首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Intracerebroventricular administration of a nitric oxide-releasing compound, NOC-18, produces thermal hyperalgesia in rats.
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Intracerebroventricular administration of a nitric oxide-releasing compound, NOC-18, produces thermal hyperalgesia in rats.

机译:脑室内给予一氧化氮释放化合物NOC-18在大鼠中产生热痛觉过敏。

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This study was undertaken to define the role of nitric oxide (NO) in central nociceptive mechanisms by intracerebroventricular injection of an NO-releasing compound, NOC-18, in rats. The nociceptive threshold was evaluated by the radiant heat tail-flick test. Sixty-nine rats were divided into the seven groups, and the following drugs were injected intracerebroventricularly in 5 microliters of saline: no drug (control) (n = 13), 15 micrograms of NOC-18 (n = 15); 150 micrograms of NOC-18 (n = 9); 100 micrograms of N-nitro-L-arginine methyl ester (L-NAME) (n = 8); 15 micrograms of NOC-18 + 100 micrograms of L-NAME (n = 8); 10 micrograms of methylene blue (MB) (n = 8); 15 micrograms of NOC-18 + 10 micrograms of MB (n = 8). NOC-18 caused a dose-dependent curtailment (7% and 23% decreases for 15 micrograms and 150 micrograms of NOC-18, respectively) of the tail-flick latency during the period from 15 to 120 min. L-NAME caused prolongation (15% maximum) of the tail-flick latency during the period from 15 to 150 min. However, NOC-18-induced hyperalgesia was not influenced by L-NAME. MB also caused prolongation (9% maximum) of the tail-flick latency during the period from 15 to 150 min, and completely blocked the hyperalgesia induced by 15 micrograms of NOC-18. These findings indicate that the NO-cGMP pathway is directly involved in thermal hyperalgesia in the brain.
机译:这项研究旨在通过脑室内注射一氧化氮释放化合物NOC-18来确定一氧化氮(NO)在中枢伤害感受机制中的作用。伤害阈值通过辐射热甩尾测试进行评估。将69只大鼠分为7组,将以下药物以5微升盐水脑室内注射:无药物(对照组)(n = 13),15微克NOC-18(n = 15); 150微克NOC-18(n = 9); 100微克N-硝基-L-精氨酸甲酯(L-NAME)(n = 8); 15毫克的NOC-18 + 100毫克的L-NAME(n = 8); 10微克亚甲蓝(MB)(n = 8); 15毫克的NOC-18 + 10毫克的MB(n = 8)。在15到120分钟的时间内,NOC-18导致了甩尾潜伏期的剂量依赖性削减(对于15微克和150微克NOC-18分别减少了7%和23%)。在15到150分钟的时间内,L-NAME导致甩尾潜伏期延长(最大15%)。但是,NOC-18诱导的痛觉过敏不受L-NAME的影响。在15至150分钟内,MB还导致甩尾潜伏期延长(最大9%),并完全阻断了15微克NOC-18引起的痛觉过敏。这些发现表明,NO-cGMP途径直接参与了大脑的热痛觉过敏。

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