Galvan M, Boer R, Schudt C
Department of Pharmacology, Byk Gulden Pharmaceuticals, Konstanz, F.R.G.
Eur J Pharmacol. 1989 Aug 11;167(1):1-10. doi: 10.1016/0014-2999(89)90741-3.
The interaction of the antimuscarinic drug telenzepine with muscarinic receptors was studied in rabbit and rat isolated superior cervical sympathetic ganglia. Radioligand binding demonstrated two muscarinic receptor sites in rabbit ganglia, with the characteristics of M1- and M2-receptors. Telenzepine bound to the M1 sites with a KI of 0.94 nmol/l and to the M2 sites with a KI of 17.8 nmol/l; the corresponding values for pirenzepine were 18.6 and 588 nmol/l; for AF-DX 116 the values were 891 and 33 nmol/l respectively. [3H]Telenzepine dissociated from the M1-receptors with a half time of 46 min at 37 degrees C. Electrophysiological experiments demonstrated that telenzepine reduced the amplitude of the extracellularly recorded slow excitatory postsynaptic potential and the slow inhibitory postsynaptic potential (ED50: 38 and 253 nmol/l respectively). In rat ganglia, application of muscarine or the M1-receptor agonist McN-A-343 increased the amplitude of submaximal population action potentials. This facilitation of synaptic transmission was potently blocked by telenzepine and pirenzepine but only weakly by AF-DX 116 (ED50: ca. 30, 150 and 20 mumol/l, respectively). It is concluded that telenzepine blocks the generation of the slow excitatory postsynaptic potential and the excitatory action of muscarine and McN-A-343 via an action on muscarinic M1-receptors.
在兔和大鼠离体颈上神经节中研究了抗毒蕈碱药物替仑西平与毒蕈碱受体的相互作用。放射性配体结合实验表明兔神经节中有两种毒蕈碱受体位点,具有M1和M2受体的特征。替仑西平与M1位点结合的解离常数(KI)为0.94 nmol/l,与M2位点结合的KI为17.8 nmol/l;哌仑西平的相应值分别为18.6和588 nmol/l;AF-DX 116的值分别为891和33 nmol/l。[3H]替仑西平在37℃下从M1受体解离的半衰期为46分钟。电生理实验表明,替仑西平降低了细胞外记录的慢兴奋性突触后电位和慢抑制性突触后电位的幅度(ED50分别为38和253 nmol/l)。在大鼠神经节中,应用毒蕈碱或M1受体激动剂McN-A-343可增加次最大群体动作电位的幅度。这种突触传递的促进作用被替仑西平和哌仑西平强烈阻断,但仅被AF-DX 116微弱阻断(ED50分别约为30、150和20 μmol/l)。结论是,替仑西平通过作用于毒蕈碱M1受体来阻断慢兴奋性突触后电位的产生以及毒蕈碱和McN-A-343的兴奋作用。