Obradović Aleksandar Lj, Joksimović Srđan, Poe Michael M, Ramerstorfer Joachim, Varagic Zdravko, Namjoshi Ojas, Batinić Bojan, Radulović Tamara, Marković Bojan, Roth Brian L, Sieghart Werner, Cook James M, Savić Miroslav M
Department of Physiology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.
Department of Pharmacology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.
Brain Res. 2014 Mar 20;1554:36-48. doi: 10.1016/j.brainres.2014.01.036. Epub 2014 Jan 25.
Enormous progress in understanding the role of four populations of benzodiazepine-sensitive GABAA receptors was paralleled by the puzzling findings suggesting that substantial separation of behavioral effects may be accomplished by apparently non-selective modulators. We report on SH-I-048A, a newly synthesized chiral positive modulator of GABAA receptors characterized by exceptional subnanomolar affinity, high efficacy and non-selectivity. Its influence on behavior was assessed in Wistar rats and contrasted to that obtained with 2mg/kg diazepam. SH-I-048A reached micromolar concentrations in brain tissue, while the unbound fraction in brain homogenate was around 1.5%. The approximated electrophysiological responses, which estimated free concentrations of SH-I-048A or diazepam are able to elicit, suggested a similarity between the 10mg/kg dose of the novel ligand and 2mg/kg diazepam; however, SH-I-048A was relatively more active at α1- and α5-containing GABAA receptors. Behaviorally, SH-I-048A induced sedative, muscle relaxant and ataxic effects, reversed mechanical hyperalgesia 24h after injury, while it was devoid of clear anxiolytic actions and did not affect water-maze performance. While lack of clear anxiolytic actions may be connected with an enhanced potentiation at α1-containing GABAA receptors, the observed behavior in the rotarod, water maze and peripheral nerve injury tests was possibly affected by its prominent action at receptors containing the α5 subunit. The current results encourage further innovative approaches aimed at linking in vitro and in vivo data in order to help define fine-tuning mechanisms at four sensitive receptor populations that underlie subtle differences in behavioral profiles of benzodiazepine site ligands.
在理解四类对苯二氮䓬敏感的GABAA受体的作用方面取得了巨大进展,与此同时,一些令人困惑的发现表明,行为效应的显著分离可能由明显非选择性的调节剂来实现。我们报告了SH-I-048A,一种新合成的GABAA受体手性正性调节剂,其特点是具有异常的亚纳摩尔亲和力、高效能和非选择性。在Wistar大鼠中评估了它对行为的影响,并与2mg/kg地西泮的影响进行了对比。SH-I-048A在脑组织中达到微摩尔浓度,而脑匀浆中的游离分数约为1.5%。估计SH-I-048A或地西泮的游离浓度能够引发的近似电生理反应表明,10mg/kg剂量的新型配体与2mg/kg地西泮之间存在相似性;然而,SH-I-048A在含α1和α5的GABAA受体上相对更具活性。在行为上,SH-I-048A诱导镇静、肌肉松弛和共济失调作用,在损伤后24小时逆转机械性痛觉过敏,而它没有明显的抗焦虑作用,也不影响水迷宫表现。虽然缺乏明显的抗焦虑作用可能与含α1的GABAA受体上增强的增强作用有关,但在转棒试验、水迷宫试验和周围神经损伤试验中观察到的行为可能受到其在含α5亚基的受体上的突出作用的影响。目前的结果鼓励进一步创新方法,旨在将体外和体内数据联系起来,以帮助确定四类敏感受体群体的微调机制,这些机制是苯二氮䓬位点配体行为特征细微差异的基础。