Coutts A A, Pertwee R G
Department of Biomedical Sciences, University of Aberdeen, Scotland.
Can J Physiol Pharmacol. 1998 Mar;76(3):340-6.
Cannabinoid receptor agonists inhibit electrically evoked isometric contractions of the myenteric plexus--longitudinal muscle preparation of the guinea-pig small intestine (MPLM), probably by reducing release of acetylcholine (ACh) through the activation of prejunctional CB1 receptors. As CB1 receptors are thought to be negatively coupled through Gi/o proteins to both N-type Ca2+ channels and adenylate cyclase, we have now further investigated the involvement of CB1 receptors by monitoring the effects of forskolin, 8-bromo-cAMP, 3-isobutyl-1-methylxanthine (IBMX), and extracellular Ca2+ on the ability of the cannabinoid agonist, (+)-WIN 55212 to inhibit electrically evoked contractions of the MPLM (0.1 Hz, 0.5 ms, and 110% maximal voltage). Some experiments were performed with normorphine instead of (+)-WIN 55212. At 10(-7) M, forskolin, 8-bromo-cAMP, and IBMX were found to reduce significantly the maximum inhibitory response to (+)-WIN 55212 by 49.4, 48.4, and 40.2%, respectively, without affecting control contractions or responses to exogenous ACh. Low external Ca2+ (0.64 mM) significantly increased the maximum response to (+)-WIN 55212 and shifted the curve slightly leftwards, whereas high external Ca2+ (5.08 mM) reduced the maximum response by 27.2%. The concentration-response curve to normorphine, which also reduces evoked contractions of this preparation as a result of a presynaptic inhibition of ACh release via opioid mu receptors, was affected similarly. These results support the hypothesis that cannabinoid-induced inhibition in the MPLM is mediated by CB1 receptors.
大麻素受体激动剂可抑制豚鼠小肠肌间神经丛 - 纵行肌标本(MPLM)的电诱发等长收缩,这可能是通过激活突触前CB1受体来减少乙酰胆碱(ACh)的释放实现的。由于CB1受体被认为是通过Gi/o蛋白与N型Ca2+通道和腺苷酸环化酶负性偶联,我们现在通过监测福斯高林、8 - 溴 - cAMP、3 - 异丁基 - 1 - 甲基黄嘌呤(IBMX)和细胞外Ca2+对大麻素激动剂(+)-WIN 55212抑制MPLM电诱发收缩能力(0.1 Hz,0.5 ms,110%最大电压)的影响,进一步研究了CB1受体的作用。一些实验用去甲吗啡代替了(+)-WIN 55212。发现在10^(-7) M时,福斯高林、8 - 溴 - cAMP和IBMX分别使对(+)-WIN 55212的最大抑制反应显著降低49.4%、48.4%和40.2%,而不影响对照收缩或对外源性ACh的反应。低细胞外Ca2+(0.64 mM)显著增加了对(+)-WIN 55212的最大反应,并使曲线略微左移,而高细胞外Ca2+(5.08 mM)使最大反应降低了27.2%。对去甲吗啡的浓度 - 反应曲线也受到类似影响,去甲吗啡同样由于通过阿片μ受体对ACh释放的突触前抑制而减少该标本的诱发收缩。这些结果支持了大麻素在MPLM中诱导的抑制作用是由CB1受体介导的这一假说。