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消除大鼠脊髓中表达P物质受体的神经元会使对烟碱类激动剂的心血管反应和伤害性防御反应分离。

Elimination of rat spinal substance P receptor bearing neurons dissociates cardiovascular and nocifensive responses to nicotinic agonists.

作者信息

Khan Imran M, Wart Chris V, Singletary Erin A, Stanislaus Shanaka, Deerinck Tom, Yaksh Tony L, Printz Morton P

机构信息

Department of Pharmacology, University of California, San Diego, CA 92093-0636, USA.

出版信息

Neuropharmacology. 2008 Feb;54(2):269-79. doi: 10.1016/j.neuropharm.2007.09.014. Epub 2007 Oct 17.

Abstract

Intrathecal (IT) delivery of nicotinic agonists evokes dose dependent nocifensive behavior and cardiovascular responses. Previous studies suggested that these effects may be attenuated by the loss of substance P positive (sP(+)) primary afferents. To further characterize these cell systems, we examined the effect of selectively destroying neurokinin 1 receptor bearing (NK1-r(+)) dorsal horn neurons on IT nicotinic agonist evoked responses. In the dorsal spinal cord, confocal immunohistochemical microscopy revealed that nAChR subunits (alpha3, alpha4, alpha5, beta2 and beta4), NeuN B (neuronal marker) and NK1-r were all co-expressed in the superficial dorsal horn; however alpha3, alpha5, beta2 and beta4 exhibited the highest degree of colocalization with NK1-r expressing neurons. After intrathecal substance P-saporin (sP-SAP), NK1-r(+) cell bodies and dendrites in the superficial dorsal horn were largely abolished. The greatest loss in co-expression of nAChR subunits with NK1-r was observed with alpha3, alpha5, beta2 and beta4 subunits. Following intrathecal sP-SAP, the nocifensive responses to all nicotinic agonists were reduced; however, in contrast, while cardiovascular responses evoked by IT nicotine were unaltered, IT cytisine and epibatidine exhibited enhanced tachycardia and pressor responses. These results indicate subunit-specific relationships between the NK1-r and nicotinic receptor systems. The loss of nocifensive activity after destruction of the NK1-r bearing cells in spite of the persistence of nicotinic subunits on other cells, emphasizes the importance of the superficial marginal neuron in mediating these nicotinic effects. Further, the exaggerated cardiovascular responses to cytisine following loss of NK1-r bearing cells suggest the presence of a nicotinic receptor-mediated stimulation of inhibitory circuits at the spinal level.

摘要

鞘内注射烟碱激动剂可引发剂量依赖性的伤害防御行为和心血管反应。先前的研究表明,这些效应可能会因P物质阳性(sP(+))初级传入纤维的缺失而减弱。为了进一步表征这些细胞系统,我们研究了选择性破坏表达神经激肽1受体(NK1-r(+))的背角神经元对鞘内烟碱激动剂诱发反应的影响。在脊髓背角,共聚焦免疫组织化学显微镜检查显示,烟碱型乙酰胆碱受体亚基(α3、α4、α5、β2和β4)、NeuN B(神经元标记物)和NK1-r均在浅表背角共表达;然而,α3、α5、β2和β4与表达NK1-r的神经元表现出最高程度的共定位。鞘内注射P物质-皂草素(sP-SAP)后,浅表背角中的NK1-r(+)细胞体和树突大部分被消除。在α3、α5、β2和β4亚基中观察到烟碱型乙酰胆碱受体亚基与NK1-r共表达的最大损失。鞘内注射sP-SAP后,对所有烟碱激动剂的伤害防御反应均降低;然而,相比之下,虽然鞘内注射尼古丁诱发的心血管反应未改变,但鞘内注射金雀花碱和埃博霉素表现出增强的心动过速和升压反应。这些结果表明NK1-r与烟碱受体系统之间存在亚基特异性关系。尽管其他细胞上仍存在烟碱亚基,但破坏表达NK1-r的细胞后伤害防御活性的丧失,强调了浅表边缘神经元在介导这些烟碱效应中的重要性。此外,表达NK1-r的细胞缺失后对金雀花碱的心血管反应增强,表明在脊髓水平存在烟碱受体介导的抑制性回路刺激。

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