort Zhang, Yijie
collection PubMed
description Chitosan (CTS) has been used as a nerve guidance conduit (NGC) material for bridging peripheral nerve defects due to its biocompatible, biodegradable, and non-toxic properties. However, the nerve regeneration effect of chitosan alone is restricted due to its inadequate biological activity. Herein, a composite, bioactive chitosan based nerve conduit, consisting of outer warp-knitted tube scaffold made from medical-grade chitosan fiber, and inner porous cross linked carboxymethyl chitosan (C-CM-CTS) sponge with radial texture was developed. The inner wall of the scaffold was coated with C-CM-CTS solution. CM-CTS provided favorable bioactivities in the composite chitosan-based nerve conduit. An in vitro study of CM-CTS revealed its satisfying biocompatibility with fibroblast and its inhibition of oxidative damage to Schwann cells. As the internal filler of the NGC, the lyophilized sponge of C-CM-CTS showed a longitudinal guidance effect for nerve reconstruction. After 10 mm defect in rat sciatic nerve was bridged with the composite bioactive chitosan-based nerve conduit, the nerve conduit was able to effectively promote axonal regeneration and played a positive role in inducing nerve regeneration and functional recovery. In addition to the functional advantages, which are equal to those of an autograft; the technology for the preparation of this conduit can be put into mass production.
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spelling pubmed-97839302022-12-24 Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture Zhang, Yijie Jiang, Zhiwen Wang, Yanting Xia, Lixin Yu, Shuqin Li, Hongjian Zhang, Wei Liu, Wanshun Shao, Kai Han, Baoqin Molecules Article Chitosan (CTS) has been used as a nerve guidance conduit (NGC) material for bridging peripheral nerve defects due to its biocompatible, biodegradable, and non-toxic properties. However, the nerve regeneration effect of chitosan alone is restricted due to its inadequate biological activity. Herein, a composite, bioactive chitosan based nerve conduit, consisting of outer warp-knitted tube scaffold made from medical-grade chitosan fiber, and inner porous cross linked carboxymethyl chitosan (C-CM-CTS) sponge with radial texture was developed. The inner wall of the scaffold was coated with C-CM-CTS solution. CM-CTS provided favorable bioactivities in the composite chitosan-based nerve conduit. An in vitro study of CM-CTS revealed its satisfying biocompatibility with fibroblast and its inhibition of oxidative damage to Schwann cells. As the internal filler of the NGC, the lyophilized sponge of C-CM-CTS showed a longitudinal guidance effect for nerve reconstruction. After 10 mm defect in rat sciatic nerve was bridged with the composite bioactive chitosan-based nerve conduit, the nerve conduit was able to effectively promote axonal regeneration and played a positive role in inducing nerve regeneration and functional recovery. In addition to the functional advantages, which are equal to those of an autograft; the technology for the preparation of this conduit can be put into mass production. MDPI 2022-12-18 /pmc/articles/PMC9783930/ /pubmed/36558171 http://dx.doi.org/10.3390/molecules27249039 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
Zhang, Yijie
Jiang, Zhiwen
Wang, Yanting
Xia, Lixin
Yu, Shuqin
Li, Hongjian
Zhang, Wei
Liu, Wanshun
Shao, Kai
Han, Baoqin
Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title_full Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title_fullStr Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title_full_unstemmed Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title_short Nerve Regeneration Effect of a Composite Bioactive Carboxymethyl Chitosan-Based Nerve Conduit with a Radial Texture
title_sort nerve regeneration effect of a composite bioactive carboxymethyl chitosan-based nerve conduit with a radial texture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9783930/
https://www.ncbi.nlm.nih.gov/pubmed/36558171
http://dx.doi.org/10.3390/molecules27249039
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