Atack John R, Bayley Peter J, Seabrook Guy R, Wafford Keith A, McKernan Ruth M, Dawson Gerard R
Merck Sharp & Dohme Research Laboratories, Neuroscience Research Centre, Terlings Park, Eastwick Road, Harlow, Essex CM20 2QR, UK.
Neuropharmacology. 2006 Nov;51(6):1023-9. doi: 10.1016/j.neuropharm.2006.04.018. Epub 2006 Oct 12.
The in vitro and in vivo properties of L-655,708, a compound with higher affinity for GABA(A) receptors containing an alpha5 compared to an alpha1, alpha2 or alpha3 subunit have been examined further. This compound has weak partial inverse agonist efficacy at each of the four subtypes but, and consistent with the binding data, has higher functional affinity for the alpha5 subtype. In a mouse hippocampal slice model, L-655,708 was able to enhance the long-term potentiation produced by a theta burst stimulation, consistent with a potential role for the alpha5 subtype in processes involving synaptic plasticity, such as learning and memory. When administered in a formulation specifically designed to achieve relatively constant plasma drug concentrations, and therefore maintain selective occupancy of alpha5- compared to alpha1-, alpha2- and alpha3-containing receptors (75+/-4% versus 22+/-10%, respectively), L-655,708 did not alter the dose of pentylenetetrazole required to induce seizures, indicating that the inverse agonist effects of L-655,708 at the alpha5 subtype are not associated with a proconvulsant liability. In the Morris water maze, L-655,708 enhanced performance not only during acquisition but also in a probe trial, demonstrating that this compound has cognition enhancing effects. These data further support the potential of alpha5-containing GABA(A) receptors as a target for novel cognition enhancing drugs.
对化合物L-655,708的体外和体内特性进行了进一步研究,该化合物对含有α5亚基而非α1、α2或α3亚基的GABA(A)受体具有更高的亲和力。该化合物在四种亚型中的每一种上都具有较弱的部分反向激动剂效力,但与结合数据一致,对α5亚型具有更高的功能亲和力。在小鼠海马切片模型中,L-655,708能够增强由θ波爆发刺激产生的长时程增强,这与α5亚型在涉及突触可塑性的过程(如学习和记忆)中的潜在作用一致。当以专门设计的制剂给药以实现相对恒定的血浆药物浓度,从而维持对含α5受体与含α1、α2和α3受体的选择性占据(分别为75±4%和22±10%)时,L-655,708并未改变诱发癫痫所需的戊四氮剂量,表明L-655,708在α5亚型上的反向激动剂作用与惊厥易感性无关。在莫里斯水迷宫实验中,L-655,708不仅在获取过程中而且在探测试验中都增强了表现,表明该化合物具有认知增强作用。这些数据进一步支持了含α5的GABA(A)受体作为新型认知增强药物靶点的潜力。