Collagen (NeuraGen®) nerve conduits and stem cells for peripheral nerve gap repair.

Détails

ID Serval
serval:BIB_35795BF92C77
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Collagen (NeuraGen®) nerve conduits and stem cells for peripheral nerve gap repair.
Périodique
Neuroscience Letters
Auteur⸱e⸱s
di Summa P.G., Kingham P.J., Campisi C.C., Raffoul W., Kalbermatten D.F.
ISSN
1872-7972 (Electronic)
ISSN-L
0304-3940
Statut éditorial
Publié
Date de publication
2014
Peer-reviewed
Oui
Volume
572
Pages
26-31
Langue
anglais
Notes
Publication types: Journal ArticlePublication Status: ppublish
Résumé
Collagen nerve guides are used clinically for peripheral nerve defects, but their use is generally limited to lesions up to 3 cm. In this study we combined collagen conduits with cells as an alternative strategy to support nerve regeneration over longer gaps. In vitro cell adherence to collagen conduits (NeuraGen(®) nerve guides) was assessed by scanning electron microscopy. For in vivo experiments, conduits were seeded with either Schwann cells (SC), SC-like differentiated bone marrow-derived mesenchymal stem cells (dMSC), SC-like differentiated adipose-derived stem cells (dASC) or left empty (control group), conduits were used to bridge a 1cm gap in the rat sciatic nerve and after 2-weeks immunohistochemical analysis was performed to assess axonal regeneration and SC infiltration. The regenerative cells showed good adherence to the collagen walls. Primary SC showed significant improvement in distal stump sprouting. No significant differences in proximal regeneration distances were noticed among experimental groups. dMSC and dASC-loaded conduits showed a diffuse sprouting pattern, while SC-loaded showed an enhanced cone pattern and a typical sprouting along the conduits walls, suggesting an increased affinity for the collagen type I fibrillar structure. NeuraGen(®) guides showed high affinity of regenerative cells and could be used as efficient vehicle for cell delivery. However, surface modifications (e.g. with extracellular matrix molecule peptides) of NeuraGen(®) guides could be used in future tissue-engineering applications to better exploit the cell potential.
Pubmed
Web of science
Création de la notice
05/08/2014 18:49
Dernière modification de la notice
20/08/2019 14:22
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