Literature DB >> 12763612

Valproic acid enhances axonal regeneration and recovery of motor function after sciatic nerve axotomy in adult rats.

Shu-Sen Cui1, Christine P Yang, Rudy C Bowen, Ou Bai, Xin-Min Li, Wen Jiang, Xia Zhang.   

Abstract

It has recently been demonstrated that valproic acid (VPA) robustly promotes neurite outgrowth, activates the extracellular signal regulated kinase pathway, and increases growth cone-associated protein 43 and bcl-2 levels in cultured human neuroblastoma SH-SY5Y cells. We hypothesized that VPA could also enhance peripheral nerve regeneration in adult animals. To test this hypothesis, we examined the effects of VPA (300 mg/kg daily for 16 weeks) on sciatic axonal regeneration following single or conditional axotomies in rats. The results showed that in VPA-treated rats there was a significant increase in the total numbers of regenerated myelinated nerve fibers and reinnervated muscle fibers in comparison with those rats not treated with VPA. As measured by sciatic function index and toe spread index, the motor function of the reinnervated hind limbs of rats receiving single axotomy without VPA treatment significantly improved at week 8 and reached plateau levels at about week 11, whereas the motor function of the reinnervated hind limbs of rats receiving single axotomy plus VPA and rats receiving conditional axotomy with or without VPA treatment significantly improved at week 4 and reached plateau levels at about week 8; there was no significant difference of the motor function among the three later groups. The results demonstrated that VPA is able to enhance sciatic nerve regeneration and recovery of motor function in adult rats, suggesting the potential clinical application of VPA for the treatment of peripheral nerve injury in humans.

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Year:  2003        PMID: 12763612     DOI: 10.1016/s0006-8993(03)02699-4

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  24 in total

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4.  Valproic acid prevents penile fibrosis and erectile dysfunction in cavernous nerve-injured rats.

Authors:  Johanna L Hannan; Omer Kutlu; Bernard L Stopak; Xiaopu Liu; Fabio Castiglione; Petter Hedlund; Arthur L Burnett; Trinity J Bivalacqua
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9.  HDAC1 Expression, Histone Deacetylation, and Protective Role of Sodium Valproate in the Rat Dorsal Root Ganglia After Sciatic Nerve Transection.

Authors:  V A Dzreyan; S V Rodkin; M A Pitinova; Anatoly B Uzdensky
Journal:  Mol Neurobiol       Date:  2020-09-10       Impact factor: 5.590

10.  Mood stabilizer valproate promotes ERK pathway-dependent cortical neuronal growth and neurogenesis.

Authors:  Yanlei Hao; Thomas Creson; Lei Zhang; Pipeng Li; Fu Du; Peixiong Yuan; Todd D Gould; Husseini K Manji; Guang Chen
Journal:  J Neurosci       Date:  2004-07-21       Impact factor: 6.167

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