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1.
Behav Brain Funct ; 8: 30, 2012 Jun 11.
Article in English | MEDLINE | ID: mdl-22686184

ABSTRACT

BACKGROUND: Previous studies have demonstrated a profound lack of habituation in 129P3 mice compared to the habituating, but initially more anxious, BALB/c mice. The present study investigated whether this non-adaptive phenotype of 129P3 mice is primarily based on anxiety-related characteristics. METHODS: To test this hypothesis and extend our knowledge on the behavioural profile of 129P3 mice, the effects of the anxiolyticdiazepam (1, 3 and 5 mg/kg) and the putative anxiolytic metabotropic glutamate receptor 5 (mGlu5R) antagonist 2-methyl-6-(phenylethynyl)pyridine (MPEP, 3, 10 and 30 mg/kg) treatment on within-trial (intrasession) habituation, object recognition (diazepam: 1 mg/kg; MPEP 10 mg/kg) and on the central-nervous expression of the immediate early gene c-Fos (diazepam: 1 mg/kg; MPEP 10 mg/kg) were investigated. RESULTS: Behavioural findings validated the initially high, but habituating phenotype of BALB/c mice, while 129P3 mice were characterized by impaired intrasession habituation. Diazepam had an anxiolytic effect in BALB/c mice, while in higher doses caused behavioural inactivity in 129P3 mice. MPEP revealed almost no anxiolytic effects on behaviour in both strains, but reduced stress-induced corticosterone responses only in 129P3 mice. These results were complemented by reduced expression of c-Fos after MPEP treatment in brain areas related to emotional processes, and increased c-Fos expression in higher integrating brain areas such as the prelimbic cortex compared to vehicle-treated 129P3 mice. CONCLUSIONS: These results suggest that the strain differences observed in (non)adaptive anxiety behaviour are at least in part mediated by differences in gamma-aminobutyric acid- A and mGluR5 mediated transmission.


Subject(s)
Avoidance Learning/drug effects , Avoidance Learning/physiology , Diazepam/pharmacology , Habituation, Psychophysiologic/drug effects , Habituation, Psychophysiologic/genetics , Pyridines/pharmacology , Animals , Male , Mice , Mice, 129 Strain , Mice, Inbred BALB C , Mice, Inbred Strains , Random Allocation
2.
Neurosci Biobehav Rev ; 36(1): 379-403, 2012 Jan.
Article in English | MEDLINE | ID: mdl-21810442

ABSTRACT

Spatial learning and memory tasks have captured a solid position in neuroscience research. A variety of holeboard-type tasks are suitable for investigating the effects of a broad range of experimental manipulations on spatial learning and memory in a broad range of species, including fish, rodents, cats, pigs, tupaias, and humans. We summarize the concepts and procedures underlying tests of spatial discrimination learning, with special emphasis on holeboard-type tasks and task-specific characteristics. Holeboard-type tasks enable a broad range of mnemonic and cognitive variables to be measured in parallel, including cognitive processes such as habituation processes, spatial working and reference memory, and search strategies, but also non-cognitive variables, such as exploration, anxiety-related behavior, and stereotypies. These tasks are sensitive to a large number of naturally occurring differences (e.g. strain differences and age effects) and to the effects of non-genetic (e.g. specific brain lesions, stress, treatment with cognition impairers or cognition enhancers) and genetic experimental manipulations. In conclusion, holeboard-type tasks provide powerful tools to investigate multiple aspects of spatial orientation behavior in the same experimental setup. Cross-species comparison of holeboard performance shows the potential for translational studies.


Subject(s)
Appetitive Behavior/physiology , Discrimination Learning/physiology , Memory/physiology , Motivation , Space Perception/physiology , Animals , Cats , Discrimination, Psychological , Exploratory Behavior , Humans , Maze Learning , Spatial Behavior/physiology
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