Chemokines and pain mechanisms

被引:210
作者
Abbadie, Catherine [1 ]
Bhangoo, Sonia [2 ]
De Koninck, Yves [3 ]
Malcangio, Marzia [4 ]
Melik-Parsadaniantz, Stephane [5 ,6 ]
White, Fletcher A. [7 ]
机构
[1] Merck Res Labs, Dept Immunol, Rahway, NJ 07065 USA
[2] Northwestern Univ, Maywood, IL USA
[3] Univ Laval Robert Giffard, Ctr Rech, Unite Neurobiol Cellulaire, Quebec City, PQ G1J 2G3, Canada
[4] Kings Coll London, Wolfson Ctr Age Related Dis, London SE1 1UL, England
[5] UPMC, Hop St Antoine, INSERM, Unite Mixte 732, F-75571 Paris, France
[6] UPMC, Fac Med Pitie Salpetriere, INSERM, Unite Mixte 713, Paris, France
[7] Loyola Univ, Maywood, IL 60153 USA
基金
加拿大健康研究院; 英国惠康基金; 美国国家卫生研究院;
关键词
Cathepsin S; CCR2; CX3CR1; Fractalkine; MCP-1; Neuropathy; Pain; MONOCYTE CHEMOATTRACTANT PROTEIN-1; PERIPHERAL-NERVE INJURY; DORSAL-ROOT GANGLIA; MARROW-DERIVED MICROGLIA; SPINAL GLIAL ACTIVATION; NEUROPATHIC PAIN; UP-REGULATION; RAT MODEL; NOCICEPTIVE NEURONS; TACTILE ALLODYNIA;
D O I
10.1016/j.brainresrev.2008.12.002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The development of new therapeutic approaches to the treatment of painful neuropathies requires a better understanding of the mechanisms that underlie the development of these chronic pain syndromes. It is now well established that astrocytic and microglial cells modulate the neuronal mechanisms of chronic pain in spinal cord and possibly in the brain. In animal models of neuropathic pain following peripheral nerve injury, several changes occur at the level of the first pain synapse between the central terminals of sensory neurons and second order neurons. These neuronal mechanisms can be modulated by pronociceptive mediators released by non neuronal cells such as microglia and astrocytes which become activated in the spinal cord following PNS injury. However, the signals that mediate the spread of nociceptive signaling from neurons to glial cells in the dorsal horn remain to be established. Herein we provide evidence for two emerging signaling pathways between injured sensory neurons and spinal microglia: chemotactic cytokine ligand 2 (CCL2)/CCR2 and cathepsin S/CX3CL1 (fractalkine)/CX3CR1. We discuss the plasticity of these two chemokine systems at the level of the dorsal root ganglia and spinal cord demonstrating that modulation of chemokines using selective antagonists decrease nociceptive behavior in rodent chronic pain models. Since up-regulation of chemokines and their receptors may be a mechanism that directly and/or indirectly contributes to the development and maintenance of chronic pain, these molecular molecules may represent novel targets for therapeutic intervention in sustained pain states. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:125 / 134
页数:10
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