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Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material

Decellularized nerve extracellular matrix (NECM) composited with chitosan are moldable materials suitable for spinal cord repair. But the rapid biodegradation of the materials may interrupt neural tissue reconstruction in vivo. To improve the stability of the materials, the materials produced by NEC...

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Autores principales: Zhang, Fangsong, Zhang, Naili, Xu, Qing, Zhang, Luping, Zhang, Chunlei, Liu, Hongfu, Yu, Zhenhai, Zhou, Shuai, Feng, Guoying, Huang, Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8192270/
https://www.ncbi.nlm.nih.gov/pubmed/34115245
http://dx.doi.org/10.1007/s10561-020-09889-2
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author Zhang, Fangsong
Zhang, Naili
Xu, Qing
Zhang, Luping
Zhang, Chunlei
Liu, Hongfu
Yu, Zhenhai
Zhou, Shuai
Feng, Guoying
Huang, Fei
author_facet Zhang, Fangsong
Zhang, Naili
Xu, Qing
Zhang, Luping
Zhang, Chunlei
Liu, Hongfu
Yu, Zhenhai
Zhou, Shuai
Feng, Guoying
Huang, Fei
author_sort Zhang, Fangsong
collection PubMed
description Decellularized nerve extracellular matrix (NECM) composited with chitosan are moldable materials suitable for spinal cord repair. But the rapid biodegradation of the materials may interrupt neural tissue reconstruction in vivo. To improve the stability of the materials, the materials produced by NECM and chitosan hydrogels were crosslinked by genipine, glutaraldehyde or ultraviolet ray. Physicochemical property, degradation and biocompatibility of materials crosslinked by genipin, glutaraldehyde or ultraviolet ray were evaluated. The scaffold crosslinked by genipin possessed a porous structure, and the porosity ratio was 89.07 + 4.90%, the average diameter of pore was 85.32 + 5.34 μm. The crosslinked degree of the scaffold crosslinked by genipin and glutaraldehyde was 75.13 ± 4.87%, 71.25 ± 5.06% respectively; Uncrosslinked scaffold disintegrated when immerged in distilled water while the scaffold crosslinked by genipin and glutaraldehyde group retained their integrity. The scaffold crosslinked by genipin has better water absorption, water retention and anti-enzymatic hydrolysis ability than the other three groups. Cell cytotoxicity showed that the cytotoxicity of scaffold crosslinked by genipin was lower than that crosslinked by glutaraldehyde. The histocompatibility of scaffold crosslinked by genipin was also better than glutaraldehyde group. More cells grew well in the scaffold crosslinked by genipin when co-cultured with L929 cells. The decellularized nerve extracellular matrix/chitosan scaffold crosslinked by the genipin has good mechanical properties, micro structure and biocompatibility, which is an ideal scaffold for the spinal cord tissue engineering.
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spelling pubmed-81922702021-06-11 Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material Zhang, Fangsong Zhang, Naili Xu, Qing Zhang, Luping Zhang, Chunlei Liu, Hongfu Yu, Zhenhai Zhou, Shuai Feng, Guoying Huang, Fei Cell Tissue Bank Article Decellularized nerve extracellular matrix (NECM) composited with chitosan are moldable materials suitable for spinal cord repair. But the rapid biodegradation of the materials may interrupt neural tissue reconstruction in vivo. To improve the stability of the materials, the materials produced by NECM and chitosan hydrogels were crosslinked by genipine, glutaraldehyde or ultraviolet ray. Physicochemical property, degradation and biocompatibility of materials crosslinked by genipin, glutaraldehyde or ultraviolet ray were evaluated. The scaffold crosslinked by genipin possessed a porous structure, and the porosity ratio was 89.07 + 4.90%, the average diameter of pore was 85.32 + 5.34 μm. The crosslinked degree of the scaffold crosslinked by genipin and glutaraldehyde was 75.13 ± 4.87%, 71.25 ± 5.06% respectively; Uncrosslinked scaffold disintegrated when immerged in distilled water while the scaffold crosslinked by genipin and glutaraldehyde group retained their integrity. The scaffold crosslinked by genipin has better water absorption, water retention and anti-enzymatic hydrolysis ability than the other three groups. Cell cytotoxicity showed that the cytotoxicity of scaffold crosslinked by genipin was lower than that crosslinked by glutaraldehyde. The histocompatibility of scaffold crosslinked by genipin was also better than glutaraldehyde group. More cells grew well in the scaffold crosslinked by genipin when co-cultured with L929 cells. The decellularized nerve extracellular matrix/chitosan scaffold crosslinked by the genipin has good mechanical properties, micro structure and biocompatibility, which is an ideal scaffold for the spinal cord tissue engineering. Springer Netherlands 2021-06-11 2021 /pmc/articles/PMC8192270/ /pubmed/34115245 http://dx.doi.org/10.1007/s10561-020-09889-2 Text en © The Author(s), under exclusive licence to Springer Nature B.V. 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Zhang, Fangsong
Zhang, Naili
Xu, Qing
Zhang, Luping
Zhang, Chunlei
Liu, Hongfu
Yu, Zhenhai
Zhou, Shuai
Feng, Guoying
Huang, Fei
Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title_full Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title_fullStr Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title_full_unstemmed Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title_short Decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
title_sort decellularized nerve extracellular matrix/chitosan crosslinked by genipin to prepare a moldable nerve repair material
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8192270/
https://www.ncbi.nlm.nih.gov/pubmed/34115245
http://dx.doi.org/10.1007/s10561-020-09889-2
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