1.L-Tetrahydropalmatine Ameliorates Development of Anxiety and Depression-Related Symptoms Induced by Single Prolonged Stress in Rats.
Bombi LEE ; Bongjun SUR ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2014;22(3):213-222
Abnormal adaptation of the stress-response system following traumatic stress can lead to alterations in the hypothalamic-pituitary-adrenal (HPA) axis that may contribute to the development of post-traumatic stress disorder (PTSD). The present study used several behavioral tests to investigate the anxiolytic-like and antidepressant activity of L-tetrahydropalmatine (L-THP) in an experimental rat model of anxiety and depression induced by single prolonged stress (SPS), an animal model of PTSD. Male rats were treated intraperitoneally (i.p.) with vehicle or varied doses of THP 30 min prior to SPS for 8 consecutive days. Daily THP (50 mg/kg) administration significantly increased the number and duration of open arm visits in the elevated plus maze (EPM) test, reduced the anxiety index, increased the risk assessment, and increased the number of head dips over the borders of the open arms after SPS. THP was also associated with increased time spent at the center of the open field, reduced grooming behaviors in the EPM test, and reduced time spent immobile in the forced swimming test (FST). It also blocked the decrease in neuropeptide Y (NPY) and the increase in corticotrophin-releasing factor (CRF) expression in the hypothalamus. This is the first study to determine that THP exerts pronounced anxiolytic-like and antidepressant effects on the development of the behavioral and biochemical symptoms associated with PTSD, indicating its prophylactic potential. Thus, THP reversed several behavioral impairments triggered by the traumatic stress of SPS and is a potential non-invasive therapeutic intervention for PTSD.
Animals
;
Anxiety*
;
Arm
;
Axis, Cervical Vertebra
;
Depression
;
Grooming
;
Head
;
Humans
;
Hypothalamus
;
Male
;
Models, Animal
;
Neuropeptide Y
;
Physical Exertion
;
Rats*
;
Risk Assessment
;
Stress Disorders, Post-Traumatic
2.Berberine alleviates symptoms of anxiety by enhancing dopamine expression in rats with post-traumatic stress disorder.
Bombi LEE ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
The Korean Journal of Physiology and Pharmacology 2018;22(2):183-192
Post-traumatic stress disorder (PTSD) is a trauma-induced psychiatric disorder characterized by impaired fear extermination, hyperarousal, anxiety, depression, and amnesic symptoms that may involve the release of monoamines in the fear circuit. The present study measured several anxiety-related behavioral responses to examine the effects of berberine (BER) on symptoms of anxiety in rats after single prolonged stress (SPS) exposure, and to determine if BER reversed the dopamine (DA) dysfunction. Rats received BER (10, 20, or 30 mg/kg, intraperitoneally, once daily) for 14 days after SPS exposure. BER administration significantly increased the time spent in the open arms and reduced grooming behavior during the elevated plus maze test, and increased the time spent in the central zone and the number of central zone crossings in the open field test. BER restored neurochemical abnormalities and the SPS-induced decrease in DA tissue levels in the hippocampus and striatum. The increased DA concentration during BER treatment may partly be attributed to mRNA expression of tyrosine hydroxylase and the DA transporter in the hippocampus, while BER exerted no significant effects on vesicular monoamine transporter mRNA expression in the hippocampus of rats with PTSD. These results suggest that BER had anxiolytic-like effects on behavioral and biochemical measures associated with anxiety. These findings support a role for reduced anxiety altered DAergic transmission and reduced anxiety in rats with PTSD. Thus, BER may be a useful agent to treat or alleviate psychiatric disorders like those observed in patients with PTSD.
Animals
;
Anxiety*
;
Arm
;
Berberine*
;
Depression
;
Dopamine*
;
Grooming
;
Hippocampus
;
Humans
;
Rats*
;
RNA, Messenger
;
Stress Disorders, Post-Traumatic*
;
Tyrosine 3-Monooxygenase
;
Vesicular Monoamine Transport Proteins
3.Tetramethylpyrazine reverses anxiety-like behaviors in a rat model of post-traumatic stress disorder.
Bombi LEE ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
The Korean Journal of Physiology and Pharmacology 2018;22(5):525-538
Post-traumatic stress disorder (PTSD) is a trauma-induced psychiatric disorder characterized by impaired fear extermination, hyperarousal, and anxiety that may involve the release of monoamines in the fear circuit. The reported pharmacological properties of tetramethylpyrazine (TMP) include anti-cancer, anti-diabetic, anti-atherosclerotic, and neuropsychiatric activities. However, the anxiolytic-like effects of TMP and its mechanism of action in PTSD are unclear. This study measured several anxiety-related behavioral responses to examine the effects of TMP on symptoms of anxiety in rats after single prolonged stress (SPS) exposure by reversing the serotonin (5-HT) and hypothalamic-pituitary-adrenal (HPA) axis dysfunction. Rats were given TMP (10, 20, or 40 mg/kg, i.p.) for 14 days after SPS exposure. Administration of TMP significantly reduced grooming behavior, increased the time spent and number of visits to the open arm in the elevated plus maze test, and significantly increased the number of central zone crossings in the open field test. TMP administration significantly reduced the freezing response to contextual fear conditioning and significantly restored the neurochemical abnormalities and the SPS-induced decrease in 5-HT tissue levels in the prefrontal cortex and hippocampus. The increased 5-HT concentration during TMP treatment might be partially attribute to the tryptophan and 5-hydroxyindoleacetic acid mRNA level expression in the hippocampus of rats with PTSD. These findings support a role for reducing the altered serotonergic transmission in rats with PTSD. TMP simultaneously attenuated the HPA axis dysfunction. Therefore, TMP may be useful for developing an agent for treating psychiatric disorders, such those observed in patients with PTSD.
Animals
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Anxiety
;
Arm
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Freezing
;
Grooming
;
Hippocampus
;
Humans
;
Models, Animal*
;
Prefrontal Cortex
;
Rats*
;
RNA, Messenger
;
Serotonin
;
Stress Disorders, Post-Traumatic*
;
Thymidine Monophosphate
;
Tryptophan
4.Inhibitory effect of carvacrol on lipopolysaccharide-induced memory impairment in rats
Bombi LEE ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae hyun HAHM
The Korean Journal of Physiology and Pharmacology 2020;24(1):27-37
Neuroinflammation is an important process underlying a wide variety of neurodegenerative diseases. Carvacrol (CAR) is a phenolic monoterpene commonly used as a food additive due to its antibacterial properties, but it has also been shown to exhibit strong antioxidative, anti-inflammatory, and neuroprotective effects. Here, we sought to investigate the effects of CAR on inflammation in the hippocampus and prefrontal cortex, as well as the molecular mechanisms underlying these effects. In our study, lipopolysaccharide was injected into the lateral ventricle of rats to induce memory impairment and neuroinflammation. Daily administration of CAR (25, 50, and 100 mg/kg) for 21 days improved recognition, discrimination, and memory impairments relative to untreated controls. CAR administration significantly attenuated expression of several inflammatory factors in the brain, including interleukin-1β, tumor necrosis factor-α, and cyclooxygenase-2. In addition, CAR significantly increased expression of brain-derived neurotrophic factor (BDNF) mRNA, and decreased expression of Toll-like receptor 4 (TLR4) mRNA. Taken together, these results show that CAR can improve memory impairment caused by neuroinflammation. This cognitive enhancement is due to the anti-inflammatory effects of CAR medicated by its regulation of BDNF and TLR4. Thus, CAR has significant potential as an inhibitor of memory degeneration in neurodegenerative diseases.
Animals
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Brain
;
Brain-Derived Neurotrophic Factor
;
Cyclooxygenase 2
;
Cytokines
;
Discrimination (Psychology)
;
Food Additives
;
Hippocampus
;
Inflammation
;
Lateral Ventricles
;
Lipopolysaccharides
;
Memory
;
Necrosis
;
Neurodegenerative Diseases
;
Neuroprotective Agents
;
Phenol
;
Prefrontal Cortex
;
Rats
;
RNA, Messenger
;
Toll-Like Receptor 4
5.Myricetin prevents sleep deprivation-induced cognitive impairment and neuroinflammation in rat brain via regulation of brain-derived neurotropic factor
The Korean Journal of Physiology and Pharmacology 2022;26(6):415-425
Memory formation in the hippocampus is formed and maintained by circadian clock genes during sleep. Sleep deprivation (SD) can lead to memory impairment and neuroinflammation, and there remains no effective pharmacological treatment for these effects. Myricetin (MYR) is a common natural flavonoid that has various pharmacological activities. In this study, we investigated the effects of MYR on memory impairment, neuroinflammation, and neurotrophic factors in sleepdeprived rats. We analyzed SD-induced cognitive and spatial memory, as well as pro-inflammatory cytokine levels during SD. SD model rats were intraperitoneally injected with 10 and 20 mg/kg/day MYR for 14 days. MYR administration significantly ameliorated SD-induced cognitive and spatial memory deficits; it also attenuated the SD-induced inflammatory response associated with nuclear factor kappa B activation in the hippocampus. In addition, MYR enhanced the mRNA expression of brainderived neurotropic factor (BDNF) in the hippocampus. Our results showed that MYR improved memory impairment by means of anti-inflammatory activity and appropriate regulation of BDNF expression. Our findings suggest that MYR is a potential functional ingredient that protects cognitive function from SD.
6.Chronic Administration of Catechin Decreases Depression and Anxiety-Like Behaviors in a Rat Model Using Chronic Corticosterone Injections.
Bombi LEE ; Bongjun SUR ; Sunoh KWON ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2013;21(4):313-322
Previous studies have demonstrated that repeated administration of the exogenous stress hormone corticosterone (CORT) induces dysregulation in the hypothalamic-pituitary-adrenal (HPA) axis and results in depression and anxiety. The current study sought to verify the impact of catechin (CTN) administration on chronic CORT-induced behavioral alterations using the forced swimming test (FST) and the elevated plus maze (EPM) test. Additionally, the effects of CTN on central noradrenergic systems were examined by observing changes in neuronal tyrosine hydroxylase (TH) immunoreactivity in rat brains. Male rats received 10, 20, or 40 mg/kg CTN (i.p.) 1 h prior to a daily injection of CORT for 21 consecutive days. The activation of the HPA axis in response to the repeated CORT injections was confirmed by measuring serum levels of CORT and the expression of corticotrophin-releasing factor (CRF) in the hypothalamus. Daily CTN administration significantly decreased immobility in the FST, increased open-arm exploration in the EPM test, and significantly blocked increases of TH expression in the locus coeruleus (LC). It also significantly enhanced the total number of line crossing in the open-field test (OFT), while individual differences in locomotor activities between experimental groups were not observed in the OFT. Taken together, these findings indicate that the administration of CTN prior to high-dose exogenous CORT significantly improves helpless behaviors, possibly by modulating the central noradrenergic system in rats. Therefore, CTN may be a useful agent for the treatment or alleviation of the complex symptoms associated with depression and anxiety disorders.
Animals
;
Anxiety
;
Anxiety Disorders
;
Axis, Cervical Vertebra
;
Brain
;
Catechin*
;
Corticosterone*
;
Depression*
;
Humans
;
Hypothalamus
;
Individuality
;
Locus Coeruleus
;
Male
;
Models, Animal*
;
Motor Activity
;
Neurons
;
Physical Exertion
;
Rats*
;
Tyrosine 3-Monooxygenase
7.Erratum to "L-Tetrahydropalmatine Ameliorates Development of Anxiety and Depression-Related Symptoms Induced by Single Prolonged Stress in Rats" Biomol. Ther. 22 (2014) 213-222.
Bombi LEE ; Bongjun SUR ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2014;22(5):474-474
In the article, incorrect images were placed in Fig. 8.
8.Ginsenoside Rg3 Alleviates Lipopolysaccharide-Induced Learning and Memory Impairments by Anti-Inflammatory Activity in Rats.
Bombi LEE ; Bongjun SUR ; Jinhee PARK ; Sung Hun KIM ; Sunoh KWON ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2013;21(5):381-390
The purpose of this study was to examine whether ginsenoside Rg3 (GRg3) could improve learning and memory impairments and inflammatory reactions induced by injecting lipopolysaccharide (LPS) into the brains of rats. The effects of GRg3 on proinflammatory mediators in the hippocampus and the underlying mechanisms of these effects were also investigated. Injection of LPS into the lateral ventricle caused chronic inflammation and produced deficits in learning in a memory-impairment animal model. Daily administration of GRg3 (10, 20, and 50 mg/kg, i.p.) for 21 consecutive days markedly improved the LPS-induced learning and memory disabilities demonstrated on the step-through passive avoidance test and Morris water maze test. GRg3 administration significantly decreased expression of pro-inflammatory mediators such as tumor necrosis factor-alpha, interleukin-1beta, and cyclooxygenase-2 in the hippocampus, as assessed by reverse transcription-polymerase chain reaction analysis and immunohistochemistry. Together, these findings suggest that GRg3 significantly attenuated LPS-induced cognitive impairment by inhibiting the expression of pro-inflammatory mediators in the rat brain. These results suggest that GRg3 may be effective for preventing or slowing the development of neurological disorders, including Alzheimer's disease, by improving cognitive and memory functions due to its anti-inflammatory activity in the brain.
Alzheimer Disease
;
Animals
;
Brain
;
Cyclooxygenase 2
;
Hippocampus
;
Immunohistochemistry
;
Inflammation
;
Interleukin-1beta
;
Lateral Ventricles
;
Learning*
;
Memory*
;
Models, Animal
;
Nervous System Diseases
;
Rats*
;
Tumor Necrosis Factor-alpha
;
Water
9.Wogonin Attenuates Hippocampal Neuronal Loss and Cognitive Dysfunction in Trimethyltin-Intoxicated Rats.
Bombi LEE ; Bongjun SUR ; Seong Guk CHO ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2016;24(3):328-337
We examined whether wogonin (WO) improved hippocampal neuronal activity, behavioral alterations and cognitive impairment, in rats induced by administration of trimethyltin (TMT), an organotin compound that is neurotoxic to these animals. The ability of WO to improve cognitive efficacy in the TMT-induced neurodegenerative rats was investigated using a passive avoidance test, and the Morris water maze test, and using immunohistochemistry to detect components of the acetylcholinergic system, brain-derived neurotrophic factor (BDNF), and cAMP-response element-binding protein (CREB) expression. Rats injected with TMT showed impairments in learning and memory and daily administration of WO improved memory function, and reduced aggressive behavior. Administration of WO significantly alleviated the TMT-induced loss of cholinergic immunoreactivity and restored the hippocampal expression levels of BDNF and CREB proteins and their encoding mRNAs to normal levels. These findings suggest that WO might be useful as a new therapy for treatment of various neurodegenerative diseases.
Animals
;
Brain-Derived Neurotrophic Factor
;
Cholinergic Neurons
;
Cognition Disorders
;
Cyclic AMP Response Element-Binding Protein
;
Immunohistochemistry
;
Learning
;
Memory
;
Neurodegenerative Diseases
;
Neurons*
;
Rats*
;
RNA, Messenger
;
Water
10.Effect of Beta-Asarone on Impairment of Spatial Working Memory and Apoptosis in the Hippocampus of Rats Exposed to Chronic Corticosterone Administration.
Bombi LEE ; Bongjun SUR ; Seong Guk CHO ; Mijung YEOM ; Insop SHIM ; Hyejung LEE ; Dae Hyun HAHM
Biomolecules & Therapeutics 2015;23(6):571-581
beta-asarone (BAS) is an active component of Acori graminei rhizoma, a traditional medicine used clinically in treating dementia and chronic stress in Korea. However, the cognitive effects of BAS and its mechanism of action have remained elusive. The purpose of this study was to examine whether BAS improved spatial cognitive impairment induced in rats following chronic corticosterone (CORT) administration. CORT administration (40 mg/kg, i.p., 21 days) resulted in cognitive impairment in the avoidance conditioning test (AAT) and the Morris water maze (MWM) test that was reversed by BAS (200 mg/kg, i.p). Additionally, as assessed by immunohistochemistry and RT-PCR analysis, the administration of BAS significantly alleviated memory-associated decreases in the expression levels of brain-derived neurotrophic factor (BDNF) and cAMP-response element-binding protein (CREB) proteins and mRNAs in the hippocampus. Also, BAS administration significantly restored the expression of Bax and Bcl-2 mRNAs in the hippocampus. Thus, BAS may be an effective therapeutic for learning and memory disturbances, and its neuroprotective effect was mediated, in part, by normalizing the CORT response, resulting in regulation of BDNF and CREB functions and anti-apoptosis in rats.
Animals
;
Apoptosis*
;
Brain-Derived Neurotrophic Factor
;
Corticosterone*
;
Dementia
;
Hippocampus*
;
Immunohistochemistry
;
Korea
;
Learning
;
Medicine, Traditional
;
Memory
;
Memory, Short-Term*
;
Neuroprotective Agents
;
Rats*
;
RNA, Messenger
;
Water