Coupet J, Szuchs-Myers V A
Eur J Pharmacol. 1981 Sep 11;74(2-3):149-55. doi: 10.1016/0014-2999(81)90525-2.
Several classes of psychoactive compounds have been investigated for their effects on histamine-sensitive adenylate cyclase in cell free preparations from the guinea-pig cerebral cortex. Their inhibitory actions on this enzyme system have been compared with their abilities to displace [3H]pyrilamine and [3H]cimetidine from histamine H1- and H2-receptor sites, respectively. The results of these studies show that compounds which inhibited the histamine-sensitive cyclase were also displacers of either ([3H]pyrilamine or [3H]cimetidine or both 3H]ligands from their binding sites. In spite of the lack of a correlation between binding and cyclase antagonism, it was observed that compounds that displace both ligands showed greater inhibition of the cyclase than those that have affinities for sites labeled by one or the other ligand. It was concluded that antihistamines, the antipsychotics and the antidepressants share a common property through their antagonism of H1-receptors and that may be responsible for their sedative side effect.
已经研究了几类精神活性化合物对豚鼠大脑皮层无细胞制剂中组胺敏感腺苷酸环化酶的影响。已将它们对该酶系统的抑制作用与其分别从组胺H1和H2受体位点置换[3H]吡咯胺和[3H]西咪替丁的能力进行了比较。这些研究结果表明,抑制组胺敏感环化酶的化合物也是[3H]吡咯胺或[3H]西咪替丁或两种3H配体从其结合位点的置换剂。尽管结合与环化酶拮抗作用之间缺乏相关性,但观察到置换两种配体的化合物对环化酶的抑制作用比那些对一种或另一种配体标记的位点具有亲和力的化合物更大。得出的结论是,抗组胺药、抗精神病药和抗抑郁药通过拮抗H1受体具有共同特性,这可能是它们镇静副作用的原因。