Literature DB >> 9262237

Effects of delayed re-innervation on the expression of c-erbB receptors by chronically denervated rat Schwann cells in vivo.

H Li1, G Terenghi, S M Hall.   

Abstract

We propose that chronically denervated Schwann cells may be less able to respond to axonal signals than their acutely denervated counterparts, and that this lack of sensitivity may be one reason why axons fail to regenerate into chronically denervated nerve stumps. To test this proposal we have used in situ hybridization, and quantitative and qualitative immunohistochemistry to compare the expression of c-erbB2 and c-erbB4 receptors in Schwann cells denervated for up to 6 months in vivo, with that seen in Schwann cells denervated for similar periods of time but then exposed to regenerating axons. The results were correlated with the extent of axonal regeneration in each experimental group as assessed from transverse sections which had been double-immunolabelled using anti S-100 and anti-beta tubulin III antibodies. Since c-erbBs are receptors for neuronally derived neuregulins we probed the appropriate axotomised DRG neurons for expression of GGF2 mRNA. When the denervated distal stumps were anastomosed to acutely transected proximal stumps, GGF expression in DRGs increased transiently during the first week: we assume that secreted GGF2 derived from regrowing axon sprouts would have been available to Schwann cells in all distal stumps. Endoneurial cell proliferation (predominantly Schwann cell proliferation); levels of expression of c-erbB receptors by Schwann cells, and the degree to which axons regenerated into the distal stumps all decreased as the period of prior denervation increased: the longer the time of denervation, the lower the expression of c-erbBs in Schwann cells, and the smaller the percentage of bands of Bungner which were re-innervated.

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Year:  1997        PMID: 9262237     DOI: 10.1002/(sici)1098-1136(199708)20:4<333::aid-glia6>3.0.co;2-6

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  28 in total

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Authors:  Sharmila Jivan; Liudmila N Novikova; Mikael Wiberg; Lev N Novikov
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Review 4.  Peripheral nerve injury modulates neurotrophin signaling in the peripheral and central nervous system.

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5.  Nerve injury induces glial cell line-derived neurotrophic factor (GDNF) expression in Schwann cells through purinergic signaling and the PKC-PKD pathway.

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Journal:  Glia       Date:  2013-04-02       Impact factor: 7.452

Review 6.  Clinical strategies to enhance nerve regeneration in composite tissue allotransplantation.

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Review 7.  Peripheral nerve injury and myelination: Potential therapeutic strategies.

Authors:  Max Modrak; M A Hassan Talukder; Khatuna Gurgenashvili; Mark Noble; John C Elfar
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8.  A composite poly-hydroxybutyrate-glial growth factor conduit for long nerve gap repairs.

Authors:  P N Mohanna; R C Young; M Wiberg; G Terenghi
Journal:  J Anat       Date:  2003-12       Impact factor: 2.610

9.  Introduction to special issue: Challenges and opportunities for regeneration in the peripheral nervous system.

Authors:  Ahmet Höke; Thomas Brushart
Journal:  Exp Neurol       Date:  2009-12-18       Impact factor: 5.330

10.  Neurobiology of peripheral nerve injury, regeneration, and functional recovery: from bench top research to bedside application.

Authors:  Wale Sulaiman; Tessa Gordon
Journal:  Ochsner J       Date:  2013
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