The effects of acute and chronic administration of fluoxetine on the basal and stress-induced increases in cerebrocortical and plasma concentrations of allopregnanolone (3?,5?-tetrahydroprogesterone; 3?,5?-TH PROG) and tetrahydrodeoxycorticosterone (3?,5?-TH DOC) were compared with those of mirtazapine, an antidepressant that (unlike fluoxetine) is not a selective serotonin reuptake inhibitor. A single injection (20 mg/kg i.p.) of fluoxetine or mirtazapine resulted in significant increases in the cerebrocortical and plasma concentrations of 3?,5?-TH PROG and 3,5?-TH DOC. In contrast, long-term administration (10 mg/kg i.p., once daily for 2 weeks) of fluoxetine, but not that of mirtazapine, induced marked decreases in the cortical and plasma concentrations of these neuroactive steroids. Chronic treatment with fluoxetine, however, did not inhibit the increases in the cortical and plasma concentrations of 3?,5?-TH PROG and 3?,5?-TH DOC induced by acute foot-shock stress. In contrast, chronic treatment with mirtazapine prevented or significantly reduced the stress-induced increases in neurosteroid concentrations in the cerebral cortex and plasma, respectively. These results show that mirtazapine, similar to fluoxetine, initially increases the cortical concentration of neuroactive steroids; however, chronic administration of this drug modulates the plasma and brain availability of these hormones in a manner distinct from that of fluoxetine.

Prevention of the stress-induced increase in the concentration of neuroactive steroids in rat brain by long-term administration of mirtazapine but not of fluoxetine

Pisu;
2002

Abstract

The effects of acute and chronic administration of fluoxetine on the basal and stress-induced increases in cerebrocortical and plasma concentrations of allopregnanolone (3?,5?-tetrahydroprogesterone; 3?,5?-TH PROG) and tetrahydrodeoxycorticosterone (3?,5?-TH DOC) were compared with those of mirtazapine, an antidepressant that (unlike fluoxetine) is not a selective serotonin reuptake inhibitor. A single injection (20 mg/kg i.p.) of fluoxetine or mirtazapine resulted in significant increases in the cerebrocortical and plasma concentrations of 3?,5?-TH PROG and 3,5?-TH DOC. In contrast, long-term administration (10 mg/kg i.p., once daily for 2 weeks) of fluoxetine, but not that of mirtazapine, induced marked decreases in the cortical and plasma concentrations of these neuroactive steroids. Chronic treatment with fluoxetine, however, did not inhibit the increases in the cortical and plasma concentrations of 3?,5?-TH PROG and 3?,5?-TH DOC induced by acute foot-shock stress. In contrast, chronic treatment with mirtazapine prevented or significantly reduced the stress-induced increases in neurosteroid concentrations in the cerebral cortex and plasma, respectively. These results show that mirtazapine, similar to fluoxetine, initially increases the cortical concentration of neuroactive steroids; however, chronic administration of this drug modulates the plasma and brain availability of these hormones in a manner distinct from that of fluoxetine.
2002
3alpha hydroxy 5alpha pregnan 20 one
antidepressant agent
fluoxetine
mirtazapine
serotonin uptake inhibitor
steroid
tetrahydrocortisone
4 aminobutyric acid A receptor
alpha adrenergic receptor blocking agent
deoxycorticosterone
drug derivative
eltanolone
mianserin
tetrahydrodeoxycorticosterone
animal experiment
animal model
article
brain cortex
controlled study
long term exposure
male
nonhuman
plasma
priority journal
rat
stress
animal
blood
brain level
drug effect
electric shock
high performance liquid chromatography
mental stress
metabolism
physiology
Sprague Dawley rat
Adrenergic alpha-Antagonists
Animal
Antidepressive Agents
Second-Generation
Brain Chemistry
Cerebral Cortex
Chromatography
High Pressure Liquid
Desoxycorticosterone
Electroshock
Fluoxetine
Male
Mianserin
Pregnanolone
Rats
Rats
Sprague-Dawley
Receptors
GABA-A
Steroids
Stre
Psychological
Animals
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/198733
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