Proteomics

Dataset Information

0

Fluoxetine triggers synaptic vesicle exo/endocytosis, mitochondrial energy metabolism and dynamics in hippocampus of socially isolated rats


ABSTRACT: We used comparative proteomic approach to identify proteome changes in purified synaptic terminals (synaptosomes) of rats exposed to chronic social isolation (CSIS) (6 weeks), animal model for depression, followed by chronic Fluoxetine treatment (last 3 weeks of CSIS) (therapeutic effect). Our aim was to examine a subcellular compartment enriched in proteins involved in synaptic function.

INSTRUMENT(S): LTQ Orbitrap

ORGANISM(S): Rattus Norvegicus (rat)

TISSUE(S): Brain, Electrically Active Cell

DISEASE(S): Depression

SUBMITTER: Victor Costina  

LAB HEAD: Peter Findeisen

PROVIDER: PXD028816 | Pride | 2023-03-11

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Synaptosol_control_1.msf Msf
Synaptosol_control_1.zip Other
Synaptosol_control_2.msf Msf
Synaptosol_control_2.zip Other
Synaptosol_control_fluoxetine_1.msf Msf
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Publications

Fluoxetine Enhances Synaptic Vesicle Trafficking and Energy Metabolism in the Hippocampus of Socially Isolated Rats.

Filipović Dragana D   Costina Victor V   Findeisen Peter P   Inta Dragos D  

International journal of molecular sciences 20221205 23


Chronic social isolation (CSIS)-induced alternation in synaptic and mitochondrial function of specific brain regions is associated with major depressive disorder (MDD). Despite the wide number of available medications, treating MDD remains an important challenge. Although fluoxetine (Flx) is the most frequently prescribed antidepressant, its mode of action is still unknown. To delineate affected molecular pathways of depressive-like behavior and identify potential targets upon Flx treatment, we  ...[more]

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