Knoflach Frédéric, Hernandez Maria-Clemencia, Bertrand Daniel
Discovery Neuroscience, Pharma Research and Early Development, Roche Innovation Center Basel.
HiQScreen Sàrl 6;
J Vis Exp. 2018 Aug 16(138):57842. doi: 10.3791/57842.
This manuscript presents a step-by-step protocol for screening compounds at gamma-aminobutyric acid type A (GABAA) receptors and its use towards the identification of novel molecules active in preclinical assays from an in vitro recombinant receptor to their pharmacological effects at native receptors in rodent brain slices. For compounds binding at the benzodiazepine site of the receptor, the first step is to set up a primary screen that consists of developing radioligand binding assays on cell membranes expressing the major GABAA subtypes. Then, taking advantage of the heterologous expression of rodent and human GABAA receptors in Xenopus oocytes or HEK 293 cells, it is possible to explore, in electrophysiological assays, the physiological properties of the different receptor subtypes and the pharmacological properties of the identified compounds. The Xenopus oocyte system will be presented here, starting with the isolation of the oocytes and their microinjection with different mRNAs, up to the pharmacological characterization using two-electrode voltage clamps. Finally, recordings conducted in rodent brain slices will be described that are used as a secondary physiological test to assess the activity of molecules at their native receptors in a well-defined neuronal circuit. Extracellular recordings using population responses of multiple neurons are demonstrated together with the drug application.
本手稿介绍了一种在γ-氨基丁酸A型(GABAA)受体上筛选化合物的逐步方案,以及该方案在从体外重组受体到啮齿动物脑片中原生受体的药理作用的临床前试验中鉴定活性新分子的应用。对于在受体苯二氮䓬位点结合的化合物,第一步是建立一个初步筛选,包括在表达主要GABAA亚型的细胞膜上开展放射性配体结合试验。然后,利用啮齿动物和人类GABAA受体在非洲爪蟾卵母细胞或人胚肾293细胞中的异源表达,在电生理试验中探究不同受体亚型的生理特性以及所鉴定化合物的药理特性。本文将介绍非洲爪蟾卵母细胞系统,从卵母细胞的分离及其用不同mRNA进行显微注射开始,直至使用双电极电压钳进行药理特性分析。最后,将描述在啮齿动物脑片中进行的记录,这些记录用作二级生理测试,以评估分子在明确的神经元回路中的原生受体上的活性。展示了使用多个神经元群体反应的细胞外记录以及药物应用情况。