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  4. Regrowth of axons into the distal spinal cord through a Schwann-cell-seeded mini-channel implanted into hemisected adult rat spinal cord.
 
  • Détails
Titre

Regrowth of axons into the distal spinal cord through a Schwann-cell-seeded mini-channel implanted into hemisected adult rat spinal cord.

Type
article
Institution
UNIL/CHUV/Unisanté + institutions partenaires
Périodique
European Journal of Neuroscience  
Auteur(s)
Xu, X.M.
Auteure/Auteur
Zhang, S.X.
Auteure/Auteur
Li, H.
Auteure/Auteur
Aebischer, P.
Auteure/Auteur
Bunge, M.B.
Auteure/Auteur
Liens vers les unités
Recherche chirurgicale  
ISSN
0953-816X
Statut éditorial
Publié
Date de publication
1999
Volume
11
Numéro
5
Première page
1723
Dernière page/numéro d’article
1740
Langue
anglais
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't ; Research Support, U.S. Gov't, P.H.S.
Publication Status: ppublish
Résumé
Schwann cells (SCs) have been shown to be a key element in promoting axonal regeneration after being grafted into the central nervous system (CNS). In the present study, SC-supported axonal regrowth was tested in an adult rat spinal cord implantation model. This model is characterized by a right spinal cord hemisection at the eighth thoracic segment, implantation of a SC-containing mini-channel and restoration of cerebrospinal fluid circulation by suturing the dura. We demonstrate that a tissue cable containing grafted SCs formed an effective bridge between the two stumps of the hemicord 1 month after transplantation. Approximately 10 000 myelinated and unmyelinated axons (1 : 9) per cable were found at its midpoint. In addition to propriospinal axons and axons of peripheral nervous system (PNS) origin, axons from as many as 19 brainstem regions also grew into the graft without additional treatments. Most significantly, some regenerating axons in the SC grafts were able to penetrate through the distal graft-host interface to re-enter the host environment, as demonstrated by anterograde axonal labelling. These axons coursed toward, and then entered the grey matter where terminal bouton-like structures were observed. In channels containing no SCs, limited axonal growth was seen within the graft and no axons penetrated the distal interface. These findings further support the notion that SCs are strong promotors of axonal regeneration and that the mini-channel model may be appropriate for further investigation of axonal re-entry, synaptic reconnection and functional recovery following spinal cord injury.
Sujets

Animals

Axons/physiology

Axons/ultrastructure

Brain/cytology

Female

Graft Survival/physio...

Microscopy, Electron

Microscopy, Fluoresce...

Nerve Degeneration/ph...

Nerve Degeneration/su...

Phytohemagglutinins

Postoperative Care

Rats

Rats, Inbred F344

Schwann Cells/transpl...

Spinal Cord/surgery

Spinal Cord Injuries/...

Spinal Cord Injuries/...

PID Serval
serval:BIB_11843
DOI
10.1046/j.1460-9568.1999.00591.x
PMID
10215926
WOS
000080175500026
Permalien
https://iris.unil.ch/handle/iris/108342
Date de création
2007-11-19T11:02:35.216Z
Date de création dans IRIS
2025-05-20T19:10:53Z
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