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A Negative Allosteric Modulator for α5 Subunit-Containing GABA Receptors Exerts a Rapid and Persistent Antidepressant-Like Action without the Side Effects of the NMDA Receptor Antagonist Ketamine in Mice

机译:负α5亚基的GABA受体的变构调节剂在小鼠中表现出快速持久的抗抑郁样作用,而没有NMDA受体拮抗剂氯胺酮的副作用。

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摘要

New antidepressant pharmacotherapies that provide rapid relief of depressive symptoms are needed. The NMDA receptor antagonist ketamine exerts rapid antidepressant actions in depressed patients but also side effects that complicate its clinical utility. Ketamine promotes excitatory synaptic strength, likely by producing high-frequency correlated activity in mood-relevant regions of the forebrain. Negative allosteric modulators of GABA-A receptors containing α5 subunits (α5 GABA-NAMs) should also promote high-frequency correlated electroencephalogram (EEG) activity and should therefore exert rapid antidepressant responses. Because α5 subunits display a restricted expression in the forebrain, we predicted that α5 GABA-NAMs would produce activation of principle neurons but exert fewer side effects than ketamine. We tested this hypothesis in male mice and observed that the α5 GABA-NAM MRK-016 exerted an antidepressant-like response in the forced swim test at 1 and 24 h after administration and an anti-anhedonic response after chronic stress in the female urine sniffing test (FUST). Like ketamine, MRK-016 produced a transient increase in EEG γ power, and both the increase in γ power and its antidepressant effects in the forced swim test were blocked by prior administration of the AMPA-type glutamate receptor antagonist 2,3-dioxo-6-nitro-1,2,3,4-tetrahydrobenzo[f]quinoxaline-7-sulfonamide (NBQX). Unlike ketamine, however, MRK-016 produced no impairment of rota-rod performance, no reduction of prepulse inhibition (PPI), no conditioned-place preference (CPP), and no change in locomotion. α5 GABA-NAMs, thus reproduce the rapid antidepressant-like actions of ketamine, perhaps via an AMPA receptor (AMPAR)-dependent increase in coherent neuronal activity, but display fewer potential negative side effects. These compounds thus demonstrate promise as clinically useful fast-acting antidepressants.
机译:需要能够快速缓解抑郁症状的新的抗抑郁药物治疗。 NMDA受体拮抗剂氯胺酮可在抑郁症患者中发挥快速的抗抑郁作用,但其副作用也使其临床用途复杂化。氯胺酮可增强兴奋性突触强度,可能是通过在前脑的情绪相关区域产生高频率的-相关活动。包含α5亚基(α5GABA-NAM)的GABA-A受体的负变构调节剂也应促进高-频率相关脑电图 EEG)活性,因此应发挥快速的抗抑郁反应。因为α5亚基在前脑中显示受限的表达,所以我们预测α5GABA-NAMs会产生主要神经元的激活,但比氯胺酮产生的副作用要少。我们在雄性小鼠中验证了这一假设,并观察到α5GABA-NAM MRK-016在施用后1和24小时的强迫游泳试验中表现出抗抑郁样反应,在雌性尿液嗅觉中出现慢性应激后产生了抗无痛反应测试(FUST)。像氯胺酮一样,MRK-016产生短暂的脑电图γ功率增加,并且在强制游泳试验中,γ功率增加及其抗抑郁作用均被AMPA型谷氨酸受体拮抗剂2,3-二氧- 6-硝基-1,2,3,4-四氢苯并[f]喹喔啉-7-磺酰胺(NBQX)。但是,与氯胺酮不同,MRK-016不会产生旋转杆性能受损,不会降低脉冲前抑制(PPI),不会产生条件性的-位置偏好(CPP),并且运动不会发生变化。因此,α5GABA-NAMs可能通过依赖于AMPA受体(AMPAR)的相干神经元活动的增加,重现氯胺酮的快速抗抑郁样作用,但显示出较少的潜在副作用。因此,这些化合物被证明是临床上有用的速效抗抑郁药。

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