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1.
J Pharm Pharmacol ; 71(12): 1774-1783, 2019 Dec.
Article in English | MEDLINE | ID: mdl-31608449

ABSTRACT

OBJECTIVES: Based on this, the central therapeutic effects of thymol were verified in the neurotrophic pathway. METHODS: Female swiss mice were divided into four groups: control, corticosterone (Cort), thymol (Cort + thymol) and fluvoxamine (Cort + Flu). The administration of corticosterone was used to induce depressive symptoms for 23 days. After the treatment, the animals were exposed the behavioural tests, such as forced swimming test, tail suspension test, sucrose preference test, light/dark test, social interaction test, Y-maze test, plus-maze test and hole-board test. The hippocampus was also removed, and BDNF was measured by ELISA and Western blot. KEY FINDINGS: As a result, thymol and fluvoxamine were able to reverse the depressive symptoms, as well as to improve the anxious frame. The anhedonic and short-term memory was restored with the treatment. In the neurochemical tests, both thymol and fluvoxamine restored BDNF levels, improving the depressive condition. CONCLUSIONS: This work opens up new investigations aiming at the use of this molecule as a therapeutic alternative for treating depression disorders.


Subject(s)
Antidepressive Agents/pharmacology , Brain-Derived Neurotrophic Factor/metabolism , Depression/drug therapy , Thymol/pharmacology , Animals , Behavior, Animal/drug effects , Corticosterone/administration & dosage , Disease Models, Animal , Female , Fluvoxamine/pharmacology , Hippocampus/drug effects , Hippocampus/metabolism , Maze Learning/drug effects , Mice , Up-Regulation/drug effects
2.
J Psychiatr Res ; 84: 49-58, 2017 01.
Article in English | MEDLINE | ID: mdl-27697587

ABSTRACT

Immune dysregulation observed in schizophrenia alters tryptophan metabolism. Tryptophan metabolism is triggered by indoleamine 2,3-dioxygenase (IDO) and tryptophan 2,3-dioxygenase (TDO). Tryptophan is converted to quinolinic acid, a potent neurotoxin, and to kynurenic acid, an NMDA antagonist. 1-Methyl-D-tryptophan (MDT) inhibits IDO. Melatonin is metabolized by IDO while inhibiting TDO. We evaluated the reversal of ketamine-induced schizophrenia-like behavioral and neurochemical alterations in mice by the administration of MDT (20 or 40 mg/kg, i.p.) or melatonin (15 mg/kg, per os). Oxidative stress and inflammatory alterations, i.e. myeloperoxidase activity (MPO), reduced glutathione (GSH), lipid peroxidation (LPO) and interleukin (IL)-4 and IL-6 were measured in the prefrontal cortex (PFC), hippocampus and striatum. Risperidone was used as standard antipsychotic. Ketamine triggered positive- (PPI deficits and hyperlocomotion), cognitive- (working memory deficits) and negative (social interaction deficits) schizophrenia-like symptoms. These symptoms were accompanied by increased MPO activity, decreased GSH and increased LPO in all brain areas and increments in hippocampal IL-4 and IL-6. MDT and melatonin reversed all ketamine-induced behavioral alterations. Risperidone did not reverse working memory deficits. MDT and melatonin reversed alterations in MPO activity and GSH levels. LP was reversed only by melatonin and risperidone. Risperidone could not reverse MPO alterations in the PFC and striatum. All drugs reversed the alterations in IL-4 and IL-6. The hippocampus and striatum of ketamine+melatonin-treated animals had lower levels of IL-6. Our findings provide further preclinical evidence that immune-inflammatory and oxidative pathways are involved in schizophrenia and that targeting these pathways is a valid treatment option in schizophrenia.


Subject(s)
Antipsychotic Agents/pharmacology , Immunologic Factors/pharmacology , Schizophrenia/drug therapy , Schizophrenia/immunology , Schizophrenic Psychology , Tryptophan/analogs & derivatives , Animals , Brain/drug effects , Brain/immunology , Disease Models, Animal , Immunomodulation , Interleukin-4/metabolism , Interleukin-6/metabolism , Ketamine , Male , Melatonin/pharmacology , Mice , Neuroimmunomodulation/drug effects , Neuroimmunomodulation/physiology , Random Allocation , Risperidone/pharmacology , Tryptophan/pharmacology
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