Microglia in the spinal cord and neuropathic pain

被引:213
作者
Tsuda, Makoto [1 ]
机构
[1] Kyushu Univ, Grad Sch Pharmaceut Sci, Dept Life Innovat, Fukuoka 812, Japan
关键词
Microglia; Painful diabetic neuropathy; Purinergic receptors; ACTIVATED PROTEIN-KINASE; PERIPHERAL-NERVE INJURY; PRIMARY SENSORY NEURONS; RECEPTOR UP-REGULATION; MONOCYTE CHEMOATTRACTANT PROTEIN-1; CRITICAL TRANSCRIPTION FACTOR; INDUCED TACTILE ALLODYNIA; DORSAL-HORN; MECHANICAL ALLODYNIA; DIABETIC-NEUROPATHY;
D O I
10.1111/jdi.12379
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
In contrast to physiological pain, pathological pain is not dependent on the presence of tissue-damaging stimuli. One type of pathological pain - neuropathic pain - is often a consequence of nerve injury or of diseases such as diabetes. Neuropathic pain can be agonizing, can persist over long periods and is often resistant to known painkillers. A growing body of evidence shows that many pathological processes within the central nervous system are mediated by complex interactions between neurons and glial cells. In the case of painful peripheral neuropathy, spinal microglia react and undergo a series of changes that directly influence the establishment of neuropathic pain states. After nerve damage, purinergic P2X4 receptors (non-selective cation channels activated by extracellular adenosine triphosphate) are upregulated in spinal microglia in a manner that depends on the transcription factors interferon regulatory factor 8 and 5, both of which are expressed in microglia after peripheral nerve injury. P2X4 receptor expression on the cell surface of microglia is also regulated at the post-translational level by signaling from CC chemokine receptor chemotactic cytokine receptor 2. Furthermore, spinal microglia in response to extracellular stimuli results in signal transduction through intracellular signaling cascades, such as mitogen-activated protein kinases, p38 and extracellular signal-regulated protein kinase. Importantly, inhibiting the function or expression of these microglial molecules suppresses the aberrant excitability of dorsal horn neurons and neuropathic pain. These findings show that spinal microglia are a central player in mechanisms for neuropathic pain, and might be a potential target for treating the chronic pain state.
引用
收藏
页码:17 / 26
页数:10
相关论文
共 103 条
[1]   International union of pharmacology LVIII: Update on the P2Y G protein-coupled nucleotide receptors: From molecular mechanisms and pathophysiology to therapy [J].
Abbracchio, Maria P. ;
Burnstock, Geoffrey ;
Boeynaems, Jean-Marie ;
Barnard, Eric A. ;
Boyer, Jose L. ;
Kennedy, Charles ;
Knight, Gillian E. ;
Fumagalli, Marta ;
Gachet, Christian ;
Jacobson, Kenneth A. ;
Weisman, Gary A. .
PHARMACOLOGICAL REVIEWS, 2006, 58 (03) :281-341
[2]   Local self-renewal can sustain CNS microglia maintenance and function throughout adult life [J].
Ajami, Bahareh ;
Bennett, Jami L. ;
Krieger, Charles ;
Tetzlaff, Wolfram ;
Rossi, Fabio M. V. .
NATURE NEUROSCIENCE, 2007, 10 (12) :1538-1543
[3]   Mechanisms of Disease: neuropathic pain - a clinical perspective [J].
Baron, R .
NATURE CLINICAL PRACTICE NEUROLOGY, 2006, 2 (02) :95-106
[4]   Development and validity testing of the neuropathy total symptom score-6: Questionnaire for the study of sensory symptoms of diabetic peripheral neuropathy [J].
Bastyr, EJ ;
Price, KL ;
Bril, V .
CLINICAL THERAPEUTICS, 2005, 27 (08) :1278-1294
[5]   Neuropathic pain: Symptoms, models, and mechanisms [J].
Beggs, Simon ;
Salter, Michael W. .
DRUG DEVELOPMENT RESEARCH, 2006, 67 (04) :289-301
[6]   P2X4R+ microglia drive neuropathic pain [J].
Beggs, Simon ;
Trang, Tuan ;
Salter, Michael W. .
NATURE NEUROSCIENCE, 2012, 15 (08) :1068-1073
[7]   Analysis of Assembly and Trafficking of Native P2X4 and P2X7 Receptor Complexes in Rodent Immune Cells [J].
Boumechache, Miyyada ;
Masin, Marianela ;
Edwardson, J. Michael ;
Gorecki, Dariusz C. ;
Murrell-Lagnado, Ruth .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (20) :13446-13454
[8]   Transmitting Pain and Itch Messages: A Contemporary View of the Spinal Cord Circuits that Generate Gate Control [J].
Braz, Joao ;
Solorzano, Carlos ;
Wang, Xidao ;
Basbaum, Allan I. .
NEURON, 2014, 82 (03) :522-536
[9]  
BURNSTOCK G, 1972, PHARMACOL REV, V24, P509
[10]   Purinergic signalling and disorders of the central nervous system [J].
Burnstock, Geoffrey .
NATURE REVIEWS DRUG DISCOVERY, 2008, 7 (07) :575-590