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首页> 外文期刊>Japanese Journal of Pharmacology >A novel analgesic compound OT-7100 attenuates nociceptive responses in animal models of inflammatory and neuropathic hyperalgesia: a possible involvement of adenosinergic anti-nociception.
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A novel analgesic compound OT-7100 attenuates nociceptive responses in animal models of inflammatory and neuropathic hyperalgesia: a possible involvement of adenosinergic anti-nociception.

机译:新型镇痛化合物OT-7100可减轻炎症性和神经性痛觉过敏动物模型中的伤害感受性反应:可能与腺苷能抗伤害感受有关。

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We studied the effects of OT-7100 (5-n-butyl-7-(3,4,5-trimethoxybenzoylamino)pyrazolo [1,5-a]pyrimidine), a novel analgesic compound, on the inhibitory action of adenosine on the contraction of guinea pig ileum and investigated the effects of OT-7100 on the nociceptive responses in animal models of inflammatory and peripheral neuropathic hyperalgesia and decreases spinal c-Fos expression. OT-7100 at 0.3 - 3 microM significantly enhanced the inhibitory effect of adenosine on the contraction of guinea pig ileum. The efficacy of OT-7100 (1, 3 or 10 mg/kg, p.o.) on hyperalgesia induced by yeast or substance P and in the Bennett model was significantly suppressed by coadministration of the adenosine A1 antagonist DPCPX (0.01 or 0.1 pmol/animal, i.t.), while OT-7100 without DPCPX significantly increased the nociceptive threshold in each rat model. OT-7100 (3, 10 and 30 mg/kg per day, p.o.) significantly inhibited the mechanical nociceptive threshold in the injured paw in the Chung model. OT-7100 (30 mg/kg, p.o.) significantly decreased the number of Fos-LI neurons in the spinal dorsal horn in the Bennett model. These finding suggest that OT-7100 inhibits hyperalgesia in these animal models possibly by enhancing adenosinergic neurotransmission in the dorsal horn, although we still lack direct evidence for it.
机译:我们研究了新型镇痛药OT-7100(5-正丁基7-(3,4,5-三甲氧基苯甲酰基氨基)吡唑并[1,5-a]嘧啶)对腺苷对腺苷的抑制作用。收缩豚鼠回肠并研究了OT-7100对炎性和周围神经性痛觉过敏动物模型的伤害性反应的影响,并降低了脊髓c-Fos表达。 0.3-3 microM的OT-7100显着增强了腺苷对豚鼠回肠收缩的抑制作用。 OT-7100(1、3或10 mg / kg,po)对酵母或P物质和Bennett模型引起的痛觉过敏的疗效被腺苷A1拮抗剂DPCPX(0.01或0.1 pmol /动物, ),而没有DPCPX的OT-7100则显着提高了每只大鼠模型的伤害阈值。在Chung模型中,OT-7100(每天3、10和30 mg / kg,p.o。)显着抑制受伤脚掌的机械伤害性阈值。在Bennett模型中,OT-7100(30 mg / kg,p.o.)明显减少了脊髓背角中Fos-LI神经元的数量。这些发现表明,OT-7100可能通过增强背角的腺苷能神经传递来抑制这些动物模型中的痛觉过敏,尽管我们仍缺乏直接证据。

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