Topical cannabinoid antinociception: synergy with spinal sites

被引:63
作者
Dogrul, A [1 ]
Gul, H
Akar, A
Yildiz, O
Bilgin, F
Guzeldemir, E
机构
[1] Gulhane Mil Med Acad, Dept Pharmacol, TR-06018 Ankara, Turkey
[2] Gulhane Mil Med Acad, Dept Dermatol, TR-06018 Ankara, Turkey
[3] Gulhane Mil Med Acad, Dept Anesthesiol, TR-06018 Ankara, Turkey
关键词
cannabinoids; analgesia; topical analgesia; synergy; peripheral; spinal; WIN; 55; 212-2; tail-flick test; CB1; receptors;
D O I
10.1016/S0304-3959(03)00068-X
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Analgesic effects of cannabimimetic compounds have been known to be related to their central effects. Cannabinoid receptors also exist in the periphery but their role in pain perception has been remained to be clarified. Therefore, we assessed topical antinociceptive effects of WIN 55, 212-2, a mixed CB1 and CB2 receptors agonist, in mice using tail-flick test. Immersion of the tail of mouse into the WIN 55. 212-2 solution produced dose-dependent antinociception. This antinociceptive activity was limited to the portion of the tail exposed to WIN 55, 212-2. The antinociceptive response was dependent on duration of exposure to WIN 55, 212-2 solution. The topical antinociceptive effects of WIN 55, 212-2 were dose dependently blocked by topical pretreatment of CB, receptor-selective antagonist, AM 251. Thus, topical antinociceptive action of WIN 55, 212-2 involve CBI receptors. Intrathecal (i.th.) administration of WIN 55, 212-2 produced a dose-dependent antinociceptive effect. Interestingly, ineffective i.th. doses of WIN 55, 212-2 produced a marked antinociception when combined with topical application of WIN 55, 212-2 and topical antinociceptive effect was potentiated. The dose-response curve of i.th. WIN 55 2122 was shifted to the left 15-fold by topical WIN 55, 212-2. This finding suggests that there is an antinociceptive synergy between peripheral and spinal sites of cannabinoid action and it also implicates that local activaton of cannabinoid system may regulate pain initiation in cutaneous tissue. Our findings support that cannabinoid system participates in buffeting the emerging pain signals at the peripheral sites in addition to their spinal and supraspinal sites of action. In addition, an antinociceptive synergy between topical and spinal cannabinoid actions exists. These results also indicate that topically administered cannabinoid agonists may reduce pain without the dysphoric side effects and abuse potential of centrally acting cannabimimetic drugs. (C) 2003 International Association for the Study of Pain. Published by Elsevier B.V. All rights reserved.
引用
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页码:11 / 16
页数:6
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