Reduced spinal microglial activation and neuropathic pain after nerve injury in mice lacking all three nitric oxide synthases

被引:42
作者
Kuboyama, Kazuya [1 ]
Tsuda, Makoto [1 ]
Tsutsui, Masato [2 ]
Toyohara, Yumiko [3 ]
Tozaki-Saitoh, Hidetoshi [1 ]
Shimokawa, Hiroaki [4 ]
Yanagihara, Nobuyuki [3 ]
Inoue, Kazuhide [1 ]
机构
[1] Kyushu Univ, Grad Sch Pharmaceut Sci, Dept Mol & Syst Pharmacol, Fukuoka 812, Japan
[2] Univ Ryukyus, Grad Sch Med, Dept Pharmacol, Okinawa, Japan
[3] Univ Occupat & Environm Hlth, Dept Pharmacol, Sch Med, Fukuoka, Japan
[4] Tohoku Univ, Grad Sch Med, Dept Cardiovasc Med, Sendai, Miyagi 980, Japan
基金
日本学术振兴会;
关键词
PERIPHERAL NEUROPATHY; MECHANICAL ALLODYNIA; TACTILE ALLODYNIA; MOLECULAR-CLONING; P2X(4) RECEPTORS; UP-REGULATION; RAT MODEL; HYPERSENSITIVITY; INHIBITION; ISOFORMS;
D O I
10.1186/1744-8069-7-50
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Several studies have investigated the involvement of nitric oxide (NO) in acute and chronic pain using mice lacking a single NO synthase (NOS) gene among the three isoforms: neuronal (nNOS), inducible (iNOS) and endothelial (eNOS). However, the precise role of NOS/NO in pain states remains to be determined owing to the substantial compensatory interactions among the NOS isoforms. Therefore, in this study, we used mice lacking all three NOS genes (n/i/eNOS(-/-)mice) and investigated the behavioral phenotypes in a series of acute and chronic pain assays. Results: In a model of tissue injury-induced pain, evoked by intraplantar injection of formalin, both iNOS(-/-) and n/i/eNOS(-/-) mice exhibited attenuations of pain behaviors in the second phase compared with that in wild-type mice. In a model of neuropathic pain, nerve injury-induced behavioral and cellular responses (tactile allodynia, spinal microglial activation and Src-family kinase phosphorylation) were reduced in n/i/eNOS(-/-) but not iNOS(-/-) mice. Tactile allodynia after nerve injury was improved by acute pharmacological inhibition of all NOSs and nNOS. Furthermore, in MG-5 cells (a microglial cell-line), interferon-gamma enhanced NOSs and Mac-1 mRNA expression, and the Mac-1 mRNA increase was suppressed by L-NAME co-treatment. Conversely, the NO donor, sodium nitroprusside, markedly increased mRNA expression of Mac-1, interleukin-6, toll-like receptor 4 and P2X4 receptor. Conclusions: Our results provide evidence that the NOS/NO pathway contributes to behavioral pain responses evoked by tissue injury and nerve injury. In particular, nNOS may be important for spinal microglial activation and tactile allodynia after nerve injury.
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页数:11
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