Barrett V J, Leff P, Martin G R, Richardson P J
Br J Pharmacol. 1986 Mar;87(3):487-94. doi: 10.1111/j.1476-5381.1986.tb10190.x.
Bay K 8644 potentiated and augmented 5-hydroxytryptamine (5-HT)-induced contractions in the rabbit, isolated aorta preparation, as manifested in leftward shift and increase in the asymptote of 5-HT E/[A] (effect vs concentration) curves. The operational model of agonism (Black & Leff, 1983) was used to analyse this interaction and the concomitant effects of irreversible receptor alkylation by phenoxybenzamine. The competitive effects of spiperone in the presence and absence of Bay K 8644 were also examined. From these analyses it is concluded that Bay K 8644 elicits its potentiating effects by increasing the efficacy of 5-HT at the 5-HT2 receptor with no alteration in affinity. This is consistent with the known effect of Bay K 8644 of causing an increase in the functional concentration of plasmalemmal calcium channels coupled to the 5-HT2 receptors in this preparation. The positively co-operative shape of the 5-HT E/[A] curves obtained in the aorta and the quantitative nature of their potentiation by Bay K 8644 indicated that the coupling of 5-HT2 receptor occupancy to intracellular calcium concentration is linear and that the co-operativity resides in the subsequent relation between intracellular calcium and pharmacological effect. Bay K 8644 may serve as a probe for differentiating between the types of calcium channels that transduce 5-HT receptor-mediated effects in different systems. Such information would be useful in the classification of agonist interactions with 5-HT receptors.
在兔离体主动脉标本中,Bay K 8644增强并加大了5-羟色胺(5-HT)诱导的收缩作用,表现为5-HT的效应/[浓度](效应与浓度)曲线的左移和渐近线升高。采用激动作用的操作模型(Black和Leff,1983)来分析这种相互作用以及苯氧苄胺对受体不可逆烷基化的伴随效应。还研究了在有和没有Bay K 8644存在时螺哌隆的竞争效应。从这些分析得出结论,Bay K 8644通过增加5-HT在5-HT2受体上的内在活性而发挥其增强作用,亲和力没有改变。这与已知的Bay K 8644使该标本中与5-HT2受体偶联的质膜钙通道功能浓度增加的效应一致。在主动脉中获得的5-HT效应/[浓度]曲线的正协同形状以及Bay K 8644对其增强作用的定量性质表明,5-HT2受体占据与细胞内钙浓度的偶联是线性的,协同性存在于细胞内钙与药理效应之间的后续关系中。Bay K 8644可作为一种探针,用于区分在不同系统中介导5-HT受体介导效应的钙通道类型。此类信息将有助于对激动剂与5-HT受体相互作用进行分类。