Spinal Matrix Metalloproteinase-9 Contributes to Physical Dependence on Morphine in Mice

被引:61
作者
Liu, Wen-Tao [1 ]
Han, Yuan [1 ,2 ,3 ]
Liu, Yue-Peng [2 ,3 ]
Song, Angela A. [1 ]
Barnes, Beth [1 ]
Song, Xue-Jun [1 ,2 ,3 ]
机构
[1] Parker Univ, Dept Neurobiol, Res Inst, Dallas, TX 75229 USA
[2] Xuzhou Med Coll, Jiangsu Prov Key Lab Anesthesiol, Xuzhou 221002, Jiangsu, Peoples R China
[3] Xuzhou Med Coll, Ctr Pain Res & Treatment, Xuzhou 221002, Jiangsu, Peoples R China
基金
中国国家自然科学基金; 美国国家卫生研究院;
关键词
D-ASPARTATE RECEPTOR; MATRIX METALLOPROTEINASES; NMDA RECEPTOR; PROTEIN-KINASE; HIPPOCAMPAL-NEURONS; S-NITROSYLATION; NITRIC-OXIDE; EXPRESSION; TOLERANCE; ACTIVATION;
D O I
10.1523/JNEUROSCI.1358-10.2010
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Preventing and reversing opioid dependence continues to be a clinical challenge and underlying mechanisms of opioid actions remain elusive. We report that matrix metalloproteinase-9 (MMP-9) in the spinal cord contributes to development of physical dependence on morphine. Chronic morphine exposure and naloxone-precipitated withdrawal increase activity of spinal MMP-9. Spinal inhibition or targeted mutation of MMP-9 suppresses behavioral signs of morphine withdrawal and the associated neurochemical alterations. The increased MMP-9 activity is mainly distributed in the superficial dorsal horn and colocalized primarily with neurons and small numbers of astrocytes and microglia. Morphine exposure and withdrawal increase phosphorylation of NR1 and NR2 B receptors, ERK1/2, calmodulin-dependent kinase II, and cAMP response element binding proteins; and such phosphorylation is suppressed by either spinal inhibition or targeted mutation of MMP-9. Further, spinal administration of exogenous MMP-9 induces morphine withdrawal-like behavioral signs and mechanical allodynia, activates NR1 and NR2 receptors, and downregulates integrin-beta 1, while a function-neutralizing antibody against integrin-beta 1 suppresses MMP-9-induced phosphorylation of NR1 and NR2B. Morphine withdrawal-induced MMP-9 activity is also reduced by an nNOS inhibitor. Thus, we hypothesize that spinal MMP-9 may contribute to the development of morphine dependence primarily through neuronal activation and interaction with NR1 and NR2B receptors via integrin-beta 1 and NO pathways. The other gelatinase, MMP-2, is not involved in morphine dependence. Inhibiting spinal MMP-9 or MMP-2 reduces chronic and/or acute morphine tolerance. This study suggests a novel therapeutic approach for preventing, minimizing, or reversing opioid dependence and tolerance.
引用
收藏
页码:7613 / 7623
页数:11
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