Stress-Evoked Tyrosine Phosphorylation of Signal Regulatory Protein Regulates Behavioral Immobility in the Forced Swim Test

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Stress-evoked tyrosine phosphorylation of signal regulatory protein α regulates behavioral immobility in the forced swim test.

Severe stress induces changes in neuronal function that are implicated in stress-related disorders such as depression. The molecular mechanisms underlying the response of the brain to stress remain primarily unknown, however. Signal regulatory protein alpha (SIRPalpha) is an Ig-superfamily protein that undergoes tyrosine phosphorylation and binds the protein tyrosine phosphatase Shp2. Here we s...

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An anti-immobility effect of spermine in the forced swim test in mice.

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Immobility stress induces depression-like behavior in the forced swim test in mice: effect of magnesium and imipramine.

Previously, we demonstrated antidepressant-like effect of magnesium (Mg) in the forced swim test (FST). Moreover, the joint administration of Mg and imipramine (IMI) at ineffective doses per se, resulted in a potent reduction in the immobility time in this test. In the present study, we examined the effect of immobility stress (IS), and Mg and/or IMI administration on FST behavior. IS induced e...

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Antisense to the glucocorticoid receptor in hippocampal dentate gyrus reduces immobility in forced swim test.

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The mouse forced swim test.

The forced swim test is a rodent behavioral test used for evaluation of antidepressant drugs, antidepressant efficacy of new compounds, and experimental manipulations that are aimed at rendering or preventing depressive-like states. Mice are placed in an inescapable transparent tank that is filled with water and their escape related mobility behavior is measured. The forced swim test is straigh...

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ژورنال

عنوان ژورنال: Journal of Neuroscience

سال: 2010

ISSN: 0270-6474,1529-2401

DOI: 10.1523/jneurosci.0257-10.2010