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Glycosaminoglycans in nerve injury: II. Effects on transganglionic degeneration and on the expression of neurotrophic factors
Author(s) -
Gorio A.,
Vergani L.,
Ferro L.,
Prino G.,
Di Giulio A. M.
Publication year - 1996
Publication title -
journal of neuroscience research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.72
H-Index - 160
eISSN - 1097-4547
pISSN - 0360-4012
DOI - 10.1002/(sici)1097-4547(19961201)46:5<572::aid-jnr6>3.0.co;2-g
Subject(s) - axotomy , sciatic nerve , neurotrophin , sciatic nerve injury , neuroprotection , neurotrophic factors , nerve growth factor , nerve injury , endocrinology , chemistry , medicine , peripheral nerve injury , neuroscience , biology , central nervous system , receptor
Injury to the sciatic nerve leads to the transganglionic degeneration of sensory axons and to the induction of neurotrophins and p75 nerve growth factor receptor synthesis by the denervated Schwann cells. Sciatic nerve axotomy caused a marked loss of substance P and of met‐enkephalin in the lumbar cord. Substance P immunostaining and pre‐proenkephalin mRNA expression were reduced in the dorsal horn layers I and II ipsilaterally to the lesion. Treating rats with low doses (0.25 mg/kg) of heparin or COS 8, a natural glycosaminoglycan mixture with low anticoagulant activity, the peptide loss was prevented and the content increased of about 50% above control values. The effects of COS 8 treatment were also evident on Schwann cells. COS 8 augmented the increase of nerve growth factor, brain‐derived neurotrophic factor, and NT‐3 mRNA expression in the distal stump of the axotomized sciatic nerve. Therefore, it can be concluded that glycosaminoglycans neuroprotective effects on lesioned sensory axons might have been mediated by the dramatic promotion of neurotrophin synthesis. Although the in vitro studies (Lesma et al.: J Neurosci Res, 1996) suggested also a likely direct effect as extracellular matrix components that is not mediated by trophic factors. © 1996 Wiley‐Liss, Inc.

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