Bertz R J, Reynolds I J, Kroboth P D
Department of Pharmacy and Therapeutics, School of Pharmacy, University of Pittsburgh, PA 15261, USA.
Neuropharmacology. 1995 Sep;34(9):1169-75. doi: 10.1016/0028-3908(95)00072-e.
Modulation of benzodiazepine receptor ligand binding to the GABAA receptor complex by the neuroactive steroids 3 alpha-hydroxy-dihydroprogesterone (3 alpha-OH-DHP) and 3 alpha-hydroxycorticosterone (3 alpha- THDOC) was assessed in an in vitro binding assay with the benzodiazepine antagonist [3H]flumazenil using rat cortical membranes. Neuroactive steroids, pentobarbital, GABA and bicuculline did not significantly affect flumazenil binding. However, the addition of neuroactive steroids significantly decreased the Ki of benzodiazepine agonists, including alprazolam, diazepam and clonazepam, indicating an increase in agonist affinity. Only the addition of 3 beta-OH-DHP, an inactive stereoisomer had no effect on the Ki of these agonists. The binding of the benzodiazepine inverse agonist FG 7142 was not significantly affected by these steroids, but the addition of GABA significantly increased the Ki of FG 7142 indicating a decrease in inverse agonist affinity. High concentrations of GABA or bicuculline were able to occlude the 3 alpha-THDOC mediated decrease in alprasolam Ki, indicating a GABA dependent mechanism of binding enhancement. An advantage of using [3H]flumazenil is that neither the Ki nor the Bmax change in the presence of allosteric site modulators, permitting the simple and direct assessment of alterations in benzodiazepine ligand affinity for the GABAA receptor complex by neuroactive steroids.
使用大鼠皮层膜,通过苯二氮䓬拮抗剂[³H]氟马西尼的体外结合试验,评估了神经活性甾体3α-羟基二氢孕酮(3α-OH-DHP)和3α-羟基皮质酮(3α-THDOC)对苯二氮䓬受体配体与GABAA受体复合物结合的调节作用。神经活性甾体、戊巴比妥、GABA和荷包牡丹碱对氟马西尼结合无显著影响。然而,添加神经活性甾体显著降低了包括阿普唑仑、地西泮和氯硝西泮在内的苯二氮䓬激动剂的Ki,表明激动剂亲和力增加。只有添加无活性的立体异构体3β-OH-DHP对这些激动剂的Ki没有影响。苯二氮䓬反向激动剂FG 7142的结合不受这些甾体的显著影响,但添加GABA显著增加了FG 7142的Ki,表明反向激动剂亲和力降低。高浓度的GABA或荷包牡丹碱能够阻断3α-THDOC介导的阿普唑仑Ki降低,表明存在GABA依赖性的结合增强机制。使用[³H]氟马西尼的一个优点是,在变构位点调节剂存在的情况下,Ki和Bmax均无变化,从而可以简单直接地评估神经活性甾体对苯二氮䓬配体与GABAA受体复合物亲和力的改变。