Literature DB >> 19196179

Characterization of rat forepaw function in two models of cervical dorsal root injury.

Ann Wu1, Jenny L Lauschke, Renée Morris, Phil M E Waite.   

Abstract

Dorsal root injury (DRI) disrupts afferent input from the periphery and often leads to sensory deficits and neuropathic pain. Despite cervical root injuries in rodents being a useful model for deafferentation studies, a quantitative characterization of the sensory deficits produced by DRI is still lacking. This study aimed to characterize the different functional deficits resulting from a dorsal two- or four-root (C7-C8 and C5-C8, respectively) crush injury in rats at levels that innervate the forepaws. The impairment of the affected forepaw was assessed by mechanical and thermal pain responses, and rating the performance on the skilled reaching and ladder rung walking tests (LRWT). Postoperatively, only the two-root DRI rats developed mechanical allodynia, which persisted throughout the course of the study. Thermal hyperalgesia peaked at weeks 1 and 6. The four-root DRI animals were less sensitive to mechanical and thermal stimulation. Performance on the skilled reaching task could only be measured in two-root DRI rats, as animals with four-root injury were unable to grasp the pellets at all. On the LRWT, gait impairment was proportional to the severity of the lesion, with four-root DRI animals showing a significantly higher rate of errors than two-root DRI animals. These results suggest that two-root DRI represents a good model to assess treatments for allodynia-induced neuropathic pain, and for the restoration of the sensory component of the skilled motor performance. On the other hand, the four-root DRI would be a useful model when forepaw deafferentation is required.

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Year:  2009        PMID: 19196179     DOI: 10.1089/neu.2008.0675

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  6 in total

1.  Dorsal Root Ganglion Injection and Dorsal Root Crush Injury as a Model for Sensory Axon Regeneration.

Authors:  Menghon Cheah; James W Fawcett; Melissa R Andrews
Journal:  J Vis Exp       Date:  2017-05-03       Impact factor: 1.355

2.  Rapid and persistent impairments of the forelimb motor representations following cervical deafferentation in rats.

Authors:  Yu-Qiu Jiang; Preston T J A Williams; John H Martin
Journal:  Eur J Neurosci       Date:  2013-10-06       Impact factor: 3.386

3.  Expression of an Activated Integrin Promotes Long-Distance Sensory Axon Regeneration in the Spinal Cord.

Authors:  Menghon Cheah; Melissa R Andrews; Daniel J Chew; Elizabeth B Moloney; Joost Verhaagen; Reinhard Fässler; James W Fawcett
Journal:  J Neurosci       Date:  2016-07-06       Impact factor: 6.167

4.  Chronic cervical radiculopathic pain is associated with increased excitability and hyperpolarization-activated current ( Ih) in large-diameter dorsal root ganglion neurons.

Authors:  Da-Lu Liu; Xu Wang; Wen-Guang Chu; Na Lu; Wen-Juan Han; Yi-Kang Du; San-Jue Hu; Zhan-Tao Bai; Sheng-Xi Wu; Rou-Gang Xie; Ceng Luo
Journal:  Mol Pain       Date:  2017 Jan-Dec       Impact factor: 3.395

5.  Upregulation of Ih expressed in IB4-negative Aδ nociceptive DRG neurons contributes to mechanical hypersensitivity associated with cervical radiculopathic pain.

Authors:  Da-Lu Liu; Na Lu; Wen-Juan Han; Rong-Gui Chen; Rui Cong; Rou-Gang Xie; Yu-Fei Zhang; Wei-Wei Kong; San-Jue Hu; Ceng Luo
Journal:  Sci Rep       Date:  2015-11-18       Impact factor: 4.379

6.  The neural mobilization technique modulates the expression of endogenous opioids in the periaqueductal gray and improves muscle strength and mobility in rats with neuropathic pain.

Authors:  Fabio Martinez Santos; Leandro Henrique Grecco; Marcelo Gomes Pereira; Mara Evany Oliveira; Priscila Abreu Rocha; Joyce Teixeira Silva; Daniel Oliveira Martins; Elen Haruka Miyabara; Marucia Chacur
Journal:  Behav Brain Funct       Date:  2014-05-13       Impact factor: 3.759

  6 in total

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