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J Psychopharmacol ; 25(8): 1030-42, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21693554

ABSTRACT

An imbalance between inhibitory and excitatory neurotransmission has been proposed to contribute to altered brain function in individuals with Down syndrome (DS). Gamma-aminobutyric acid (GABA) is the major inhibitory neurotransmitter in the central nervous system and accordingly treatment with GABA-A antagonists can efficiently restore cognitive functions of Ts65Dn mice, a genetic model for DS. However, GABA-A antagonists are also convulsant which preclude their use for therapeutic intervention in DS individuals. Here, we have evaluated safer strategies to release GABAergic inhibition using a GABA-A-benzodiazepine receptor inverse agonist selective for the α5-subtype (α5IA). We demonstrate that α5IA restores learning and memory functions of Ts65Dn mice in the novel-object recognition and in the Morris water maze tasks. Furthermore, we show that following behavioural stimulation, α5IA enhances learning-evoked immediate early gene products in specific brain regions involved in cognition. Importantly, acute and chronic treatments with α5IA do not induce any convulsant or anxiogenic effects that are associated with GABA-A antagonists or non-selective inverse agonists of the GABA-A-benzodiazepine receptors. Finally, chronic treatment with α5IA did not induce histological alterations in the brain, liver and kidney of mice. Our results suggest that non-convulsant α5-selective GABA-A inverse agonists could improve learning and memory deficits in DS individuals.


Subject(s)
Down Syndrome/drug therapy , GABA-A Receptor Agonists/pharmacology , Phthalazines/pharmacology , Receptors, GABA-A/drug effects , Triazoles/pharmacology , Animals , Brain/drug effects , Brain/metabolism , Cognition Disorders/drug therapy , Cognition Disorders/etiology , Disease Models, Animal , Down Syndrome/physiopathology , Drug Delivery Systems , Drug Inverse Agonism , GABA-A Receptor Agonists/administration & dosage , GABA-A Receptor Agonists/toxicity , Male , Maze Learning/drug effects , Memory/drug effects , Mice , Mice, Inbred C3H , Mice, Inbred C57BL , Phthalazines/administration & dosage , Phthalazines/toxicity , Receptors, GABA-A/metabolism , Triazoles/administration & dosage , Triazoles/toxicity
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