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Evaluation of PVA biodegradable electric conductive membranes for nerve regeneration in axonotmesis injuries: the rat sciatic nerve animal model.

Authors :
Ribeiro, Jorge
Caseiro, Ana Rita
Pereira, Tiago
Armada‐da‐Silva, Paulo Alexandre
Pires, Isabel
Prada, Justina
Amorim, Irina
Leal Reis, Inês
Amado, Sandra
Santos, José Domingos
Bompasso, Simone
Raimondo, Stefania
Varejão, Artur Severo Proença
Geuna, Stefano
Luís, Ana Lúcia
Maurício, Ana Colette
Source :
Journal of Biomedical Materials Research, Part A; May2017, Vol. 105 Issue 5, p1267-1280, 14p
Publication Year :
2017

Abstract

The therapeutic effect of three polyvinyl alcohol (PVA) membranes loaded with electrically conductive materials - carbon nanotubes ( PVA-CNTs) and polypyrrole ( PVA-PPy) - were tested in vivo for neuro-muscular regeneration after an axonotmesis injury in the rat sciatic nerve. The membranes electrical conductivity measured was 1.5 ± 0.5 × 10<superscript>−6</superscript> S/m, 579 ± 0.6 × 10<superscript>−6</superscript> S/m, and 1837.5 ± 0.7 × 10<superscript>−6</superscript> S/m, respectively. At week-12, a residual motor and nociceptive deficit were present in all treated groups, but at week-12, a better recovery to normal gait pattern of the PVA-CNTs and PVA-PPy treated groups was observed. Morphometrical analysis demonstrated that PVA-CNTs group presented higher myelin thickness and lower g-ratio. The tibialis anterior muscle, in the PVA-PPy and PVA-CNTs groups showed a 9% and 19% increase of average fiber size area and a 5% and 10% increase of the 'minimal Feret's diameter,' respectively. No inflammation, degeneration, fibrosis or necrosis were detected in lung, liver, kidneys, spleen, and regional lymph nodes and absence of carbon deposits was confirmed with Von Kossa and Masson-Fontana stains. In conclusion, the membranes of PVA-CNTs and PVA-PPy are biocompatible and have electrical conductivity. The higher electrical conductivity measured in PVA-CNTs membrane might be responsible for the positive results on maturation of myelinated fibers. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 1267-1280, 2017. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15493296
Volume :
105
Issue :
5
Database :
Complementary Index
Journal :
Journal of Biomedical Materials Research, Part A
Publication Type :
Academic Journal
Accession number :
122099628
Full Text :
https://doi.org/10.1002/jbm.a.35998