Literature DB >> 16930283

Rho-kinase inhibition enhances axonal regeneration after peripheral nerve injury.

Akiyuki Hiraga1, Satoshi Kuwabara, Hideo Doya, Kazuaki Kanai, Masashi Fujitani, Junko Taniguchi, Kimihito Arai, Masahiro Mori, Takamichi Hattori, Toshihide Yamashita.   

Abstract

In injured adult neurons, the process of axonal regrowth and reestablishment of the neuronal function have to be activated. We assessed in this study whether RhoA, a key regulator of neurite elongation, is activated after injury to the peripheral nervous system. RhoA is activated in motoneurons but not in Schwann cells after mouse sciatic nerve injury. To examine whether the activation of RhoA and its effector, Rho-kinase, retards axon regeneration of injured motoneurons, we employed a Rho-kinase inhibitor, fasudil. Amplitudes of distally evoked compound muscle action potentials are increased significantly faster after axonal injury in mice treated with fasudil compared with controls. Histological analysis shows that fasudil treatment increases the number of regenerating axons with large diameter, suggesting that axon maturation is facilitated by Rho-kinase inhibition. In addition, fasudil does not suppress the myelination of regenerating axons. These findings suggest that RhoA/Rho-kinase may be a practical molecular target to enhance axonal regeneration in human peripheral neuropathies.

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Year:  2006        PMID: 16930283     DOI: 10.1111/j.1529-8027.2006.00091.x

Source DB:  PubMed          Journal:  J Peripher Nerv Syst        ISSN: 1085-9489            Impact factor:   3.494


  27 in total

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9.  Neuropathy-causing TRPV4 mutations disrupt TRPV4-RhoA interactions and impair neurite extension.

Authors:  Brett A McCray; Erika Diehl; Jeremy M Sullivan; William H Aisenberg; Nicholas W Zaccor; Alexander R Lau; Dominick J Rich; Benedikt Goretzki; Ute A Hellmich; Thomas E Lloyd; Charlotte J Sumner
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Journal:  Neurochem Res       Date:  2014-01-10       Impact factor: 3.996

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