Literature DB >> 17886477

[Neuropathic pain and ATP receptors in spinal microglia].

Makoto Tsuda1, Kazuhide Inoue.   

Abstract

Neuropathic pain resulting from nerve injury or from diseases such as diabetes, HIV AIDS or cancer, that damage the peripheral nerves, can be agonizing, persistent over long periods, and, unfortunately, is often resistant to known pain-killers. The P2X receptors, of which seven subtypes (P2X1-P2X7) have been cloned, are a family of ligand-gated cation channels activated by extracellular ATP and have important roles in regulating neuronal and glial functions in the nervous system. Recent advances in our understanding of the mechanisms underlying neuropathic pain have been made by defining important roles of P2X4 receptors and spinal microglia in the pathogenesis of neuropathic pain. Within the spinal dorsal horn, peripheral nerve injury leads to a progressive series of changes in microglia including morphological hypertrophy of the cell body and proliferation that are considered indicative of activation. Furthermore, P2X4 receptors that which are upregulated in activated microglia, have been found to be essential molecular mediators. The activation of P2X4 receptors releases brain-derived neurotrophic factor from microglia; this mediates the signaling from microglia to neurons, which in turn leads to pain hypersensitivity. We expect that understanding the key roles of these molecules in spinal microglia may lead to new strategies for the management of neuropathic pain.

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Year:  2007        PMID: 17886477

Source DB:  PubMed          Journal:  Brain Nerve        ISSN: 1881-6096


  3 in total

1.  Acupuncture relieves the visceral pain of diarrhea-predominant irritable bowel syndrome rats by regulating P2X4 expression.

Authors:  He-Yong Tang; Xi-Qiuyu Chen; Hao Wang; Hao-Ran Chu; Cai-Feng Zhu; Shun Huang; Meng-Ting Zhang; Guo-Ming Shen
Journal:  Am J Transl Res       Date:  2022-08-15       Impact factor: 3.940

Review 2.  TNF-alpha and neuropathic pain--a review.

Authors:  Lawrence Leung; Catherine M Cahill
Journal:  J Neuroinflammation       Date:  2010-04-16       Impact factor: 8.322

3.  Go-sha-jinki-Gan (GJG) ameliorates allodynia in chronic constriction injury-model mice via suppression of TNF-α expression in the spinal cord.

Authors:  Miho Nakanishi; Aya Nakae; Yuki Kishida; Kousuke Baba; Noriko Sakashita; Masahiko Shibata; Hideki Yoshikawa; Keisuke Hagihara
Journal:  Mol Pain       Date:  2016-06-13       Impact factor: 3.395

  3 in total

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