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Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries

Due to the limitations in autogenous nerve grafting or Schwann cell transplantation, large gap peripheral nerve injuries require a bridging strategy supported by nerve conduit. Cell based therapies provide a novel treatment for peripheral nerve injuries. In this study, we first experimented an optim...

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Detalles Bibliográficos
Autores principales: Luo, Lihua, He, Yan, Jin, Ling, Zhang, Yanni, Guastaldi, Fernando P., Albashari, Abdullkhaleg A., Hu, Fengting, Wang, Xiaoyan, Wang, Lei, Xiao, Jian, Li, Lingli, Wang, Jianming, Higuchi, Akon, Ye, Qingsong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509005/
https://www.ncbi.nlm.nih.gov/pubmed/33005828
http://dx.doi.org/10.1016/j.bioactmat.2020.08.028
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author Luo, Lihua
He, Yan
Jin, Ling
Zhang, Yanni
Guastaldi, Fernando P.
Albashari, Abdullkhaleg A.
Hu, Fengting
Wang, Xiaoyan
Wang, Lei
Xiao, Jian
Li, Lingli
Wang, Jianming
Higuchi, Akon
Ye, Qingsong
author_facet Luo, Lihua
He, Yan
Jin, Ling
Zhang, Yanni
Guastaldi, Fernando P.
Albashari, Abdullkhaleg A.
Hu, Fengting
Wang, Xiaoyan
Wang, Lei
Xiao, Jian
Li, Lingli
Wang, Jianming
Higuchi, Akon
Ye, Qingsong
author_sort Luo, Lihua
collection PubMed
description Due to the limitations in autogenous nerve grafting or Schwann cell transplantation, large gap peripheral nerve injuries require a bridging strategy supported by nerve conduit. Cell based therapies provide a novel treatment for peripheral nerve injuries. In this study, we first experimented an optimal scaffold material synthesis protocol, from where we selected the 10% GFD formula (10% GelMA hydrogel, recombinant human basic fibroblast growth factor and dental pulp stem cells (DPSCs)) to fill a cellulose/soy protein isolate composite membrane (CSM) tube to construct a third generation of nerve regeneration conduit, CSM-GFD. Then this CSM-GFD conduit was applied to repair a 15-mm long defect of sciatic nerve in a rat model. After 12 week post implant surgery, at histologic level, we found CSM-GFD conduit could regenerate nerve tissue like neuron and Schwann like nerve cells and myelinated nerve fibers. At physical level, CSM-GFD achieved functional recovery assessed by a sciatic functional index study. In both levels, CSM-GFD performed like what gold standard, the nerve autograft, could do. Further, we unveiled that almost all newly formed nerve tissue at defect site was originated from the direct differentiation of exogeneous DPSCs in CSM-GFD. In conclusion, we claimed that this third-generation nerve regeneration conduit, CSM-GFD, could be a promising tissue engineering approach to replace the conventional nerve autograft to treat the large gap defect in peripheral nerve injuries.
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spelling pubmed-75090052020-09-30 Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries Luo, Lihua He, Yan Jin, Ling Zhang, Yanni Guastaldi, Fernando P. Albashari, Abdullkhaleg A. Hu, Fengting Wang, Xiaoyan Wang, Lei Xiao, Jian Li, Lingli Wang, Jianming Higuchi, Akon Ye, Qingsong Bioact Mater Article Due to the limitations in autogenous nerve grafting or Schwann cell transplantation, large gap peripheral nerve injuries require a bridging strategy supported by nerve conduit. Cell based therapies provide a novel treatment for peripheral nerve injuries. In this study, we first experimented an optimal scaffold material synthesis protocol, from where we selected the 10% GFD formula (10% GelMA hydrogel, recombinant human basic fibroblast growth factor and dental pulp stem cells (DPSCs)) to fill a cellulose/soy protein isolate composite membrane (CSM) tube to construct a third generation of nerve regeneration conduit, CSM-GFD. Then this CSM-GFD conduit was applied to repair a 15-mm long defect of sciatic nerve in a rat model. After 12 week post implant surgery, at histologic level, we found CSM-GFD conduit could regenerate nerve tissue like neuron and Schwann like nerve cells and myelinated nerve fibers. At physical level, CSM-GFD achieved functional recovery assessed by a sciatic functional index study. In both levels, CSM-GFD performed like what gold standard, the nerve autograft, could do. Further, we unveiled that almost all newly formed nerve tissue at defect site was originated from the direct differentiation of exogeneous DPSCs in CSM-GFD. In conclusion, we claimed that this third-generation nerve regeneration conduit, CSM-GFD, could be a promising tissue engineering approach to replace the conventional nerve autograft to treat the large gap defect in peripheral nerve injuries. KeAi Publishing 2020-09-19 /pmc/articles/PMC7509005/ /pubmed/33005828 http://dx.doi.org/10.1016/j.bioactmat.2020.08.028 Text en © 2020 [The Author/The Authors] http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luo, Lihua
He, Yan
Jin, Ling
Zhang, Yanni
Guastaldi, Fernando P.
Albashari, Abdullkhaleg A.
Hu, Fengting
Wang, Xiaoyan
Wang, Lei
Xiao, Jian
Li, Lingli
Wang, Jianming
Higuchi, Akon
Ye, Qingsong
Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title_full Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title_fullStr Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title_full_unstemmed Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title_short Application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
title_sort application of bioactive hydrogels combined with dental pulp stem cells for the repair of large gap peripheral nerve injuries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509005/
https://www.ncbi.nlm.nih.gov/pubmed/33005828
http://dx.doi.org/10.1016/j.bioactmat.2020.08.028
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