Biggio G, Concas A, Corda M G, Serra M
Department of Experimental Biology, University of Cagliari, Italy.
Eur J Pharmacol. 1989 Feb 28;161(2-3):173-80. doi: 10.1016/0014-2999(89)90840-6.
The effect of zolpidem, an imidazopyridine derivative with high affinity at the type I benzodiazepine recognition site, on the function of the GABAA/ionophore receptor complex was studied in vitro. Zolpidem, mimicking the action of diazepam, increased [3H]GABA binding, enhanced muscimol-stimulated 36Cl- uptake and reduced [35S]TBPS binding in rat cortical membrane preparations. Zolpidem was less effective than diazepam on the above parameters. Zolpidem induced a lower increase of [3H]GABA binding (23 vs. 35%) and muscimol-stimulated 36Cl- uptake (22 vs. 40%) and a smaller decrease of [35S]TBPS binding (47 vs. 77%) than diazepam. The finding that zolpidem enhanced the function of GABAergic synapses with an efficacy qualitatively and quantitatively different from that of diazepam suggests that this compound is a partial agonist at the benzodiazepine recognition site. Thus, our results are consistent with the view that the biochemical and pharmacological profile of a benzodiazepine recognition site ligand reflects its efficacy to enhance GABAergic transmission. Whether the preferential affinity of zolpidem at the type I site is involved in its atypical biochemical and pharmacological profile remains to be clarified.
在体外研究了唑吡坦(一种在I型苯二氮䓬识别位点具有高亲和力的咪唑吡啶衍生物)对GABAA/离子载体受体复合物功能的影响。唑吡坦模拟地西泮的作用,增加了大鼠皮质膜制剂中[3H]GABA的结合,增强了蝇蕈醇刺激的36Cl-摄取,并降低了[35S]TBPS的结合。唑吡坦在上述参数上的效果不如地西泮。与地西泮相比,唑吡坦诱导的[3H]GABA结合增加较低(23%对35%),蝇蕈醇刺激的36Cl-摄取增加较低(22%对40%),[35S]TBPS结合减少较小(47%对77%)。唑吡坦增强GABA能突触功能,其效力在定性和定量上与地西泮不同,这一发现表明该化合物在苯二氮䓬识别位点是部分激动剂。因此,我们的结果与以下观点一致,即苯二氮䓬识别位点配体的生化和药理学特征反映了其增强GABA能传递的效力。唑吡坦在I型位点的优先亲和力是否涉及其非典型的生化和药理学特征仍有待阐明。