研究者業績
基本情報
- 所属
- 藤田医科大学 医療科学部/大学院医療科学研究科 研究推進ユニット レギュラトリーサイエンス分野 ユニット長, 分野教授(兼任)精神・神経病態解明センター 神経化学部門 部門長
- 学位
- 博士(医学)(名古屋大学大学院医学系研究科)
- J-GLOBAL ID
- 201001019721259872
- researchmap会員ID
- 6000026156
- 外部リンク
経歴
8-
2024年4月 - 現在
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2022年4月 - 現在
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2017年4月 - 2022年3月
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2016年4月 - 2017年4月
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2012年4月 - 2016年3月
学歴
3-
2003年4月 - 2007年3月
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2001年4月 - 2003年3月
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1997年4月 - 2001年3月
受賞
7-
2017年10月
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2011年10月
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2011年8月
論文
150-
Molecular neurobiology 2025年5月14日Hyponatremia is the most common clinical electrolyte disorder. Once thought to be asymptomatic in response to adaptation by the brain, recent evidence suggests that chronic hyponatremia (CHN) may induce neurological manifestations, including psychological symptoms. However, the specific psychological symptoms induced by CHN, the mechanisms underlying these symptoms, and their potential reversibility remain unclear. Therefore, this study aimed to determine whether monoaminergic neurotransmission is associated with innate anxiety-like behaviors potentiated by CHN in a mouse model of CHN secondary to the syndrome of inappropriate antidiuresis. In the present study, using a mouse model of the syndrome of inappropriate antidiuresis presenting with CHN, we showed that the sustained reduction of serum sodium ion concentrations potentiated innate anxiety-like behaviors in the light/dark transition and open field tests. We also found that serotonin and dopamine levels in the amygdala were significantly lower in mice with CHN than in controls. Additionally, phosphorylation of extracellular signal-regulated kinase (ERK) in the amygdala was significantly reduced in mice with CHN. Notably, after correcting for CHN, the increased innate anxiety-like behaviors, decreased serotonin and dopamine levels, and reduced phosphorylation of ERK in the amygdala were normalized. These findings further underscore the importance of treating CHN and highlight potential therapeutic strategies for alleviating anxiety in patients with CHN, which will improve their quality of life.
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The Journal of Nutrition 2025年4月BACKGROUND: Nutrition is a key factor in cognitive function, and safe dietary interventions are promising to prevent cognitive impairment in pediatric psychiatric disorders. We previously demonstrated that childhood social isolation (SI) stress affects colonic function, leading to cognitive impairment. Cellulose, an insoluble dietary fiber, shows benefits to intestinal health, but its potential impact on cognitive impairment has not been explored. OBJECTIVES: This study investigated whether a high-cellulose diet ameliorates cognitive impairment induced by SI through modulation of gut microbiota and metabolic pathways. METHODS: C57BL/6J male mice (3 wk old; n = 10-15/group) were randomly divided into 2 groups: individually housed (SI) group and housed 5 mice per cage (group-housed) group. Each group received either a normal diet (5% cellulose) or a high-cellulose diet (30% cellulose) for 5 wk daily until the end of the behavioral testing. We evaluated behavior abnormalities, gut microbiota composition, and metabolites, and performed 2-way analysis of variance. RESULTS: Intake of a high-cellulose diet ameliorated cognitive impairment, including decreased time spent in a novel location of SI mice in novel object location test (NOLT; +30%; P < 0.01) with reduction of Iba-1 positive cells, microglia, in the hippocampus (-33%; P < 0.05). The high-cellulose diet indicated a significant difference in gut microbiota clustering plots (P < 0.01) and enhanced the variation in malate-aspartate shuttle pathways in SI mice (P < 0.01). Notably, fecal microbiota transplantation (FMT) from SI mice fed a high-cellulose diet after antibiotic treatment, replicated amelioration of cognitive impairment in NOLT (+46%; P < 0.01). Additionally, the FMT replicated a decrease of Iba-1 positive cells indicating suppressed hippocampal microglial activation (-52%; P < 0.01), and enhanced the variation in malate-aspartate shuttle pathways (P < 0.01). CONCLUSIONS: These findings suggest that a high-cellulose diet may ameliorate pediatric-specific cognitive impairment through modulation of the gut microbiota and metabolic pathways.
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International Journal of Neuropsychopharmacology 28(Supplement_1) i51-i52 2025年2月12日Abstract Background Rho-kinase is a serine/threonine kinase and regulates actin dynamics. There are two subtypes: Rho-kinase 1 and Rho-kinase 2. Recently, we found that a Rho-kinase1/2 inhibitor, fasudil, ameliorated schizophrenia-like behaviors in MK-801-treated mice (Takase et al., 2022). However, fasudil has been shown side effects, such as hypotension, which may hinder its clinical application for schizophrenia. Since Rho-kinase 2 is predominantly expressed in brain, we hypothesized that selective inhibition of Rho-kinase 2 might exhibit antipsychotic-like effects with fewer cardiovascular side effects. Aims & Objectives To investigate the potential of a Rho-kinase 2 inhibitor as a therapeutic agent for schizophrenia, we evaluated the effect of a selective Rho-kinase 2 inhibitor, belumosudil (KD025), on MK-801-indued schizophrenia-like behaviors and blood pressure in mice. Method Effects of KD025 on schizophrenia-like behaviors in MK-801-treated mice were evaluated by locomotor activity test, novel object recognition test (NORT), and visual discrimination test (VD). KD025 (100-200 mg/kg) was orally administered 120 min before the behavioral tests. The blood pressure was also measured after KD025 treatment by tail-cuff method. Furthermore, we evaluated the depolarization-evoked extracellular dopamine and serotonin levels in the nucleus accumbens (NAc) using an in vivo microdialysis method. Results KD025 (100 or 200 mg/kg) restored MK-801-induced hyperlocomotion and the cognitive impairments in the NORT and VD, while KD025 showed little effect on systolic blood pressure, not like fasudil. In addition, local perfusion of KD025 (10-20 μ M) in the NAc suppressed the depolarization- evoked serotonin-, but not dopamine-release in the NAc. Discussion & Conclusion Our findings indicate that Rho-kinase 2 has potential as a therapeutic target for schizophrenia and KD025 may be a candidate as an antipsychotic for schizophrenia. References TAKASE, S., LIAO, J., LIU, Y., TANAKA, R., MIYAGAWA, Y., SAWAHATA, M., SOBUE, A., MIZOGUCHI, H., NAGAI, T., KAIBUCHI, K., OZAKI, N. &YAMADA, K. 2022. Antipsychotic-like effects of fasudil, a Rho- kinase inhibitor, in a pharmacologic animal model of schizophrenia. Eur J Pharmacol, 931, 175207.
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British Journal of Pharmacology 182(7) 1466-1486 2024年12月10日Background and Purpose Alterations in tryptophan‐kynurenine (TRP‐KYN) pathway are implicated in major depressive disorder (MDD). α7 nicotinic acetylcholine (α7nACh) receptor regulates the hypothalamic–pituitary–adrenal (HPA) axis. We have shown that deficiency of kynurenine 3‐monooxygenase (KMO) induces depression‐like behaviour via kynurenic acid (KYNA; α7nACh antagonist). In this study, we investigated the involvement of the TRP‐KYN pathway in stress‐induced behavioural changes and the regulation of the HPA axis. Experimental Approach Mice were exposed to chronic unpredictable mild stress (CUMS) and subjected to behavioural tests. We measured TRP‐KYN metabolites and the expression of their enzymes in the hippocampus. KMO heterozygous mice were used to investigate stress vulnerability. We also evaluated the effect of nicotine (s.c.) on CUMS‐induced behavioural changes and an increase in serum corticosterone (CORT) concentration. Key Results CUMS decreased social interaction time but increased immobility time under tail suspension associated with increased serum corticosterone concentration. CUMS increased KYNA levels via KMO suppression with microglial decline in the hippocampus. Kmo+/− mice were vulnerable to stress: they exhibited social impairment and increased serum corticosterone concentration even after short‐term CUMS. Nicotine attenuated CUMS‐induced behavioural changes and increased serum corticosterone concentration by inhibiting the increase in corticotropin‐releasing hormone. Methyllycaconitine (α7nACh antagonist) inhibited the attenuating effect of nicotine. Conclusions and Implications CUMS‐induced behavioural changes and the HPA axis dysregulation could be induced by the increased levels of KYNA via KMO suppression. KYNA plays an important role in the pathophysiology of MDD as an α7nACh antagonist. Therefore, α7nACh receptor is an attractive therapeutic target for MDD.
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Biochemical and Biophysical Research Communications 737 150922-150922 2024年12月Maternal immune activation (MIA) is recognized as one of the significant environmental risk factors for neuropsychiatric disorders such as schizophrenia in adult offspring. However, the pathophysiological mechanisms remain unknown. The tryptophan (TRP)-kynurenine (KYN) pathway, influenced by inflammation, may be implicated in the pathophysiology of neuropsychiatric disorders. We investigated whether abnormal behaviors in adult offspring could be induced by MIA through alterations in the TRP-KYN pathway. MIA increased not only IL-6 expression in the placenta but also reactive oxygen species (ROS) levels in both the placenta and fetal brain and disrupted cortical layering in the fetal brain. We observed increased levels of 3-hydroxykynurenine (3-HK), a metabolite with oxidative stress properties, in both the placenta and fetal brain. In the knockout mice of kynurenine 3-monooxygenase (KMO), the enzyme responsible for 3-HK production, MIA failed to induce the abnormal behaviors in adult offspring. Notably, RO-618048, a KMO inhibitor that does not cross the blood-brain barrier (BBB), also blocked MIA-induced abnormal behaviors in adult offspring, reduced not only increased IL-6 expression in the placenta but also ROS levels in both the placenta and fetal brain, and prevented abnormal cortical development in the fetal brain. These findings suggest that MIA-induced abnormal behaviors in adult offspring may result from the increase in 3-HK levels through activation of KMO. Therefore, KMO is an attractive target for the prevention of neuropsychiatric disorders associated with MIA.
MISC
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日本神経精神薬理学会年会プログラム・抄録集 53回 176-176 2023年9月
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日本薬理学会年会要旨集 97 2-B-S28-2 2023年The number of patients with mood disorders including depression has increased by 700,000 over the past decade. But, the rate of consultations with psychiatrists is still low. It is thought that depression patients manifest not only psychiatric symptoms but also various other symptoms such as insomnia, fatigue, anorexia, and headache. On the other hand, chronic diseases such as cancer, chronic pain, cardiac disease, diabetes, dementia, and epilepsy tend to cause depression, and side effects of drugs such as interferon (IFN) and steroids can also cause depression. Early detection and treatment are effective in depression. It is important that general physicians detect depression in patients at an early stage and provide early intervention in collaboration (liaison) with psychiatrists. However, the diagnosis of depression is mainly by a psychiatrist interview but not by objective criterion such as blood tests. Thus, the depression biomarkers to determine the onset and severity are needed. In this symposium, we will introduce the development of depression biomarkers based on the findings from basic research using animal models of depression, and their application to clinical research in the field of psychiatric liaison.
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日本神経化学会大会抄録集(Web) 65th 2022年
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日本薬理学会年会要旨集 95 1-P-081 2022年Introduction: Burning mouth syndrome and atypical odontalgia (BMS/AO) are chronic orofacial pain conditions in the absence of any identifiable odontogenic pathology. The pain is treatment-resistant and frequently causes depressive symptoms. Duloxetine (DLX), a serotonin-noradrenaline reuptake inhibitor, is not only used as therapy for depression, but also for chronic orofacial pain. Since their mechanisms in detail remains unknown, in this study, we focused on serotonin transporter (SERT), one of DLX action site, and investigated association between expression of SERT and effect of DLX on pain in BMS/AO. Methods: The patients with BMS/AO, were assessed for severity of pain using the visual analog scale (VAS) and for signs of depression using the Hamilton Depression Rating Scale (HDRS). In their platelets before (baseline) and 12 weeks after DLX-treatment, the expression of total and ubiquitinated SERT proteins was confirmed by Western blot. This study was approved by the Ethics Review Committees of Nagoya, Aichi Gakuin, and Meijo Universities. Results: The expression of total and ubiquitinated SERT protein at baseline in all patients were higher and lower, respectively, compared to those in controls. After the DLX-treatment, there was no difference in the total SERT protein levels between the patients and controls. The mean of VAS and HDRS scores or the expression of total SERT protein were significantly decreased after the treatment, compared to those at baseline. Conclusions: These results indicate that DLX relieves chronic orofacial pain in patients with BMS/AO, and such effect may be mediated via SERT downregulation.
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日本薬理学会年会要旨集 96 2-B-P-144 2022年Exposure to psychosocial stress (e.g., bullying) in juveniles is a risk factor of stress-related psychiatric disorders later in life. The exposure to stress activates microglia, which plays an important role in brain immunity, and induces neuroinflammation. It is unclear to what degree the exposure to psychosocial stress as juveniles is affected to brain immunity systems and neuronal morphology. The present study was examined expression of inflammatory cytokines or inflammatory signal-related molecules and neuronal morphology in the prefrontal cortex (PFC) by using the mice exposed to social defeat stress as juveniles. We found that inflammation or immune system-related genes of defeated mice were significantly changed, compared to those of non-defeated mice in transcriptome analysis. Especially, the high expressions of Ca2+ binding protein, S100A8, and S100A9 genes were observed in the PFC of defeated mice. The levels of TNF-α and the numbers of spines in defeated mice were significantly increased and decreased, respectively, compared to that in non-defeated mice. There were no significant changes of TNFR1, NF-κB, or I-κB levels in defeated mice. Administration of R-7050, a TNF-α receptor antagonist, didn't develop the impairment of social behaviors induced by social defeat stress exposure as juveniles. Our findings suggest that exposure to social defeat stress as juveniles induces TNF-α mediated neuroinflammation via the activated microglia.
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日本薬理学会年会要旨集 95 2-O-081 2022年Maternal use of valproic acid (VPA) during pregnancy is associated with an increased risk of autism spectrum disorder (ASD) in the offspring. In the pathophysiological hypothesis of ASD, excitation/inhibition (E/I) imbalance is attracted. Dysfunction of serotonergic system is also suggested to be involved in ASD. In this study, we investigated glutamatergic-serotonergic neuronal interaction in the ASD-like behavior induced by prenatal VPA exposure in mice. Prenatal VPA exposure induced not only excessive repetitive self-grooming behavior, impairments of social behavior and object recognition memory, but also increased glutamatergic signaling (CaMKII phosphorylation) and decreased serotonin contents in the prefrontal cortex. Memantine (low-affinity NMDA antagonist) suppressed both the increase of CaMKII phosphorylation and ASD-like behaviors. Activation of serotonergic signaling via 5-HT1A receptor by fluoxetine, tandospirone (5-HT1A receptor agonist) and optogenetics attenuated the ASD-like behaviors in prenatal VPA-exposed mice. WAY-100635 (5-HT1A receptor antagonist) antagonized the effect of fluoxetine on the ASD-like behaviors. These results suggest that the hyper-NMDA receptor signaling and ASD-like behaviors are associated with hypo-signaling of 5-HT1A receptor in the prenatal VPA-exposed mice.
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日本薬理学会年会要旨集 95 1-YIA-12 2022年Chronic stress contributes to the pathogenesis of major depressive disorder (MDD). In the kynurenine pathway (KP), kynurenine is metabolized to 3-hydroxykynurenine (3-HK) by kynurenine 3-monooxygenase (KMO) and to kynurenic acid (KA) by kynurenine aminotransferase. KP alternation has been reported to be associated with the pathogenesis of MDD. We investigated the involvement of KP in the depressive-like behavior induced by chronic unpredictable mild stress (CUMS). Mice were randomly exposed to 9 kinds of mild stressors for 4 weeks. Corticosterone level in the serum and corticotropin-releasing hormone (CRH) mRNA level in the hypothalamus (HT) elevated immediately after CUMS. Further, KMO mRNA level was decreased, but KA content was increased in the prefrontal cortex (PFC). Because KA is α7 nicotinic acetylcholine receptor (α7nAChR) antagonist, we investigated the effects of nicotine (Nic) and galantamine (Gal :α7nAChR agonist) on the depressive-like behavior and dysregulation of HPA axis induced by CUMS. When Nic and Gal were administrated before exposure to each stressor during CUMS, they attenuated CUMS-induced decreased sociability. Although Nic failed to inhibit elevated corticosterone level in the serum immediately after CUMS, but suppressed that sustained elevation 1 week after CUMS. Alternation of KP from 3-HK to KA through downregulation of KMO may be involved in the depressive-like behavior and the sustained elevation of serum corticosterone 1 week after CUMS.
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日本薬理学会年会要旨集 95 2-O-133 2022年Adolescent binge drinking represents a major public health challenge and lead to persistent psychiatric disorders. However, the underlying pathogenic mechanisms remain poorly understood. Myelin abnormalities were observed in human subjects with alcohol abuse. Gray matter myelination in the prefrontal cortex and hippocampus during adolescence are vulnerable to alcohol.In the present study, we investigated whether myelin abnormalities in the gray matter are involved in behavioral abnormalities induced by adolescent binge ethanol treatment (ABET). To produce ABET, C57BL/6J mouse was given EtOH (3.0g/kg, i.e. 25% ethanol w/v) once a day during adolescence (P28-46) in an intermittent fashion. ABET persistently developed behavioral abnormalities such as anxiety-like behaviors in the marble burying test and the novelty suppressed feeding test, impaired memory function in the novel object recognition test, and impairments of social behavior in social interaction test. ABET decreased myelin-related protein and oligodendrocyte lineage cells in the prefrontal cortex and hippocampus. Clemastine, which promotes oligodendroglial differentiation and myelination, rescues the behavioral abnormalities. These findings suggest that myelin abnormalities in the gray matter may be involved in the behavioral abnormalities caused by ABET in adulthood.
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日本薬理学会年会要旨集 95 2-O-082 2022年Dopamine contributes to attention as a key neurotransmitter in the nervous system projecting to the forebrain. Numerous animal models have been generated to model attentional impairment with dopaminergic dysregulation. We previously generated mice lacking Shati, an N-acetyltransferase-8-like protein, on a C57BL/6J genetic background (Shati/Nat8l−/−). Modulation of this gene leads to changes in behavioral phenotypes such as attentional impairment associated with hypodopaminergic neurotransmission in mice. In this study, the effect of Shati/Nat8l deficit in dopaminergic projections was investigated using an object-based attention test (OBAT). Shati/Nat8l−/− mice showed attentional impairment in the OBAT, accompanied by reduced neuronal activity in the prefrontal cortex (PFC) and the hypodopaminergic function indicated by the reduced expression of tyrosine hydroxylase (dopaminergic marker) protein and dopamine-related genes in the ventral tegmental area (VTA). The activation of dopaminergic projections of the VTA-PFC by chemogenetic stimulation ameliorated the attentional impairment in Shati/Nat8l−/− mice. These results confirm previous findings that Shati/Nat8l deficiency interrupts the dopaminergic system and contributes to novel evidence that Shati/Nat8l is implicated in the dopaminergic projections of the VTA-PFC, which play important roles in the regulation of attention in the OBAT.
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日本薬理学会年会要旨集 95 3-S35-2 2022年Tryptophan (TRP) is metabolized via the kynurenine (KYN) pathway, which is related to the pathogenesis of major depressive disorder (MDD). Kynurenine 3-monooxygenase (KMO) is a pivotal enzyme in the metabolism of KYN to 3-hydroxykynurenine. In rodents, KMO deficiency induces a depression-like behavior and increases the levels of kynurenic acid (KA), a KYN metabolite formed by kynurenine aminotransferases (KATs). We will introduce the involvement of TRP metabolism in the depression-like behavior induced by chronic unpredictable mild stress (CUMS). Corticosterone level in the serum and corticosterone-releasing hormone (CRH) mRNA level in the hypothalamus (HT) were elevated immediately after CUMS. Associated with the dysregulation of hypothalamic-pituitary-adrenal (HPA) axis, KMO mRNA level was decreased, and KA content was increased in the prefrontal cortex (PFC). Microglia marker Iba-1 was decreased immediately after CUMS. Because KMO is mainly found in microglia in the central nervous system, these results suggests that CUMS increased KA contents via alternation of kynurenine metabolic enzyme from KMO to KATs due to the reduction of microglia. Because KA is α7 nicotinic acetylcholine receptor (α7nAChR) antagonist, we investigated the effect of nicotine and galantamine (allosteric potentiating ligand for α7nAChR ) on the depression-like behavior and dysregulation of HPA axis induced by CUMS. When nicotine and galantamine were administrated before exposure to each stressor, they attenuated CUMS-induced depression-like behaviors. Although nicotine didn't affect elevated corticosterone level in the serum immediately after CUMS, it suppressed the sustained elevation 1 week after CUMS. Increase of KA associative with downregulation of KMO in microglia was involved in the depressive-like behavior and the sustained elevation of serum corticosterone after CUMS. The ameliorating effects of nicotine and galantamine on depression-like behaviors induced by CUMS are associated with the activation of α7nAChR.
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日本アルコール・薬物医学会雑誌 56(6) 157-157 2021年12月
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日本薬理学会年会要旨集 94 3-O-E1-4 2021年Major depressive disorder (MDD) is a common mental disorder characterized by reduced motivation, diminished interest and pleasure, and anhedonia. We have proposed melanoma-associated antigen D1 (MAGE-D1) knock out (KO) mouse is a MDD model, and which involves the serotonergic hypofunction. However, not only serotonergic but also noradrenergic neuronal malfunctions are involved in depressive behaviors. Here, we investigate the involvement of noradrenergic neuronal system in depression-like behaviors of MAGE-D1 KO mice. MAGE-D1 KO mice showed decreases in locomotor activity, social interaction time and sucrose preference, but increases in immobility time in the forced swimming test (FST), and feeding latency in the novelty suppression feeding test. Noradrenaline (NA) tissue contents in the prefrontal cortex, hippocampus, and amygdala, and potassium-evoked noradrenaline releases in the prefrontal cortex and hippocampus were decreased in MAGE-D1 KO mice. The protein expression of noradrenaline transporter (NAT) was increased in the prefrontal cortex of the MAGE-D1 KO mice. Phosphorylation of NAT at threonine and protein expression of its kinase, protein kinase C (PKC) were decreased, but not changed in ubiquitination or expression of NAT mRNA. Acute administration of NA reuptake inhibitors (desipramine and atomoxetine) attenuated increase in immobility time in the FST and decrease in sucrose preference, but not other behavior changes in MAGE-D1 KO mice. These results suggested that depression-like behaviors in MAGE-D1 KO mice might be associated with hypofunction of noradrenergic neuronal system due to NAT overexpression through decrease in PKC-dependent phosphorylation of NAT.
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日本薬理学会年会要旨集 94 3-O-E2-2 2021年White matter abnormalities have been implicated in psychiatric diseases such as major depressive disorder (MDD) ; however, the underlying mechanisms remain poorly understood. The structure and function of the corpus callosum are particularly vulnerable to stress, which may lead to MDD. In the present study, we investigated whether chronic social defeat stress (CSDS) induces myelin abnormalities of the corpus callosum through inflammation that contributes to the pathogenesis of MDD. To produce CSDS, the adult C57BL/6J mouse was exposed to an aggressor ICR mouse for 10 consecutive days. CSDS decreased mature oligodendrocytes in the corpus callosum, and persistently developed depression-like behaviors such as increased immobility in the forced swimming test and impaired social interaction. On transmission electron microscopy, myelin abnormalities and axonal degeneration were observed with necrosis-like cell death of oligodendrocytes in the corpus callosum. Interestingly, CSDS significantly increased the Gasdermin D (Gsdmd), a marker of pyroptosis, concomitantly with enhanced IL-1β production in the corpus callosum. Administration of IL-1β inhibitor prevented the decrease of oligodendrocytes and CSDS-induced depression-like behaviors. These findings suggest that IL-1β acts as a crucial mediator of oligodendroglial pyroptosis induced by the CSDS, which may be responsible for the development of MDD.
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日本薬理学会年会要旨集 94 3-O-E4-1 2021年Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder characterized by social deficit and stereotyped, repetitive patterns of behaviors and interests. Maternal use of valproic acid (VPA) during pregnancy is associated with an increased risk of ASD in the offspring. In the pathophysiological hypothesis of ASD, excitation/inhibition (E/I) imbalance is attracted. In this study, we investigated how VPA (500 mg/kg) at embryonic day 12.5 changes the emotional, cognitive and glutamatergic functions in the offspring of mice. Prenatal VPA exposure induced excessive repetitive self-grooming behavior, impairments of social behavior and object recognition memory, increased glutamatergic signaling [i.e. phospho-Ca2+/calmodulin-dependent protein kinase II (CaMKⅡ)and phospho-protein kinase C (PKC) levels] and decreased serotonin contents in the prefrontal cortex. These results suggested that VPA-exposure induced ASD-like behaviors associated with hyper-excitation of glutamatergic and hypo-serotonergic functions in the prefrontal cortex. Activation of serotonergic system by fluoxetine (20mg/kg) attenuated the VPA-induced ASD-like behaviors and hyper-glutamatergic signaling in the prefrontal cortex. These results suggest that hypo-serotonergic function is involved in the prenatal VPA-induced ASD-like behaviors and hyper-excitation in the prefrontal cortex.
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日本薬理学会年会要旨集 94 3-O-E2-1 2021年Major depressive disorder (MDD) is a worldwide serious psychiatric disease, and more than 300 million people suffer from MDD. Chronic stress contributes to the pathogenesis of MDD. Cigarette smoking is strongly associated with MDD. Epidemiological and clinical studies claim that the smoking is assumed as self-medication for stress and depression. In this study, we investigated the effect of nicotine on the depression-like behavior induced by chronic unpredictable mild stress (CUMS). At the age of 6 weeks, C57BL6J mice were randomly exposed to 9 kinds of mild stressors for 4 weeks. Nicotine (0.2mg/kg), galantamine (1mg/kg) and varenicline (1mg/kg) were administrated 30 min before exposure to each stressor during CUMS. After CUMS, mice were subjected social interaction test and measured serum corticosterone levels and mRNA levels of nicotinic acetylcholine receptor (nAChR) subunits in the prefrontal cortex (PFC). Nicotine attenuated decrease in social interaction time of CUMS mice. Nicotine did not affect elevated serum corticosterone levels immediately after CUMS but reversed the sustained elevation after behavioral test. CUMS did not affect mRNA levels of α7, α4 or β2 nAChR subunit in the PFC. Finally, we evaluated the efficacies of galantamine, α7 nAChR allosteric modulator and varenicline, α4β2 nAChR partial agonist on CUMS mice. Administration of galantamine, but not varenicline attenuated decrease in social interaction time of CUMS mice. These data suggested that α7 nAChR is an important target for stress resilience and development of antidepressant.
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日本薬理学会年会要旨集 94 1-Y-F1-1 2021年Chronic stress contributes to the pathogenesis of major depressive disorder (MDD). The efficacy of ketamine on the treatment-resistant MDD implies the involvement of glutamatergic dysregulation in its pathophysiology. We recently demonstrated the abnormalities of ubiquitin-proteasome system (UPS) in the pathophysiology of MDD. In the present study, we investigated the involvement of glutamatergic dysregulation by UPS in chronic social defeat stress (CSDS)-induced depression-like behavior. To induce CSDS, the adult C57BL/6J mouse was exposed to aggressor ICR mouse for 10 consecutive days. CSDS reduced the duration of time spent at the interaction zone in the social interaction test. Increase in high potassium-induced release of glutamate was diminished in the prefrontal cortex (PFC) of the stressed mice. Interestingly, ubiquitinated but not total glutamate transporter 1 (GLT-1) was decreased in the PFC of the stressed mice. Protein levels of neural precursor cell expressed developmentally downregulated gene 4-like (Nedd4L) and ubiquitin-conjugating enzyme E2D2 (Ube2d2) were also reduced in the stressed mice. Injection of adeno-associated virus (AAV) expressing shRNA against Nedd4L into the PFC exacerbated the social impairments induced by CSDS. These results suggest that CSDS induces depressive-like behavior and glutamatergic dysfunction, through the decrease of GLT-1 ubiquitination by down-regulation of Ube2d2-Nedd4L pathway. Taken together, GLT-1 ubiquitination could play crucial roles in the pathophysiology of MDD.
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日本薬理学会年会要旨集 94 3-P1-LB47 2021年It has been shown that adverse events during pregnancy have a negative impact on brain development and may increase the risk for neuropsychiatric disorders in later life in human. In this study, we explored the long-lasting influences of psychosocial stress during pregnancy in adult offspring of mice using a communication box method. Pregnant C57BL/6J mice were exposed to a psychosocial stress by communication box daily from the gestational day 12 (G12) until delivery. We observed the behaviors of offspring at 7 weeks old in the social interaction and elevated plus-maze tests, and measured plasma corticosterone levels, GABAergic neuronal changes in the amygdala. We found anxiety-like behaviors and reduction of social interaction in offspring received prenatal stress. Those mice had decrease in parvalbumin-positive cells in the amygdala and a hyperactivity of stress-induced corticosterone release compared to control group. In addition, these anxiety-like behaviors in the both tests were blocked by intra-amygdala injection of diazepam. These results suggest that this prenatal psychosocial stress may lead to GABAergic hypofunction in the amygdala accompanied with anxiety-like behaviors of offspring.
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日本生物学的精神医学会誌 32(3) 129-134 2021年統合失調症は幻覚や妄想,意欲の低下,認知障害などを主訴とする精神疾患である。多くの患者では抗精神病薬に対する治療抵抗性を有することから新しい作用機序をもつ予防・治療薬の開発が急務となっている。統合失調症の発症・病態仮説には,炎症による神経発達障害仮説やグルタミン酸仮説などが提唱されている。キヌレニン代謝経路は炎症により活性化され,その代謝産物には神経毒性,およびグルタミン酸神経機能に影響を与えるものがある。本稿では,母親が妊娠期にインフルエンザに感染すると胎児に統合失調症に対する発症脆弱性が形成されるという疫学仮説に基づき,作成したウイルスRNA様の作用を示す合成二本鎖RNAポリイノシン‐ポリシチジン(poly I:C)を胎生期に曝露させた統合失調症様モデル動物についての概説とこのモデル動物におけるキヌレニン代謝経路の関与について紹介する。
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NEPHROLOGY 25 57-57 2020年10月
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日本神経精神薬理学会年会・日本生物学的精神医学会年会・日本精神薬学会総会・学術集会合同年会プログラム・抄録集 50回・42回・4回 121-121 2020年8月
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日本神経精神薬理学会年会・日本生物学的精神医学会年会・日本精神薬学会総会・学術集会合同年会プログラム・抄録集 50回・42回・4回 209-209 2020年8月
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Journal of neurochemistry 157(3) 642-655 2020年4月10日 査読有りSuccessful completion of daily activities relies on the ability to select the relevant features of the environment for memory and recall. Disruption to these processes can lead to various disorders, such as attention-deficit hyperactivity disorder (ADHD). Dopamine is a neurotransmitter implicated in the regulation of several processes, including attention. In addition to the higher-order brain function, dopamine is implicated in the regulation of adult neurogenesis. Previously, we generated mice lacking Shati, an N-acetyltransferase-8-like protein on a C57BL/6J genetic background (Shati/Nat8l-/- ). These mice showed a series of changes in the dopamine system and ADHD-like behavioral phenotypes. Therefore, we hypothesized that deficiency of Shati/Nat8l would affect neurogenesis and attentional behavior in mice. We found aberrant morphology of neurons and impaired neurogenesis in the dentate gyrus of Shati/Nat8l-/- mice. Additionally, research has suggested that impaired neurogenesis might be because of the reduction of dopamine in the hippocampus. Galantamine (GAL) attenuated the attentional impairment observed in the object-based attention test via increasing the dopamine release in the hippocampus of Shati/Nat8l-/- mice. The α7 nicotinic acetylcholine receptor antagonist, methyllycaconitine, and dopamine D1 receptor antagonist, SCH23390, blocked the ameliorating effect of GAL on attentional impairment in Shati/Nat8l-/- mice. These results suggest that the ameliorating effect of GAL on Shati/Nat8l-/- attentional impairment is associated with activation of D1 receptors following increased dopamine release in the hippocampus via α7 nicotinic acetylcholine receptor. In summary, Shati/Nat8l is important in both morphogenesis and neurogenesis in the dentate gyrus and attention, possible via modulation of dopaminergic transmission.
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日本薬理学会年会要旨集 93 3-P-282 2020年We investigated the possibility of prostaglandin E2 (PGE2) as one of common molecules associated with vulnerability to neurodevelopmental disruptions induced by environmental factors. PGE2 levels in whole brain were significantly increased after exposure to viral infection [injection of polyinosinic-polycytidylic acid (polyI:C)], hypoxia (exposure to CO2), and neglect (separation from the dams) in postnatal day (PD) 2, compared to those after non-exposure. The mice administered polyI:C during PD 2-6 exhibited the impairment of sociality, object recognition memory, and pre-pulse inhibition (PPI) in adult at PD 70, and further, significant decreased spine density of the mPFC in adult mice. Exposure to CO2 at PD 2 and separation from dams during PD 2-21 exhibited the impairment of PPI and decrease of spine density in adult mice. These behavioral impairments induced by administration of polyI:C were recovered by an inhibition of PGE2-EP1 (PGE2 receptor subtype) and of cyclooxygenase (COX). Our findings suggest that PGE2 is one of potential common molecules associated with vulnerability to neurodevelopmental disruptions induced by environmental factors, and PGE2 plays a crucial role in the development of behavioral and neuronal impairments, which are associated with activation of PGE2-EP1.
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日本薬理学会年会要旨集 93 1-LBS-05 2020年Quinolinic acid phosphoribosyltransferase (QPRT) metabolizes quinolinic acid (QA) to nicotinamide adenine nucleotide (NAD+) via kynurenine pathway. QA is a excitotoxic substance that activate N-methyl-D-aspertate (NMDA) receptors and NAD+ is essential for cell survival. In this study, we evaluated QPRT knock out (KO) mice to explore the physiological role of QPRT in central nervous system. QPRT KO mice demonstrated motor deficits (decrease of locomotor activity, decrease of duration time to maintain balance on the rotarod, wide stance in footprint pattern test) and cognitive deficits (decrease of spontaneous alternation behavior in Y-maze test, and prolongation of latency to enter the target hole in the Barnes-maze test). But emotional change was not observed except for decrease in number of buried marbles in marble burying test. Dopaminergic dysfunction was observed in prefrontal cortex, nucleus accumbens and striatum of QPRT KO mice. Dopamine D1 receptor agonist (SKF81297)-induced hyperactivity is not observed in QPRT KO mice. Dopamine D2 receptor antagonist (raclopride)-induced catalepsy is more sensitive in QPRT KO mice. The activation of dopaminergic function by methylphenidate attenuated the impairment of short-term memory and hypoactivity of QPRT KO mice. QPRT KO mice showed increased level of QA in serum but normal level of NAD+ in brain. QA-mediated NMDA receptor signaling (phosphorylation of CaMK2 and activation of calpain) and oxidative stress were enhanced in prefrontal cortex, nucleus accumbens and striatum of QPRT KO mice. These results suggested that deficiency of QPRT lead motor and cognitive deficits associated with dopaminergic dysfunction via QA-induced calpain activation and oxidative stress.
書籍等出版物
1共同研究・競争的資金等の研究課題
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科学技術振興機構 戦略的な研究開発の推進 創発的研究支援事業 2022年 - 2028年
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日本学術振興会 科学研究費助成事業 2022年4月 - 2025年3月
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日本学術振興会 科学研究費助成事業 基盤研究(C) 2020年4月 - 2023年3月
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日本学術振興会 科学研究費助成事業 基盤研究(B) 2017年4月 - 2022年3月
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日本学術振興会 科学研究費助成事業 挑戦的研究(萌芽) 2018年6月 - 2021年3月
産業財産権
15メディア報道
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夕刊フジプレゼンツ 健活手帖ONLINE https://www.zakzak.co.jp/lif/news/210823/hea2108230001-n1.html 2021年8月 インターネットメディア
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刑事事件弁護士ナビ 違法薬物で罰せられる薬物四法とは|依存症回復は可能? https://keiji-pro.com/magazine/175/ 2020年11月11日 インターネットメディア
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ラジオNIKKEI 薬学の時間 http://medical.radionikkei.jp/yakugaku/tag/tag_953.html 2010年3月 テレビ・ラジオ番組