Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves

Magnesium (Mg) wire has been shown to be biodegradable and have anti-inflammatory properties. It can induce Schwann cells to secrete nerve growth factor and promote the regeneration of nerve axons after central nervous system injury. We hypothesized that biodegradable Mg wire may enhance compressed...

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Main Authors: Bo-han Li, Ke Yang, Xiao Wang
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2016-01-01
Series:Neural Regeneration Research
Subjects:
Online Access:http://www.nrronline.org/article.asp?issn=1673-5374;year=2016;volume=11;issue=12;spage=2012;epage=2017;aulast=Li
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spelling doaj-c966dba890c149a8aff66712b1ab0af52020-11-25T03:20:10ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742016-01-0111122012201710.4103/1673-5374.197146Biodegradable magnesium wire promotes regeneration of compressed sciatic nervesBo-han LiKe YangXiao WangMagnesium (Mg) wire has been shown to be biodegradable and have anti-inflammatory properties. It can induce Schwann cells to secrete nerve growth factor and promote the regeneration of nerve axons after central nervous system injury. We hypothesized that biodegradable Mg wire may enhance compressed peripheral nerve regeneration. A rat acute sciatic nerve compression model was made, and AZ31 Mg wire (3 mm diameter; 8 mm length) bridged at both ends of the nerve. Our results demonstrate that sciatic functional index, nerve growth factor, p75 neurotrophin receptor, and tyrosine receptor kinase A mRNA expression are increased by Mg wire in Mg model. The numbers of cross section nerve fibers and regenerating axons were also increased. Sciatic nerve function was improved and the myelinated axon number was increased in injured sciatic nerve following Mg treatment. Immunofluorescence histopathology showed that there were increased vigorous axonal regeneration and myelin sheath coverage in injured sciatic nerve after Mg treatment. Our findings confirm that biodegradable Mg wire can promote the regeneration of acute compressed sciatic nerves.http://www.nrronline.org/article.asp?issn=1673-5374;year=2016;volume=11;issue=12;spage=2012;epage=2017;aulast=Linerve regeneration; peripheral nerve regeneration; biodegradable; magnesium wire; sciatic nerve; rats; nerve growth factor; P75 neurotrophin receptor; tyrosine receptor kinase A; neural regeneration
collection DOAJ
language English
format Article
sources DOAJ
author Bo-han Li
Ke Yang
Xiao Wang
spellingShingle Bo-han Li
Ke Yang
Xiao Wang
Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
Neural Regeneration Research
nerve regeneration; peripheral nerve regeneration; biodegradable; magnesium wire; sciatic nerve; rats; nerve growth factor; P75 neurotrophin receptor; tyrosine receptor kinase A; neural regeneration
author_facet Bo-han Li
Ke Yang
Xiao Wang
author_sort Bo-han Li
title Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
title_short Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
title_full Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
title_fullStr Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
title_full_unstemmed Biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
title_sort biodegradable magnesium wire promotes regeneration of compressed sciatic nerves
publisher Wolters Kluwer Medknow Publications
series Neural Regeneration Research
issn 1673-5374
publishDate 2016-01-01
description Magnesium (Mg) wire has been shown to be biodegradable and have anti-inflammatory properties. It can induce Schwann cells to secrete nerve growth factor and promote the regeneration of nerve axons after central nervous system injury. We hypothesized that biodegradable Mg wire may enhance compressed peripheral nerve regeneration. A rat acute sciatic nerve compression model was made, and AZ31 Mg wire (3 mm diameter; 8 mm length) bridged at both ends of the nerve. Our results demonstrate that sciatic functional index, nerve growth factor, p75 neurotrophin receptor, and tyrosine receptor kinase A mRNA expression are increased by Mg wire in Mg model. The numbers of cross section nerve fibers and regenerating axons were also increased. Sciatic nerve function was improved and the myelinated axon number was increased in injured sciatic nerve following Mg treatment. Immunofluorescence histopathology showed that there were increased vigorous axonal regeneration and myelin sheath coverage in injured sciatic nerve after Mg treatment. Our findings confirm that biodegradable Mg wire can promote the regeneration of acute compressed sciatic nerves.
topic nerve regeneration; peripheral nerve regeneration; biodegradable; magnesium wire; sciatic nerve; rats; nerve growth factor; P75 neurotrophin receptor; tyrosine receptor kinase A; neural regeneration
url http://www.nrronline.org/article.asp?issn=1673-5374;year=2016;volume=11;issue=12;spage=2012;epage=2017;aulast=Li
work_keys_str_mv AT bohanli biodegradablemagnesiumwirepromotesregenerationofcompressedsciaticnerves
AT keyang biodegradablemagnesiumwirepromotesregenerationofcompressedsciaticnerves
AT xiaowang biodegradablemagnesiumwirepromotesregenerationofcompressedsciaticnerves
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