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首页> 外文期刊>The European Journal of Neuroscience >Activation of peripheral cannabinoid CB1 receptors inhibits mechanically evoked responses of spinal neurons in noninflamed rats and rats with hindpaw inflammation.
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Activation of peripheral cannabinoid CB1 receptors inhibits mechanically evoked responses of spinal neurons in noninflamed rats and rats with hindpaw inflammation.

机译:外周大麻素CB1受体的激活抑制了非发炎大鼠和后足发炎大鼠中脊髓神经元的机械诱发反应。

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The presence of cannabinoid1 (CB1) receptors on primary afferent fibres may provide a novel target for cannabinoid analgesics. The present study investigated the ability of peripheral CB1 receptors to modulate innocuous and noxious transmission in noninflamed rats and rats with peripheral carrageenan inflammation. Effects of peripheral injection of arachidonyl-2-choroethylamide (ACEA; 10 and 30 micro g in 50 micro L), a selective CB1 receptor agonist, on mechanically evoked responses of dorsal horn neurons were studied in noninflamed rats and rats with peripheral carrageenan inflammation. Peripheral injection of ACEA (30 micro g in 50 micro L) significantly inhibited innocuous (12 g) mechanically evoked responses of spinal neurons in noninflamed (27 +/- 4% of control; P < 0.01) and inflamed (12 +/- 8% of control; P < 0.05) rats. Similarly, noxious (80 g) mechanically evoked responses of spinal neurons were inhibited by peripheral injection of ACEA (30 micro g in 50 micro L) in noninflamed rats (51 +/- 9% of control; P < 0.01) and rats with peripheral carrageenan inflammation (21 +/- 8% of control; P < 0.01). Inhibitory effects of ACEA were significantly greater in rats with peripheral carrageenan inflammation than in noninflamed rats (P < 0.05). Inhibitory effects of ACEA were significantly blocked by coadministration of the CB1 receptor antagonist SR141716A in both groups of rats. Peripheral injection of SR141716A alone did not alter mechanically evoked responses of spinal neurons in either group of rats. These data demonstrate that activation of peripheral CB1 receptors can inhibit innocuous and noxious somatosensory processing. Furthermore, following peripheral inflammation there is an enhanced inhibitory effect of a peripherally administered CB1 receptor agonist on both innocuous and noxious mechanically evoked responses of spinal neurons.
机译:初级传入纤维上大麻素1(CB1)受体的存在可能为大麻素镇痛药提供新的靶点。本研究调查了外周CB1受体调节无炎症大鼠和周围角叉菜胶炎症大鼠的无害和有害传递的能力。在未发炎的大鼠和患有周围角叉菜胶炎症的大鼠中,研究了外周注射花生四烯酸-2-氯乙酰胺(ACEA; 50微升中的10和30微克)(一种选择性的CB1受体激动剂)对背角神经元机械诱发反应的影响。在非发炎(对照组的27 +/- 4%; P <0.01)和发炎(12 +/- 8)中,外周注射ACEA(30微克/ 50微升)可显着抑制脊髓神经元的无害(12 g)机械诱发反应对照组百分比; P <0.05)大鼠。同样,在非发炎的大鼠(对照组的51 +/- 9%; P <0.01)和外周血的大鼠中,ACEA的外周注射ACEA(50微升中的30微克,在50微升中)可抑制脊髓神经元的有害(80 g)机械诱发反应角叉菜胶炎症(对照组的21 +/- 8%; P <0.01)。 ACEA在周围角叉菜胶发炎的大鼠中的抑制作用明显强于未发炎的大鼠(P <0.05)。在两组大鼠中共同施用CB1受体拮抗剂SR141716A可显着阻断ACEA的抑制作用。单独注射SR141716A并不能改变两组大鼠中脊髓神经元的机械诱发反应。这些数据表明,外周CB1受体的激活可以抑制无害和有害的体感处理。此外,在外周炎症之后,外周施用的CB1受体激动剂对脊髓神经元的无害和有害机械诱发反应均具有增强的抑制作用。

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