Memory modulation by brain benzodiazepines
Braz. j. med. biol. res
;
24(9): 865-81, Sept. 1991. tab
Artículo
en Inglés
| LILACS
| ID: lil-102093
ABSTRACT
1. Recent evidence indicates that post-training memory processes are down-regulated by benzodiazepine/GABA-A systems inthe amygdala, septum and hippocampus. Havituation and avoidance learning are accompanied by a decrease of benzodiazepine-like immunoreactivity in the three structures, explainable by a release of benzodiazepines. Immediate post-training microinjection of the benzodiazepine antagonist flumazenil into the hippocampus enhances retention of habituation. The post-training administration of glumazenil into any of the three structures enhances relation of avoidance learning. 2. The mode of operation of these systems was studied in detail in the amygdala using avoidance paradigms. The release of endogenous benzodiazepines during and particularly after training enhances sensitivity of local GABA-A receptors to muscimol, activation of the GABA-A receptors opens chloride channels that can be selectively blocked by picrotoxin and by Ro-4864. Training enhances, and fluazenil reduces, sensitivity of the amygdala to the amnestic effect of locally injected muscimol by a factor of 100. Post-training intra-amygdala administration of picrotoxin or Ro5-4864 enhances retention. 3. These findings suggest that the endogenous benzoidiazepine/GABA-A mechanisms that down-regulate memory int he amygdala, septum and hippocampus are activated in response to the anxiety and/or stress associated with each task. Memory lability which occurs in the psot-training period and characterizes consolidation would thus be a consequence of the brain's response to anxiety or stress
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Índice:
LILACS (Américas)
Asunto principal:
Benzodiazepinas
/
Cerebro
/
Memoria
Límite:
Animales
Idioma:
Inglés
Revista:
Braz. j. med. biol. res
Asunto de la revista:
Biologia
/
Medicina
Año:
1991
Tipo del documento:
Artículo
/
Documento de proyecto
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