Cargando…

Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration

At present, repair methods for peripheral nerve injury often fail to get satisfactory result. Although various strategies have been adopted to investigate the microenvironment after peripheral nerve injury, the underlying molecular mechanisms of neurite outgrowth remain unclear. In this study, we ev...

Descripción completa

Detalles Bibliográficos
Autores principales: Rao, Feng, Zhang, Dianying, Fang, Tengjiaozi, Lu, Changfeng, Wang, Bo, Ding, Xiao, Wei, Shuai, Zhang, Yiran, Pi, Wei, Xu, Hailin, Wang, Yanhua, Jiang, Baoguo, Zhang, Peixun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525800/
https://www.ncbi.nlm.nih.gov/pubmed/31191669
http://dx.doi.org/10.1155/2019/2546367
_version_ 1783419766968418304
author Rao, Feng
Zhang, Dianying
Fang, Tengjiaozi
Lu, Changfeng
Wang, Bo
Ding, Xiao
Wei, Shuai
Zhang, Yiran
Pi, Wei
Xu, Hailin
Wang, Yanhua
Jiang, Baoguo
Zhang, Peixun
author_facet Rao, Feng
Zhang, Dianying
Fang, Tengjiaozi
Lu, Changfeng
Wang, Bo
Ding, Xiao
Wei, Shuai
Zhang, Yiran
Pi, Wei
Xu, Hailin
Wang, Yanhua
Jiang, Baoguo
Zhang, Peixun
author_sort Rao, Feng
collection PubMed
description At present, repair methods for peripheral nerve injury often fail to get satisfactory result. Although various strategies have been adopted to investigate the microenvironment after peripheral nerve injury, the underlying molecular mechanisms of neurite outgrowth remain unclear. In this study, we evaluate the effects of exosomes from gingival mesenchymal stem cells (GMSCs) combined with biodegradable chitin conduits on peripheral nerve regeneration. GMSCs were isolated from human gingival tissue and characterized by surface antigen analysis and in vitro multipotent differentiation. The cell supernatant was collected to isolate the exosomes. The exosomes were characterized by transmission electron microscopy, Western blot, and size distribution analysis. The effects of exosomes on peripheral nerve regeneration in vitro were evaluated by coculture with Schwann cells and DRGs. The chitin conduit was prepared and combined with the exosomes to repair rat sciatic nerve defect. Histology, electrophysiology, and gait analysis were used to test the effects of exosomes on sciatic nerve function recovery in vivo. We have successfully cultured GMSCs and isolated exosomes. The exosomes from GMSCs could significantly promote Schwann cell proliferation and DRG axon growth. The in vivo studies showed that chitin conduit combined with exosomes from GMSCs could significantly increase the number and diameter of nerve fibers and promote myelin formation. In addition, muscle function, nerve conduction function, and motor function were also obviously recovered. In summary, this study suggests that GMSC-derived exosomes combined with biodegradable chitin conduits are a useful and novel therapeutic intervention in peripheral nerve repair.
format Online
Article
Text
id pubmed-6525800
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-65258002019-06-12 Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration Rao, Feng Zhang, Dianying Fang, Tengjiaozi Lu, Changfeng Wang, Bo Ding, Xiao Wei, Shuai Zhang, Yiran Pi, Wei Xu, Hailin Wang, Yanhua Jiang, Baoguo Zhang, Peixun Stem Cells Int Research Article At present, repair methods for peripheral nerve injury often fail to get satisfactory result. Although various strategies have been adopted to investigate the microenvironment after peripheral nerve injury, the underlying molecular mechanisms of neurite outgrowth remain unclear. In this study, we evaluate the effects of exosomes from gingival mesenchymal stem cells (GMSCs) combined with biodegradable chitin conduits on peripheral nerve regeneration. GMSCs were isolated from human gingival tissue and characterized by surface antigen analysis and in vitro multipotent differentiation. The cell supernatant was collected to isolate the exosomes. The exosomes were characterized by transmission electron microscopy, Western blot, and size distribution analysis. The effects of exosomes on peripheral nerve regeneration in vitro were evaluated by coculture with Schwann cells and DRGs. The chitin conduit was prepared and combined with the exosomes to repair rat sciatic nerve defect. Histology, electrophysiology, and gait analysis were used to test the effects of exosomes on sciatic nerve function recovery in vivo. We have successfully cultured GMSCs and isolated exosomes. The exosomes from GMSCs could significantly promote Schwann cell proliferation and DRG axon growth. The in vivo studies showed that chitin conduit combined with exosomes from GMSCs could significantly increase the number and diameter of nerve fibers and promote myelin formation. In addition, muscle function, nerve conduction function, and motor function were also obviously recovered. In summary, this study suggests that GMSC-derived exosomes combined with biodegradable chitin conduits are a useful and novel therapeutic intervention in peripheral nerve repair. Hindawi 2019-05-02 /pmc/articles/PMC6525800/ /pubmed/31191669 http://dx.doi.org/10.1155/2019/2546367 Text en Copyright © 2019 Feng Rao et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Rao, Feng
Zhang, Dianying
Fang, Tengjiaozi
Lu, Changfeng
Wang, Bo
Ding, Xiao
Wei, Shuai
Zhang, Yiran
Pi, Wei
Xu, Hailin
Wang, Yanhua
Jiang, Baoguo
Zhang, Peixun
Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title_full Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title_fullStr Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title_full_unstemmed Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title_short Exosomes from Human Gingiva-Derived Mesenchymal Stem Cells Combined with Biodegradable Chitin Conduits Promote Rat Sciatic Nerve Regeneration
title_sort exosomes from human gingiva-derived mesenchymal stem cells combined with biodegradable chitin conduits promote rat sciatic nerve regeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525800/
https://www.ncbi.nlm.nih.gov/pubmed/31191669
http://dx.doi.org/10.1155/2019/2546367
work_keys_str_mv AT raofeng exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT zhangdianying exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT fangtengjiaozi exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT luchangfeng exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT wangbo exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT dingxiao exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT weishuai exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT zhangyiran exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT piwei exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT xuhailin exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT wangyanhua exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT jiangbaoguo exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration
AT zhangpeixun exosomesfromhumangingivaderivedmesenchymalstemcellscombinedwithbiodegradablechitinconduitspromoteratsciaticnerveregeneration