首页> 外文OA文献 >The affinities, potencies and efficacies of some benzodiazepine-receptor agonists, antagonists and inverse-agonists at rat hippocampal GABAA-receptors.
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The affinities, potencies and efficacies of some benzodiazepine-receptor agonists, antagonists and inverse-agonists at rat hippocampal GABAA-receptors.

机译:某些苯二氮卓类受体激动剂,拮抗剂和反向激动剂在大鼠海马GABAA受体上的亲和力,功效和功效。

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摘要

The abilities of some benzodiazepine-receptor agonists, antagonists and inverse agonists to modulate the inhibitory potency of the gamma-aminobutyric acid (GABA)A-receptor agonist, isoguvacine, on the CA1 population spike recorded from slices of rat hippocampus, were determined. Concentration-response curves were constructed of the extent to which the benzodiazepine-receptor ligands shifted the isoguvacine concentration-response curve to the left or right. These were compared to their displacement curves of [3H]-Ro15-1788 binding to rat hippocampal membranes under near physiological assay conditions. The above comparisons suggest that the effect on the potency of isoguvacine produced by the benzodiazepine-receptor agonists, diazepam and flunitrazepam, and the partial agonists, Ro16-6028 and Ro17-1812, closely parallels their degree of benzodiazepine-receptor occupancy. Thus, the partial agonists, Ro16-6028 and Ro17-1812, were unable to produce as large a maximum response as the full agonists, diazepam and flunitrazepam. The maximum effects produced by diazepam, flunitrazepam, Ro16-6028, Ro17-1812, the antagonist, propyl-beta-carboline-3-carboxylate, and the inverse agonist, methyl-6, 7-dimethyl-4-ethyl-beta-carboline-3-carboxylate (DMCM), on the potency of isoguvacine in the hippocampal slice corresponded to the change in their affinities produced by the addition of GABA in the radioligand binding studies (GABA-shift). This suggests that the changes in affinity of benzodiazepine-receptor ligands produced by GABAA-receptor activation reflects their ability to modify GABAA-receptor function. The benzodiazepine-receptor antagonists, Ro15-1788 and CGS 8216, had apparent agonist and inverse agonist effects, respectively, on the potency of isoguvacine. These effects occurred at concentrations above those required for saturation of the benzodiazepine-receptor, as labelled by [3H]-Ro15-1788, and were not in agreement with the absence of any effect of GABAA-receptor stimulation in the GABA-shift experiments.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:确定了一些苯并二氮杂-受体激动剂,拮抗剂和反向激动剂调节γ-氨基丁酸(GABA)A受体激动剂异guvacine对大鼠海马切片上记录的CA1峰值的抑制能力。浓度-反应曲线是根据苯二氮杂-受体配体向左或向右移动异胍卡因浓度-反应曲线的程度构建的。将它们与在接近生理学测定条件下与大鼠海马膜结合的[3H] -Ro15-1788的位移曲线进行比较。以上比较表明,对苯并二氮杂-受体激动剂地西epa和氟硝西m以及部分激动剂Ro16-6028和Ro17-1812产生的异胍卡因效能的影响与苯二氮ze受体的占有程度密切相关。因此,部分激动剂Ro16-6028和Ro17-1812不能产生与完全激动剂地西epa和氟硝西epa一样大的最大反应。地西epa,氟尼西epa,Ro16-6028,Ro17-1812,拮抗剂,丙基-β-咔啉-3-羧酸盐和反向激动剂甲基-6、7-二甲基-4-乙基-β-咔啉产生的最大作用在海马切片中异胍卡因效力上的-3-羧酸盐(DMCM)对应于在放射性配体结合研究中添加GABA产生的亲和力变化(GABA迁移)。这表明由GABAA受体激活产生的苯二氮杂pine受体配体亲和力的变化反映了它们修饰GABAA受体功能的能力。苯二氮卓受体拮抗剂Ro15-1788和CGS 8216对异古瓦汀的效力分别具有明显的激动剂和反向激动剂作用。如[3H] -Ro15-1788所标记的,这些作用发生在高于苯并二氮杂saturation受体饱和所需浓度的浓度下,并且与在GABA转变实验中不存在任何GABAA受体刺激作用不一致。 (摘要以250字截断)

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