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Genetically driven brain serotonin deficiency facilitates panic-like escape behavior in mice.

Translational psychiatry (2017-10-04)
J Waider, S Popp, M D Lange, R Kern, J F Kolter, J Kobler, N C Donner, K R Lowe, J H Malzbender, C J Brazell, M R Arnold, B Aboagye, A Schmitt-Böhrer, C A Lowry, H C Pape, K P Lesch
ZUSAMMENFASSUNG

Multiple lines of evidence implicate brain serotonin (5-hydroxytryptamine; 5-HT) system dysfunction in the pathophysiology of stressor-related and anxiety disorders. Here we investigate the influence of constitutively deficient 5-HT synthesis on stressor-related anxiety-like behaviors using Tryptophan hydroxylase 2 (Tph2) mutant mice. Functional assessment of c-Fos after associated foot shock, electrophysiological recordings of GABAergic synaptic transmission, differential expression of the Slc6a4 gene in serotonergic neurons were combined with locomotor and anxiety-like measurements in different contextual settings. Our findings indicate that constitutive Tph2 inactivation and consequential lack of 5-HT synthesis in Tph2 null mutant mice (Tph2

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DNQX, ≥98% (TLC)