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The Antidepressant-like Effect of Flavonoids from Trigonella Foenum-Graecum Seeds in Chronic Restraint Stress Mice via Modulation of Monoamine Regulatory Pathways
by
Wang, Jiancheng
, Xin, Chao
, Wang, Zhenyu
, Cheng, Cuilin
in
Animals
/ Antidepressive Agents - chemistry
/ Antidepressive Agents - therapeutic use
/ Behavior
/ Behavior, Animal
/ Binding sites
/ Body Weight - drug effects
/ Brain
/ Chromatography, Liquid
/ Corticosterone - blood
/ depression
/ Disease Models, Animal
/ DNA-Binding Proteins - blood
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - therapeutic use
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Hypothalamus
/ KLF11
/ Male
/ Mental depression
/ Metabolites
/ Mice
/ monoamine neurotransmitters
/ Monoamine Oxidase - blood
/ monoamine oxidase A
/ Neurotransmitter Agents - chemistry
/ Neurotransmitter Agents - therapeutic use
/ Neurotransmitters
/ Plant Extracts - chemistry
/ Prefrontal Cortex - drug effects
/ Prefrontal Cortex - metabolism
/ Protein expression
/ Proteins
/ Seeds
/ Seeds - chemistry
/ SIRT1
/ Sirtuin 1 - blood
/ Spleen
/ Stress
/ Sucrose
/ Tandem Mass Spectrometry
/ Thymus gland
/ Transcription Factors - blood
/ Trigonella - chemistry
2019
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The Antidepressant-like Effect of Flavonoids from Trigonella Foenum-Graecum Seeds in Chronic Restraint Stress Mice via Modulation of Monoamine Regulatory Pathways
by
Wang, Jiancheng
, Xin, Chao
, Wang, Zhenyu
, Cheng, Cuilin
in
Animals
/ Antidepressive Agents - chemistry
/ Antidepressive Agents - therapeutic use
/ Behavior
/ Behavior, Animal
/ Binding sites
/ Body Weight - drug effects
/ Brain
/ Chromatography, Liquid
/ Corticosterone - blood
/ depression
/ Disease Models, Animal
/ DNA-Binding Proteins - blood
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - therapeutic use
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Hypothalamus
/ KLF11
/ Male
/ Mental depression
/ Metabolites
/ Mice
/ monoamine neurotransmitters
/ Monoamine Oxidase - blood
/ monoamine oxidase A
/ Neurotransmitter Agents - chemistry
/ Neurotransmitter Agents - therapeutic use
/ Neurotransmitters
/ Plant Extracts - chemistry
/ Prefrontal Cortex - drug effects
/ Prefrontal Cortex - metabolism
/ Protein expression
/ Proteins
/ Seeds
/ Seeds - chemistry
/ SIRT1
/ Sirtuin 1 - blood
/ Spleen
/ Stress
/ Sucrose
/ Tandem Mass Spectrometry
/ Thymus gland
/ Transcription Factors - blood
/ Trigonella - chemistry
2019
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The Antidepressant-like Effect of Flavonoids from Trigonella Foenum-Graecum Seeds in Chronic Restraint Stress Mice via Modulation of Monoamine Regulatory Pathways
by
Wang, Jiancheng
, Xin, Chao
, Wang, Zhenyu
, Cheng, Cuilin
in
Animals
/ Antidepressive Agents - chemistry
/ Antidepressive Agents - therapeutic use
/ Behavior
/ Behavior, Animal
/ Binding sites
/ Body Weight - drug effects
/ Brain
/ Chromatography, Liquid
/ Corticosterone - blood
/ depression
/ Disease Models, Animal
/ DNA-Binding Proteins - blood
/ Flavonoids
/ Flavonoids - chemistry
/ Flavonoids - therapeutic use
/ Hippocampus - drug effects
/ Hippocampus - metabolism
/ Hypothalamus
/ KLF11
/ Male
/ Mental depression
/ Metabolites
/ Mice
/ monoamine neurotransmitters
/ Monoamine Oxidase - blood
/ monoamine oxidase A
/ Neurotransmitter Agents - chemistry
/ Neurotransmitter Agents - therapeutic use
/ Neurotransmitters
/ Plant Extracts - chemistry
/ Prefrontal Cortex - drug effects
/ Prefrontal Cortex - metabolism
/ Protein expression
/ Proteins
/ Seeds
/ Seeds - chemistry
/ SIRT1
/ Sirtuin 1 - blood
/ Spleen
/ Stress
/ Sucrose
/ Tandem Mass Spectrometry
/ Thymus gland
/ Transcription Factors - blood
/ Trigonella - chemistry
2019
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The Antidepressant-like Effect of Flavonoids from Trigonella Foenum-Graecum Seeds in Chronic Restraint Stress Mice via Modulation of Monoamine Regulatory Pathways
Journal Article
The Antidepressant-like Effect of Flavonoids from Trigonella Foenum-Graecum Seeds in Chronic Restraint Stress Mice via Modulation of Monoamine Regulatory Pathways
2019
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Overview
Fenugreek (Trigonella Foenum-Graecum) seeds flavonoids (FSF) have diverse biological activities, while the antidepressant-like effect of FSF has been seldom explored. The aim of this study was to evaluate the antidepressant-like effect of FSF and to identify the potential molecular mechanisms. LC-MS/MS was used for the determination of FSF. Chronic restraint stress (CRS) was used to establish the animal model of depression. Observation of exploratory behavior in the forced swimming test (FST), tail suspension test (TST) and sucrose preference test (SPT) indicated the stress level. The serum corticosterone (CORT) level was measured. The monoamine neurotransmitters (5-HT, NE and DA) and their metabolites, as well as monoamine oxidase A (MAO-A) enzyme activity in the prefrontal cortex, hippocampus and striatum, were evaluated. The protein expression levels of KLF11, SIRT1, MAO-A were also determined by western blot analysis. The results showed that FSF treatment significantly reversed the CRS-induced behavioral abnormalities, including reduced sucrose preference and increased immobility time. FSF administration markedly restored CRS induced changes in concentrations of serum corticosterone, prefrontal cortex neurotransmitters (NE, 5-HT and DA), hippocampus neurotransmitters (NE, 5-HT and DA) and striatum neurotransmitters (NE). FSF treatment exhibited significant inhibition of MAO-A activity in the prefrontal cortex and hippocampus. FSF also significantly down-regulated the KLF11, SIRT1 and MAO-A protein expression levels in the prefrontal cortex and hippocampus. These findings indicate that FSF could exhibit an antidepressant-like effect by down-regulating the KLF11/SIRT1-MAO-A pathways, inhibiting MAO-A expression and activity, as well as up-regulating monoamine neurotransmitters levels.
Publisher
MDPI AG,MDPI
Subject
/ Antidepressive Agents - chemistry
/ Antidepressive Agents - therapeutic use
/ Behavior
/ Brain
/ DNA-Binding Proteins - blood
/ Flavonoids - therapeutic use
/ KLF11
/ Male
/ Mice
/ Neurotransmitter Agents - chemistry
/ Neurotransmitter Agents - therapeutic use
/ Prefrontal Cortex - drug effects
/ Prefrontal Cortex - metabolism
/ Proteins
/ Seeds
/ SIRT1
/ Spleen
/ Stress
/ Sucrose
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