首页> 外文期刊>Advances in pharmacological sciences >Chronic Treatment with a Promnesiant GABA-A α5-Selective Inverse Agonist Increases Immediate Early Genes Expression during Memory Processing in Mice and Rectifies Their Expression Levels in a Down Syndrome Mouse Model.
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Chronic Treatment with a Promnesiant GABA-A α5-Selective Inverse Agonist Increases Immediate Early Genes Expression during Memory Processing in Mice and Rectifies Their Expression Levels in a Down Syndrome Mouse Model.

机译:用Promeganesiant GABA-Aα5选择性逆激动剂进行的慢性治疗可增加小鼠记忆处理期间早期早期基因的表达,并纠正唐氏综合症小鼠模型中的表达水平。

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摘要

Decrease of GABAergic transmission has been proposed to improve memory functions. Indeed, inverse agonists selective for α5 GABA-A-benzodiazepine receptors (α5IA) have promnesiant activity. Interestingly, we have recently shown that α5IA can rescue cognitive deficits in Ts65Dn mice, a Down syndrome mouse model with altered GABAergic transmission. Here, we studied the impact of chronic treatment with α5IA on gene expression in the hippocampus of Ts65Dn and control euploid mice after being trained in the Morris water maze task. In euploid mice, chronic treatment with α5IA increased IEGs expression, particularly of c-Fos and Arc genes. In Ts65Dn mice, deficits of IEGs activation were completely rescued after treatment with α5IA. In addition, normalization of Sod1 overexpression in Ts65Dn mice after α5IA treatment was observed. IEG expression regulation after α5IA treatment following behavioral stimulation could be a contributing factor for both the general promnesiant activity of α5IA and its rescuing effect in Ts65Dn mice alongside signaling cascades that are critical for memory consolidation and cognition.
机译:已经提出减少GABA能传递来改善记忆功能。实际上,对α5GABA-A-苯并二氮杂receptor受体(α5IA)具有选择性的反向激动剂具有预兆活性。有趣的是,我们最近发现,α5IA可以挽救Ts65Dn小鼠的认知缺陷,该小鼠是具有改变的GABA能传递的唐氏综合症小鼠模型。在这里,我们研究了在接受莫里斯水迷宫任务训练后,α5IA长期治疗对Ts65Dn和对照整倍体小鼠海马中基因表达的影响。在整倍体小鼠中,用α5IA进行慢性治疗可增加IEGs的表达,尤其是c-Fos和Arc基因的表达。在Ts65Dn小鼠中,用α5IA治疗后,IEGs激活的缺陷得以完全消除。另外,观察到α5IA治疗后Ts65Dn小鼠中Sod1过表达的正常化。行为刺激后,α5IA处理后IEG的表达调节可能是α5IA的一般预兆活性及其在Ts65Dn小鼠中的挽救作用以及对记忆巩固和认知至关重要的信号级联的一个促成因素。

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