Expression of CCR2 in both resident and bone marrow-derived microglia plays a critical role in neuropathic pain

被引:333
作者
Zhang, Ji
Shi, Xiang Qun
Echeverry, Stefania
Mogil, Jeffrey S.
De Koninck, Yves
Rivest, Serge
机构
[1] Univ Laval Robert Giffard, Ctr Rech, Unite Neurobiol Cell, Quebec City, PQ G1J 2G3, Canada
[2] McGill Univ, Dept Psychol, Montreal, PQ H3A 2T5, Canada
[3] McGill Univ, Alan Edwards Ctr Res Pain, Montreal, PQ H3A 2T5, Canada
[4] CHU Laval, Ctr Rech, Lab Endocrinol Mol & Oncol, Quebec City, PQ G1V 4G2, Canada
关键词
nerve injury; leukocyte infiltration; allodynia; spinal cord; chemokine; glial activation;
D O I
10.1523/JNEUROSCI.3016-07.2007
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neuropathic pain resulting from damage to or dysfunction of peripheral nerves is not well understood and difficult to treat. Although CNS hyperexcitability is a critical component, recent findings challenge the neuron-centric view of neuropathic pain etiology and pathology. Indeed, glial cells were shown to play an active role in the initiation and maintenance of pain hypersensitivity. However, the origins of these cells and the triggers that induce their activation have yet to be elucidated. Here we show that, after peripheral nerve injury induced by a partial ligation on the sciatic nerve, in addition to activation of microglia resident to the CNS, hematogenous macrophage/monocyte infiltrate the spinal cord, proliferate, and differentiate into microglia. Signaling from chemokine monocyte chemoattractant protein-1 (MCP-1, CCL2) to its receptor CCR2 is critical in the spinal microglial activation. Indeed, intrathecal injection of MCP-1 caused activation of microglia in wild-type but not in CCR2-deficient mice. Furthermore, treatment with an MCP-1 neutralizing antibody prevented bone marrow-derived microglia (BMDM) infiltration into the spinal cord after nerve injury. In addition, using selective knock-out of CCR2 in resident microglia or BMDM, we found that, although total CCR2 knock-out mice did not develop microglial activation or mechanical allodynia, CCR2 expression in either resident microglia or BMDM is sufficient for the development of mechanical allodynia. Thus, to effectively relieve neuropathic pain, both CNS resident microglia and blood-borne macrophages need to be targeted. These findings also open the door for a novel therapeutic strategy: to take advantage of the natural ability of bone marrow-derived cells to infiltrate selectively affected CNS regions by using these cells as vehicle for targeted drug delivery to inhibit hypersensitivity and chronic pain.
引用
收藏
页码:12396 / 12406
页数:11
相关论文
共 73 条
[11]   Disruption of the P2X7 purinoceptor gene abolishes chronic inflammatory and neuropathic pain [J].
Chessell, IP ;
Hatcher, JP ;
Bountra, C ;
Michel, AD ;
Hughes, JP ;
Green, P ;
Egerton, J ;
Murfin, M ;
Richardson, J ;
Peck, WL ;
Grahames, CBA ;
Casula, MA ;
Yiangou, Y ;
Birch, R ;
Anand, P ;
Buell, GN .
PAIN, 2005, 114 (03) :386-396
[12]   The effect of site and type of nerve injury on spinal glial activation and neuropathic pain behavior [J].
Colburn, RW ;
Rickman, AJ ;
DeLeo, JA .
EXPERIMENTAL NEUROLOGY, 1999, 157 (02) :289-304
[13]  
Costigan M, 1998, J NEUROSCI, V18, P5891
[14]   BDNF from microglia causes the shift in neuronal anion gradient underlying neuropathic pain [J].
Coull, JAM ;
Beggs, S ;
Boudreau, D ;
Boivin, D ;
Tsuda, M ;
Inoue, K ;
Gravel, C ;
Salter, MW ;
De Koninck, Y .
NATURE, 2005, 438 (7070) :1017-1021
[15]  
Coyle DE, 1998, GLIA, V23, P75
[16]   Macrophages are comprised of resident brain microglia not infiltrating peripheral monocytes acutely after neonatal stroke [J].
Denker, Sheryl P. ;
Ji, Shaoquan ;
Dingman, Andra ;
Lee, Sarah Y. ;
Derugin, Nikita ;
Wendland, Michael F. ;
Vexler, Zinaida S. .
JOURNAL OF NEUROCHEMISTRY, 2007, 100 (04) :893-904
[17]  
ECHEVERRY S, 2007, IN PRESS PAIN
[18]  
Flügel A, 2001, J CEREBR BLOOD F MET, V21, P69
[19]   Microglial reactions after subcutaneous formalin injection into the rat hind paw [J].
Fu, KY ;
Light, AR ;
Matsushima, GK ;
Maixner, W .
BRAIN RESEARCH, 1999, 825 (1-2) :59-67
[20]   Establishment of modified chimeric mice using GFP bone marrow as a model for neurological disorders [J].
Furuya, T ;
Tanaka, R ;
Urabe, T ;
Hayakawa, J ;
Migita, M ;
Shimada, T ;
Mizuno, Y ;
Mochizuki, H .
NEUROREPORT, 2003, 14 (04) :629-631