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
159-
Neuroscience 603 239-251 2026年5月25日Animal models are essential for studying aversive states such as fear and pain. Facial expressions may provide non-invasive readouts of aversive states in animals. This study investigated whether changes in facial expressions, which are potentially consistent between humans and mice, can serve as objective indicators of fear responses and distinguish fear from pain. We analyzed changes in the facial expressions of mice associated with conditioned fear stress (CFS) using convolutional neural networks (CNNs). Photographs of CFS and control mice were analyzed using four advanced CNN models: VGG16, ResNet50, DenseNet121, and InceptionV3. The CNNs identified CFS mice from facial images under contrasts: control/non-freezing vs CFS/freezing and control/non-freezing vs CFS/non-freezing, with consistently high performance (Control/non-freezing vs CFS/freezing: sensitivity 0.942, specificity 0.929, accuracy 0.935, precision 0.929, AUC 0.966; Control/non-freezing vs CFS/non-freezing: sensitivity 0.912, specificity 0.900, accuracy 0.906, precision 0.902, AUC 0.950). The ability to detect CFS without freezing decreased as stress intensity weakened, from an AUC of 0.950 to 0.701, suggesting that CNNs can detect facial changes depending on the degree of stress exposure. Facial changes were particularly pronounced in freezing mice, further supporting their association with CFS-related emotional responses. During testing, mice were returned to the conditioning chamber without shock; therefore, this facial expression could reflect fear response rather than pain response. These findings demonstrate the potential of CNNs to serve as non-invasive tools for detecting stress-induced affective changes in mice.
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Neurochemistry international 197 106184-106184 2026年5月14日High salt (HS) intake is a major risk factor of hypertension and has been implicated in emotional and cognitive decline. On the other hand, dietary supplementation may represent a potential preventive strategy against health risks induced by HS intake. Soybean lecithin is widely used as a phospholipid supplement. Here, we investigated the effects of lysolecithin enriched in lysophosphatidylcholine (>70% of total phospholipids; LPC70) on hypertension and behavioral impairments under high-salt diet (HSD) conditions in mice. To further characterize these effects, we examined changes in prostaglandin (PG)-related pathways by integrating gene expression and lipidomic analyses. Mice were fed an HSD (chow containing 8% NaCl) with or without LPC70 for 10 weeks. HSD elevated systolic blood pressure and impaired social behavior and object recognition memory in mice. Quantitative gene expression analyses revealed that HSD increased renal expression of cyclooxygenase-2 (COX-2) and EP3 (PGE2 receptor), and reduced expression of DP1 (PGD2 receptor) in the prefrontal cortex. LPC70 attenuated these changes in behavior, blood pressure, and PG-related gene expression. Furthermore, lipidomic analyses revealed that HSD reduced circulating arachidonic acid (AA) levels, whereas LPC70 increased AA-derived PG, such as PGE2 and PGD2, in HSD-fed mice. These findings demonstrate that LPC70 may protect against hypertension and behavioral impairments under HSD conditions in mice, potentially in association with modulation of PG signaling. LPC70 may serve as a functional dietary component that reshapes lipid mediator signaling under HSD conditions.
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Neurochemistry international 195 106141-106141 2026年5月Multiple sclerosis (MS) is a common autoimmune demyelinating disease of the central nervous system (CNS). Although activation of the kynurenine (KYN) pathway has been observed in patients with MS, its pathological significance remains unclear. In this study, we investigated the role of the KYN pathway in MS using an experimental autoimmune encephalomyelitis (EAE) mouse model, a widely recognized animal model of MS. We found an increase in the expression of kynureninase (KYNU), a key enzyme in the KYN pathway that is specifically localized within monocytes in the spinal cord of EAE mice. This was accompanied by a significant accumulation of quinolinic acid (QUIN) in the spinal cord. Importantly, similar increases in KYNU expression and QUIN levels were observed in the spinal cord of proteolipid protein overexpressing mice (PLP-tg mice), another model of demyelination. Notably, KYNU knockout (KO) reduced EAE severity and monocyte recruitment to the spinal cord of EAE model mice. These findings suggest that the increase in KYNU expression and the subsequent accumulation of QUIN may contribute to the exacerbation of MS. Taken together, our results indicate that KYNU could be a novel therapeutic target for MS.
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Trials 27(1) 2026年3月13日BACKGROUND: Although the number of frozen-thawed blastocysts transfer is increasing worldwide, the live birth rate following blastocyst transfer using assisted reproductive technology remains at 30-60%. Thus, improving the pregnancy rate per transfer is an urgent issue. In a previous retrospective study, we evaluated the use of granulocyte-macrophage colony-stimulating factor (GM-CSF)-containing medium for recovery culture to improve the outcomes of frozen-thawed blastocyst transfers. The results demonstrated that the live birth rates increased by approximately 10% following recovery culture in the GM-CSF-containing culture medium. This study aims to prospectively evaluate whether GM-CSF-containing blastocyst recovery culture following thawing increases live birth. METHODS: This is a multicenter, randomized, parallel-group, active-controlled, single-blind trial. The recruitment target is 750 participants meeting the criteria. Enrolled patients are randomized 1:1 to the GM-CSF-containing culture medium group (test group) or the non-GM-CSF-containing culture medium group (control group). The blastocyst recovery culture after warming was defined as an intervention in this study; frozen-thawed blastocysts will be cultured for 3-7 h in GM-CSF-containing medium (test group) or medium without GM-CSF (control group) followed by blastocyst transfer. The primary outcome will be live birth. We will also evaluate embryo transfer outcomes as secondary efficacy endpoints and evaluate perinatal and neonatal outcomes as a safety endpoint. DISCUSSION: This is the first large-scale prospective study to investigate the efficacy of a GM-CSF-containing medium for frozen-thawed blastocyst transfer. The study findings will provide evidence regarding the efficiency of GM-CSF-containing medium for blastocyst recovery culture after warming. TRIAL REGISTRATION: Japan Registry of Clinical Trials jRCT1040240159. Registered on January 6, 2025.
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Movement disorders : official journal of the Movement Disorder Society 2026年2月2日BACKGROUND: Alterations in tryptophan-kynurenine (TRP-KYN) metabolism, which is associated with neuroinflammation, remain unclear in multiple system atrophy (MSA). OBJECTIVE: The aim was to investigate cerebrospinal fluid (CSF) TRP metabolites in MSA and their associations with other biomarkers. METHODS: A total of 51 patients with MSA and 56 controls were included. CSF TRP metabolites, such as KYN, quinolinic acid (QA), and kynurenic acid (KA), along with neurofilament light chain (NfL), glycoprotein nonmetastatic melanoma protein B (GPNMB), and soluble triggering receptor expressed on myeloid cells 2 (sTREM2), were analyzed. RESULTS: Patients with MSA exhibited higher levels of QA, a neuroinflammatory marker, and lower levels of KA, a neuroprotective marker, yielding an elevated QA-to-KA ratio. Neither QA nor KA correlated with clinical scores. GPNMB, sTREM2, and NfL were increased; however, these markers were independent of KYN pathway metabolites. CONCLUSIONS: MSA exhibited a significant imbalance in KYN metabolism, suggesting a shift toward inflammatory processes distinct from classic neuroinflammatory markers. © 2026 The Author(s). Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
MISC
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日本生物学的精神医学会誌 37(1) 38-42 2026年うつ病の病態に炎症が関与することは多くの基礎・臨床研究により支持されており,特にストレスにより活性化された末梢免疫が中枢神経系の機能異常を惹起する機序が注目されている。近年,うつ病患者では好中球細胞数の増加や好中球‐リンパ球比の上昇が報告されており,好中球由来の炎症性メディエーターであるMMP‐8/9,IL‐1β,S100A8/A9などがうつ病の病態形成に関与する可能性が示唆されている。これら因子は,血液‐脳関門破綻,グリア細胞活性化,および神経可塑性障害といった多層的機序を介し,うつ病の病態形成に関与すると考えられる。本稿では,うつ病における炎症仮説を再評価し,好中球を中心とした末梢免疫系の異常,さらには末梢炎症が誘導する中枢神経系の機能異常について基礎・臨床研究に基づき概説する。
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日本臨床精神神経薬理学会・日本神経精神薬理学会合同年会プログラム・抄録集 34回・54回 JSY13-3 2024年5月
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日本臨床精神神経薬理学会・日本神経精神薬理学会合同年会プログラム・抄録集 34回・54回 JSY32-1 2024年5月
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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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日本薬理学雑誌 158(3) 233-237 2023年5月うつ病の病態にはモノアミン仮説が提唱されており,抗うつ薬の主流が選択的セロトニン(5-HT)再取り込み阻害薬であることから,特に5-HT神経系の機能低下が広く受け入れられている.しかし,患者の約1/3は既存の抗うつ薬に対して難治性であるため,新しい創薬ターゲットに対する新規抗うつ薬の開発が求められている.トリプトファン(TRP)は5-HT経路だけでなくキヌレニン(KYN)経路においても代謝される.インドールアミン2,3-ジオキシゲナーゼ1(IDO1)は,TRP-KYN経路の代謝を行う最初の律速酵素である.IDO1は炎症性サイトカインによって強く誘導され,TRPを代謝し,5-HT経路で代謝されるTRPレベルを低下させ,その結果,5-HT合成を抑制し,うつ様行動を惹起する.下流のキヌレニン-3-モノオキシゲナーゼ(KMO)は,KYNを3-ヒドロキシキヌレニンに代謝する重要な酵素である.KMOが欠損すると,キヌレニンアミノトランスフェラーゼ(KAT)によりKYNが代謝され,キヌレン酸(KA)が増加し,うつ様行動が惹起される.一方,慢性予測不能軽度ストレス(CUMS)は視床下部-下垂体-副腎皮質(HPA)系を破綻させ,前頭前野におけるKMOの発現が低下し,KAを増加させる.これにはCUMSによるKMOを主に発現するミクログリアの減少を伴っている.KAはα7ニコチン性アセチルコリン受容体(α7nAChR)アンタゴニスト作用を有する.ニコチンやガランタミンによるα7nAChRの活性化により,CUMS誘発のうつ病様行動が減弱される.IDO1の誘導による5-HT合成抑制と,KMO発現低下を介したKAレベルの増加によるα7nAChR拮抗作用はうつ様行動を引き起こすことから,TRP-KYN経路の代謝的変化がうつ病の病態に深く関与していると考えられる.TRP-KYN経路は,うつ病の新規診断方法や抗うつ薬の開発に向けた魅力的なターゲットになることが期待される.
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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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日本薬理学雑誌 158(Supplement) 3-B-SS14-2 2023年Epilepsy induces seizures as the result of excessive electrical excitation in the brain. The excitation-inhibition balance (EI balance) of the central nervous system (CNS) is implicated in the pathophysiology of epilepsy. The tryptophan pathway generates several metabolites which modulate glutamatergic neuronal system such as kynurenic acid (KA: NMDA receptor glycine-site antagonist) and quinolinic acid (QA: NMDA receptor agonist). We investigated whether alterations of tryptophan metabolism contribute epileptic seizures by disrupting the EI balance in the CNS. KA attenuated pentylenetetrazol (PTZ)-induced epileptic seizures, but QA exacerbated it. Chronic administration of PTZ exacerbated epileptic seizures and increased expression of kynurenine 3-monooxygenase (KMO, which involved in QA synthesis), but decreased expression of quinolinate phosphoribosyl transferase (QPRT, which involved in QA metabolism) and kynurenine amino transferase (KAT, which involved in KA synthesis). Seizure exacerbation was suppressed in KMO heterozygous knockout mice but exacerbated in QPRT knockout mice. These data suggested that expression changes of tryptophan metabolic enzymes may exacerbate PTZ-induced epileptic seizures, through change in the metabolic balance between KA versus QA.
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次世代を担う若手のための創薬・医療薬理シンポジウムプログラム・要旨集 2022 2022年
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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.
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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日本学術振興会 科学研究費助成事業 2025年4月 - 2028年3月
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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
産業財産権
16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