Curriculum Vitaes
Profile Information
- Affiliation
- Professor, Division of Behavioral Neuropharmacology, International Center for Brain Science (ICBS), Fujita Health University(Concurrent)Vice Director, International Center for Brain Science (ICBS)(Concurrent)Professor, Department of Behavioral Neuropharmacology, Graduate School of Medicine(Concurrent)Vice Director, Open Facility Center
- Degree
- M.S.(Meijo University)Ph.D.(Nagoya University)
- J-GLOBAL ID
- 200901083965882198
- researchmap Member ID
- 5000081871
Research Interests
7Research Areas
1Research History
5-
Jan, 2020 - Present
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Jan, 2010 - Dec, 2019
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Apr, 2006 - Dec, 2009
Committee Memberships
14-
Sep, 2021 - Present
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Mar, 2019 - Present
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Oct, 2016 - Present
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Oct, 2016 - Present
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Apr, 2013 - Dec, 2019
Awards
10-
Sep, 2017
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Oct, 2015
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Jul, 2013
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Oct, 2012
Papers
192-
Behavioural Brain Research, 496 115832-115832, Jan, 2026
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European Journal of Pharmacology, Jan, 2026
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Pharmacological Research, 221 107986-107986, Nov, 2025
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International Journal of Molecular Sciences, May 28, 2025
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British Journal of Pharmacology, Dec 10, 2024Background 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.
Misc.
247-
INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 17 119-119, Jun, 2014
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BRAIN BEHAVIOR AND IMMUNITY, 38 272-282, May, 2014 Peer-reviewed
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HUMAN PSYCHOPHARMACOLOGY-CLINICAL AND EXPERIMENTAL, 29(3) 280-286, May, 2014 Peer-reviewed
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FREE RADICAL BIOLOGY AND MEDICINE, 69 324-330, Apr, 2014 Peer-reviewed
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ONCOLOGY REPORTS, 31(4) 1883-1890, Apr, 2014 Peer-reviewed
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 124 182P-182P, 2014
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 124 47P-47P, 2014
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 124 177P-177P, 2014
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Cell Rep, 8 1-15, 2014 Peer-reviewed
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International Journal of Neuropsychopharmacology, 17(5) 723-737, 2014 Peer-reviewed
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Journal of neuroscience research, 91(12) 1525-32, Dec, 2013 Peer-reviewedWe previously identified a new molecule, "SHATI/NAT8L," which has an inhibitory effect on methamphetamine (METH)-induced hyperlocomotion, sensitization, and conditioned place preference. Nevertheless, the extent of SHATI localization and its functions are only partially understood. In this study, we used the FLAG-tag method to investigate SHATI localization. We found that SHATI was localized to microtubules when expressed in COS7 cells and cortical primary neurons. This distribution of SHATI was less apparent after cells were treated with colchicine, a tubulin polymerization inhibitor that disrupts the microtubule structure. This finding suggests that SHATI is associated with microtubule structure. Interestingly, overexpression of SHATI in COS7 cells could attenuate the colchicine-induced decrease in acetylated microtubules, indicating that SHATI plays a role in stabilizing microtubules. Furthermore, we showed that Shati deletion impaired neurite elongation. In cortical primary neurons, neurite length and complexity in Shati-knockout (KO) mice were significantly decreased. In pyramidal neurons in the prefrontal cortex, dendrite length and complexity were also significantly decreased in Shati-KO mice compared with wild-type mice. These results suggest a novel function for SHATI, which may be a new member of the microtubule-associated protein family.
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Japanese Journal of Neuropsychopharmacology, 33(4) 149-154, Aug, 2013
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Behavioural Brain Research, 250 351-360, Aug 1, 2013 Peer-reviewed
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GLIA, 61(5) 679-693, May, 2013 Peer-reviewed
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 181P-181P, 2013
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 176P-176P, 2013
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Involvement of astroglial IFITM3 in neuronal impairments following neonatal immune challenge in miceJOURNAL OF PHARMACOLOGICAL SCIENCES, 121 32P-32P, 2013
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 212P-212P, 2013
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 122P-122P, 2013
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 64P-64P, 2013
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 121 66P-66P, 2013 Peer-reviewed
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Journal of Biological Chemistry, 288(4) in press, 2013 Peer-reviewed
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JOURNAL OF NEUROCHEMISTRY, 123(5) 866-875, Dec, 2012 Peer-reviewed
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 120(3) 213-227, Nov, 2012 Peer-reviewed
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JOURNAL OF NEUROCHEMISTRY, 123 125-125, Oct, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 120(2) 89-97, Oct, 2012 Peer-reviewed
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INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 15 64-65, Jun, 2012
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INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 15 164-164, Jun, 2012
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NEUROPSYCHOPHARMACOLOGY, 37(6) 1387-1396, May, 2012 Peer-reviewed
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日本神経精神薬理学雑誌 = Japanese journal of psychopharmacology, 32(2) 87-89, Apr 25, 2012
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NEUROSCIENCE, 207 261-273, Apr, 2012 Peer-reviewed
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MOLECULAR BIOLOGY OF THE CELL, 23, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 29P-29P, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 109P-109P, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 67P-67P, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 231P-231P, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 227P-227P, 2012
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JOURNAL OF PHARMACOLOGICAL SCIENCES, 118 190P-190P, 2012
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Neurobiol. Dis., 2012 Peer-reviewed
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HUMAN MOLECULAR GENETICS, 20(23) 4666-4683, Dec, 2011 Peer-reviewed
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BEHAVIOURAL BRAIN RESEARCH, 225(1) 305-310, Nov, 2011 Peer-reviewed
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BEHAVIOURAL BRAIN RESEARCH, 225(1) 222-229, Nov, 2011 Peer-reviewed
Books and Other Publications
1Presentations
19Teaching Experience
16-
2025 - Present
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2025 - Present
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2024 - Present
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2023 - Present
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2023 - Present
Professional Memberships
8Research Projects
23-
科学研究費助成事業, 日本学術振興会, Apr, 2024 - Mar, 2027
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2023 - Mar, 2026
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脳とこころの研究推進プログラム(精神・神経疾患メカニズム解明プロジェクト), AMED, 2021 - 2024
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2020 - Mar, 2023
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2020 - Mar, 2023
Industrial Property Rights
1Other
1-
統合失調症マーカー及びその利用, 尾崎紀夫, 永井拓, 吉見陽, 山田真之亮.「国立大学法人名古屋大学, 特許番号6252949, 出願番号 特願 2014-542025, 管理番号 C20130185JP#P01, 出願日2013.10.3., 特許取得2017.12.8.