Cargando…

Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery

Nerve guidance conduits with hollow lumen fail to regenerate critical-sized peripheral nerve defects (15 mm in rats and 25 mm in humans), which can be improved by a beneficial intraluminal microenvironment. However, individual cues provided by intraluminal filling materials are inadequate to elimina...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Shuhui, Zhu, Jinjin, Lu, Changfeng, Chai, Yi, Cao, Zheng, Lu, Jiaju, Zhang, Zhe, Zhao, He, Huang, Yin-Yuan, Yao, Shenglian, Kong, Xiangdong, Zhang, Peixun, Wang, Xiumei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8435993/
https://www.ncbi.nlm.nih.gov/pubmed/34541418
http://dx.doi.org/10.1016/j.bioactmat.2021.05.056
_version_ 1783751913310781440
author Yang, Shuhui
Zhu, Jinjin
Lu, Changfeng
Chai, Yi
Cao, Zheng
Lu, Jiaju
Zhang, Zhe
Zhao, He
Huang, Yin-Yuan
Yao, Shenglian
Kong, Xiangdong
Zhang, Peixun
Wang, Xiumei
author_facet Yang, Shuhui
Zhu, Jinjin
Lu, Changfeng
Chai, Yi
Cao, Zheng
Lu, Jiaju
Zhang, Zhe
Zhao, He
Huang, Yin-Yuan
Yao, Shenglian
Kong, Xiangdong
Zhang, Peixun
Wang, Xiumei
author_sort Yang, Shuhui
collection PubMed
description Nerve guidance conduits with hollow lumen fail to regenerate critical-sized peripheral nerve defects (15 mm in rats and 25 mm in humans), which can be improved by a beneficial intraluminal microenvironment. However, individual cues provided by intraluminal filling materials are inadequate to eliminate the functional gap between regenerated nerves and normal nerves. Herein, an aligned fibrin/functionalized self-assembling peptide (AFG/fSAP) interpenetrating nanofiber hydrogel that exerting synergistic topographical and biochemical cues for peripheral nerve regeneration is constructed via electrospinning and molecular self-assembly. The hydrogel possesses an aligned structure, high water content, appropriate mechanical properties and suitable biodegradation capabilities for nerve repair, which enhances the alignment and neurotrophin secretion of primary Schwann cells (SCs) in vitro, and successfully bridges a 15-mm sciatic nerve gap in rats in vivo. The rats transplanted with the AFG/fSAP hydrogel exhibit satisfactory morphological and functional recovery in myelinated nerve fibers and innervated muscles. The motor function recovery facilitated by the AFG/fSAP hydrogel is comparable with that of autografts. Moreover, the AFG/fSAP hydrogel upregulates the regeneration-associated gene expression and activates the PI3K/Akt and MAPK signaling pathways in the regenerated nerve. Altogether, the AFG/fSAP hydrogel represents a promising approach for peripheral nerve repair through an integration of structural guidance and biochemical stimulation.
format Online
Article
Text
id pubmed-8435993
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-84359932021-09-17 Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery Yang, Shuhui Zhu, Jinjin Lu, Changfeng Chai, Yi Cao, Zheng Lu, Jiaju Zhang, Zhe Zhao, He Huang, Yin-Yuan Yao, Shenglian Kong, Xiangdong Zhang, Peixun Wang, Xiumei Bioact Mater Article Nerve guidance conduits with hollow lumen fail to regenerate critical-sized peripheral nerve defects (15 mm in rats and 25 mm in humans), which can be improved by a beneficial intraluminal microenvironment. However, individual cues provided by intraluminal filling materials are inadequate to eliminate the functional gap between regenerated nerves and normal nerves. Herein, an aligned fibrin/functionalized self-assembling peptide (AFG/fSAP) interpenetrating nanofiber hydrogel that exerting synergistic topographical and biochemical cues for peripheral nerve regeneration is constructed via electrospinning and molecular self-assembly. The hydrogel possesses an aligned structure, high water content, appropriate mechanical properties and suitable biodegradation capabilities for nerve repair, which enhances the alignment and neurotrophin secretion of primary Schwann cells (SCs) in vitro, and successfully bridges a 15-mm sciatic nerve gap in rats in vivo. The rats transplanted with the AFG/fSAP hydrogel exhibit satisfactory morphological and functional recovery in myelinated nerve fibers and innervated muscles. The motor function recovery facilitated by the AFG/fSAP hydrogel is comparable with that of autografts. Moreover, the AFG/fSAP hydrogel upregulates the regeneration-associated gene expression and activates the PI3K/Akt and MAPK signaling pathways in the regenerated nerve. Altogether, the AFG/fSAP hydrogel represents a promising approach for peripheral nerve repair through an integration of structural guidance and biochemical stimulation. KeAi Publishing 2021-06-12 /pmc/articles/PMC8435993/ /pubmed/34541418 http://dx.doi.org/10.1016/j.bioactmat.2021.05.056 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Yang, Shuhui
Zhu, Jinjin
Lu, Changfeng
Chai, Yi
Cao, Zheng
Lu, Jiaju
Zhang, Zhe
Zhao, He
Huang, Yin-Yuan
Yao, Shenglian
Kong, Xiangdong
Zhang, Peixun
Wang, Xiumei
Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title_full Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title_fullStr Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title_full_unstemmed Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title_short Aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
title_sort aligned fibrin/functionalized self-assembling peptide interpenetrating nanofiber hydrogel presenting multi-cues promotes peripheral nerve functional recovery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8435993/
https://www.ncbi.nlm.nih.gov/pubmed/34541418
http://dx.doi.org/10.1016/j.bioactmat.2021.05.056
work_keys_str_mv AT yangshuhui alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT zhujinjin alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT luchangfeng alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT chaiyi alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT caozheng alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT lujiaju alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT zhangzhe alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT zhaohe alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT huangyinyuan alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT yaoshenglian alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT kongxiangdong alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT zhangpeixun alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery
AT wangxiumei alignedfibrinfunctionalizedselfassemblingpeptideinterpenetratingnanofiberhydrogelpresentingmulticuespromotesperipheralnervefunctionalrecovery