Literature DB >> 17702982

Spinal GABAergic transplants attenuate mechanical allodynia in a rat model of neuropathic pain.

Karim Mukhida1, Ivar Mendez, Marcus McLeod, Nao Kobayashi, Christopher Haughn, Brian Milne, Behnam Baghbaderani, Arindom Sen, Leo A Behie, Murray Hong.   

Abstract

Injury to the spinal cord or peripheral nerves can lead to the development of allodynia due to the loss of inhibitory tone involved in spinal sensory function. The potential of intraspinal transplants of GABAergic cells to restore inhibitory tone and thus decrease pain behaviors in a rat model of neuropathic pain was investigated. Allodynia of the left hind paw was induced in rats by unilateral L5- 6 spinal nerve root ligation. Mechanical sensitivity was assessed using von Frey filaments. Postinjury, transgenic fetal green fluorescent protein mouse GABAergic cells or human neural precursor cells (HNPCs) expanded in suspension bioreactors and differentiated into a GABAergic phenotype were transplanted into the spinal cord. Control rats received undifferentiated HNPCs or cell suspension medium only. Animals that received either fetal mouse GABAergic cell or differentiated GABAergic HNPC intraspinal transplants demonstrated a significant increase in paw withdrawal thresholds at 1 week post-transplantation that was sustained for 6 weeks. Transplanted fetal mouse GABAergic cells demonstrated immunoreactivity for glutamic acid decarboxylase and GABA that colocalized with green fluorescent protein. Intraspinally transplanted differentiated GABAergic HNPCs demonstrated immunoreactivity for GABA and beta-III tubulin. In contrast, intraspinal transplantation of undifferentiated HNPCs, which predominantly differentiated into astrocytes, or cell suspension medium did not affect any behavioral recovery. Intraspinally transplanted GABAergic cells can reduce allodynia in a rat model of neuropathic pain. In addition, HNPCs expanded in a standardized fashion in suspension bioreactors and differentiated into a GABAergic phenotype may be an alternative to fetal cells for cell-based therapies to treat chronic pain syndromes.

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Year:  2007        PMID: 17702982     DOI: 10.1634/stemcells.2007-0326

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  26 in total

Review 1.  Potential of GABA-ergic cell therapy for schizophrenia, neuropathic pain, and Alzheimer's and Parkinson's diseases.

Authors:  Ashok K Shetty; Adrian Bates
Journal:  Brain Res       Date:  2015-09-28       Impact factor: 3.252

2.  Achieving stable human stem cell engraftment and survival in the CNS: is the future of regenerative medicine immunodeficient?

Authors:  Aileen J Anderson; Daniel L Haus; Mitra J Hooshmand; Harvey Perez; Christopher J Sontag; Brian J Cummings
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3.  Isolation of a novel rat neural progenitor clone that expresses Dlx family transcription factors and gives rise to functional GABAergic neurons in culture.

Authors:  Hedong Li; Anna T Hader; Yu R Han; Joseph A Wong; Joanne Babiarz; Christopher L Ricupero; Sasha Blue Godfrey; John P Corradi; Myles Fennell; Ronald P Hart; Mark R Plummer; Martin Grumet
Journal:  Dev Neurobiol       Date:  2012-06       Impact factor: 3.964

4.  Cell based therapy for the management of chronic pain.

Authors:  Younghoon Jeon
Journal:  Korean J Anesthesiol       Date:  2011-01-28

5.  Functional Synaptic Integration of Forebrain GABAergic Precursors into the Adult Spinal Cord.

Authors:  Alex Etlin; Joao M Bráz; Julia A Kuhn; Xidao Wang; Katherine A Hamel; Ida J Llewellyn-Smith; Allan I Basbaum
Journal:  J Neurosci       Date:  2016-11-16       Impact factor: 6.167

Review 6.  Reviewing the case for compromised spinal inhibition in neuropathic pain.

Authors:  M A Gradwell; R J Callister; B A Graham
Journal:  J Neural Transm (Vienna)       Date:  2019-10-22       Impact factor: 3.575

7.  Intraspinal transplantation of GABAergic neural progenitors attenuates neuropathic pain in rats: a pharmacologic and neurophysiological evaluation.

Authors:  Stanislava Jergova; Ian D Hentall; Shyam Gajavelli; Mathew S Varghese; Jacqueline Sagen
Journal:  Exp Neurol       Date:  2011-12-13       Impact factor: 5.330

8.  Forebrain GABAergic neuron precursors integrate into adult spinal cord and reduce injury-induced neuropathic pain.

Authors:  João M Bráz; Reza Sharif-Naeini; Daniel Vogt; Arnold Kriegstein; Arturo Alvarez-Buylla; John L Rubenstein; Allan I Basbaum
Journal:  Neuron       Date:  2012-05-24       Impact factor: 17.173

9.  Human pluripotent stem cell therapy for Huntington's disease: technical, immunological, and safety challenges human pluripotent stem cell therapy for Huntington's disease: technical, immunological, and safety challenges.

Authors:  Camille Nicoleau; Pedro Viegas; Marc Peschanski; Anselme L Perrier
Journal:  Neurotherapeutics       Date:  2011-10       Impact factor: 7.620

10.  Co- transplantation of Bone Marrow Stromal Cells with Schwann Cells Evokes Mechanical Allodynia in the Contusion Model of Spinal Cord Injury in Rats.

Authors:  Bagher Pourheydar; Mohammad Taghi Joghataei; Mehrdad Bakhtiari; Mehdi Mehdizadeh; Zahra Yekta; Norooz Najafzadeh
Journal:  Cell J       Date:  2011-12-22       Impact factor: 2.479

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