Updated on 2026/03/17

写真a

 
DOI Miyuki
 
Organization
Academic Assembly Institute of Medicine and Dentistry IGAKU KEIRETU Assistant Professor
Graduate School of Medical and Dental Sciences Biological Functions and Medical Control Sensory and Integrative Medicine Assistant Professor
Title
Assistant Professor
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Degree

  • 博士(医学) ( 2021.12   大阪大学 )

Research Areas

  • Life Science / Anatomy

  • Life Science / Psychiatry

  • Life Science / Neuroscience-general

  • Life Science / Function of nervous system

  • Life Science / Anatomy and histopathology of nervous system

Research History (researchmap)

  • Osaka University   Graduate School of Medicine   Assistant Professor

    2022.3 - 2025.11

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  • Osaka University   Graduate School of Medicine

    2022.1 - 2022.2

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Research History

  • Niigata University   Institute of Medicine and Dentistry, Academic Assembly   Assistant Professor

    2025.12

  • Niigata University   Sensory and Integrative Medicine, Biological Functions and Medical Control, Graduate School of Medical and Dental Sciences   Assistant Professor

    2025.12

Education

  • Yasuda Women's University   Faculty of Pharmacy   Department of Pharmacy

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  • 大阪大学大学院   医学系研究科

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Papers

  • Copper deficiency impairs oligodendrocyte maturation and social behavior via mitophagy and mTOR suppression in ASD

    Noriyoshi Usui, Miyuki Doi, Stefano Berto, Kiwamu Matsuoka, Rio Ishida, Hana Miyauchi, Yuuki Fujiwara, Koichiro Irie, Michihiro Toritsuka, Takahira Yamauchi, Takaharu Hirai, Min-Jue Xie, Yoshinori Kayashima, Naoko Umeda, Keiko Iwata, Kazuki Okumura, Taeko Harada Taiichi Katayama, Masatsugu Tsujii, Hideo Matsuzaki, Manabu Makinodan, Shoichi Shimada

    Science Advances   In Press   2026.2

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    Language:English   Publishing type:Research paper (scientific journal)  

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  • Adolescent methamphetamine exposure drives neuroinflammation and aberrant neurogenesis linked to anxiety and cognitive impairments in adult mice Reviewed

    Akane Ito†, Noriyoshi Usui†(Co-first author), Miyuki Doi, Shoichi Shimada

    Translational Psychiatry   2025.7

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  • Sex differences in placental structure and gene expression in ICR mice during embryonic development. Reviewed International journal

    Xinyi Man, Noriyoshi Usui, Miyuki Doi, Shoichi Shimada

    Scientific reports   15 ( 1 )   24067 - 24067   2025.7

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    Language:English   Publishing type:Research paper (scientific journal)  

    The placenta is a vital organ for fetal development, providing structural support and mediating both nutrient exchange and maternal-fetal immune interactions. However, there are many aspects of murine placental development, which are used as a model organism, that are not fully understood compared to humans. In this study, we examined sex differences in placental development in ICR mice, a commonly used outbred strain, by analyzing the junctional zone (JZ) and labyrinth (LAB) from embryonic day (E) 8.5 to E18.5. At E14.5, the JZ area and its proportion relative to the total placental area (JZ + LAB) were significantly larger in females than in males. Consistently, expression levels of JZ-associated genes were also higher in female placentas at this stage. In contrast, such sex differences in placental morphology and gene expression were not observed in C57BL/6J mice, suggesting that observed features are unique to the ICR strain. Collectively, our findings demonstrate a female-biased expansion of the JZ in ICR mice at mid-gestation and underscore the presence of strain-specific patterns in sex-dependent placental development.

    DOI: 10.1038/s41598-025-10476-2

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  • Neuroprotective effects of Si-based hydrogen-producing agent on 6-hydroxydopamine-induced neurotoxicity in juvenile mouse model Reviewed

    Shogo Togawa, Noriyoshi Usui, Miyuki Doi, Yuki Kobayashi, Yoshihisa Koyama, Yukiko Nakamura, Koh Shinoda, Hikaru Kobayashi, Shoichi Shimada

    Behavioural Brain Research   468   115040 - 115040   2024.6

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    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.bbr.2024.115040

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  • Copper-deficiency is associated with impairments in social behavior and oligodendrocyte development via mTOR signaling pathway

    Noriyoshi Usui, Miyuki Doi, Stefano Berto, Kiwamu Matsuoka, Rio Ishida, Koichiro Irie, Nanako Nakama, Hana Miyauchi, Yuuki Fujiwara, Takahira Yamauchi, Takaharu Hirai, Michihiro Toritsuka, Min-Jue Xie, Yoshinori Kayashima, Naoko Umeda, Keiko Iwata, Kazuki Okumura, Taeko Harada, Takeshi Yoshimura, Taiichi Katayama, Masatsugu Tsujii, Hideo Matsuzaki, Manabu Makinodan, Shoichi Shimada

    2023.12

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    Publisher:Cold Spring Harbor Laboratory  

    Autism spectrum disorder (ASD) is a heterogeneous disorder characterized by impaired social communication and restricted repetitive behaviors, however the biological mechanisms remain unclear. Although trace elements play essential roles in the living body, it is unclear how alterations of trace elements in ASD are involved in pathogenesis. Here we analyzed the plasma metallome and identified the alterations of 11 elements in individuals with ASD. The copper decrease was negatively correlated with ASD symptom scores. A copper-deficient mouse model reflecting the condition showed ASD-like behaviors and impaired oligodendrocyte development. In copper-deficient mice, mechanistic target of rapamycin (mTOR) signaling was reduced, and its activation by agonist improved social impairment and oligodendrocyte developmental defects. Supporting these results, white matter volumes were negatively correlated with social symptoms in individuals with ASD. Our results demonstrate that copper-deficiency contributes to ASD by causing oligodendrocytes impairment via mTOR signaling. Our findings indicate that the effects of copper-deficiency and mTOR imbalance are relevant to the pathogenesis of ASD and are potential therapeutic targets.

    DOI: 10.1101/2023.12.16.23300061

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  • LONRF2 is a protein quality control ubiquitin ligase whose deficiency causes late-onset neurological deficits. Reviewed International journal

    Dan Li, Yoshikazu Johmura, Satoru Morimoto, Miyuki Doi, Keiko Nakanishi, Manabu Ozawa, Yuji Tsunekawa, Akane Inoue-Yamauchi, Hiroya Naruse, Takashi Matsukawa, Yukio Takeshita, Naoki Suzuki, Masashi Aoki, Ayumi Nishiyama, Xin Zeng, Chieko Konishi, Narumi Suzuki, Atsuya Nishiyama, Alexander Stephen Harris, Mariko Morita, Kiyoshi Yamaguchi, Yoichi Furukawa, Kenta Nakai, Shoji Tsuji, Satoshi Yamazaki, Yuji Yamanashi, Shoichi Shimada, Takashi Okada, Hideyuki Okano, Tatsushi Toda, Makoto Nakanishi

    Nature aging   3 ( 8 )   1001 - 1019   2023.8

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    Protein misfolding is a major factor of neurodegenerative diseases. Post-mitotic neurons are highly susceptible to protein aggregates that are not diluted by mitosis. Therefore, post-mitotic cells may have a specific protein quality control system. Here, we show that LONRF2 is a bona fide protein quality control ubiquitin ligase induced in post-mitotic senescent cells. Under unperturbed conditions, LONRF2 is predominantly expressed in neurons. LONRF2 binds and ubiquitylates abnormally structured TDP-43 and hnRNP M1 and artificially misfolded proteins. Lonrf2-/- mice exhibit age-dependent TDP-43-mediated motor neuron (MN) degeneration and cerebellar ataxia. Mouse induced pluripotent stem cell-derived MNs lacking LONRF2 showed reduced survival, shortening of neurites and accumulation of pTDP-43 and G3BP1 after long-term culture. The shortening of neurites in MNs from patients with amyotrophic lateral sclerosis is rescued by ectopic expression of LONRF2. Our findings reveal that LONRF2 is a protein quality control ligase whose loss may contribute to MN degeneration and motor deficits.

    DOI: 10.1038/s43587-023-00464-4

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  • Early life stress impairs brain and mental development during childhood increasing the risk of developing psychiatric disorders Reviewed

    Nanako Nakama, Noriyoshi Usui, Miyuki Doi, Shoichi Shimada

    Progress in Neuro-Psychopharmacology and Biological Psychiatry   110783 - 110783   2023.5

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    Publishing type:Research paper (scientific journal)   Publisher:Elsevier BV  

    DOI: 10.1016/j.pnpbp.2023.110783

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  • Prenatal methamphetamine exposure causes dysfunction in glucose metabolism and low birthweight Reviewed

    Miyuki Doi, Nanako Nakama, Takuya Sumi, Noriyoshi Usui, Shoichi Shimada

    Frontiers in Endocrinology   In press   2022.10

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

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  • Genomic Strategies for Understanding the Pathophysiology of Autism Spectrum Disorder Reviewed

    Miyuki Doi, Mengwei Li, Noriyoshi Usui, Shoichi Shimada

    Frontiers in Molecular Neuroscience   15   2022.6

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    Authorship:Lead author   Publishing type:Research paper (scientific journal)   Publisher:Frontiers Media SA  

    Recent breakthroughs in sequencing technology and technological developments have made it easier to analyze the entire human genome than ever before. In addition to disease-specific genetic mutations and chromosomal aberrations, epigenetic alterations in individuals can also be analyzed using genomics. Autism spectrum disorder (ASD) is a neurodevelopmental disorder (NDD) caused by genetic and/or environmental factors. More than a thousand genes associated with ASD have been identified which are known to be involved in brain development. However, it is difficult to decode the roles of ASD-associated genes without in vitro and in vivo validations, particularly in the process of brain development. In this review, we discuss genomic strategies for understanding the pathological mechanisms underlying ASD. For this purpose, we discuss ASD-associated genes and their functions, as well as analytical strategies and their strengths and weaknesses in cellular and animal models from a basic research perspective.

    DOI: 10.3389/fnmol.2022.930941

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  • Prenatal Environment and Neurodevelopmental Disorders. Reviewed International journal

    Miyuki Doi, Noriyoshi Usui, Shoichi Shimada

    Frontiers in endocrinology   13   860110 - 860110   2022

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    Authorship:Lead author   Language:English   Publishing type:Research paper (scientific journal)  

    The internal and external environment of the mother during the developmental stages of the fetus affects the offspring's health. According to the developmental origins of health and disease (DOHaD) theory, environmental factors influence the offspring and also affect health in adulthood. Recently, studies based on this theory have gained attracted attention because of their clinical utility in identifying the risk groups for various diseases. Neurodevelopmental disorders (NDDs) such as autism spectrum disorder (ASD) and attention-deficit hyperactivity disorder (ADHD) can be caused by exposure to certain prenatal environments during pregnancy. This review describes the latest findings on the effect of prenatal environment on the onset mechanism of NDDs based on the DOHaD theory. Unravelling the molecular mechanisms underlying the pathogenesis of NDDs is important, because there are no therapeutic drugs for these disorders. Furthermore, elucidating the relationship between the DOHaD theory and NDDs will contribute to the popularization of preventive medicine.

    DOI: 10.3389/fendo.2022.860110

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  • Evolution of the Human Brain Can Help Determine Pathophysiology of Neurodevelopmental Disorders. Reviewed International journal

    Koichiro Irie, Miyuki Doi, Noriyoshi Usui, Shoichi Shimada

    Frontiers in neuroscience   16   871979 - 871979   2022

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    Language:English   Publishing type:Research paper (scientific journal)  

    The evolution of humans brought about a co-occurring evolution of the human brain, which is far larger and more complex than that of many other organisms. The brain has evolved characteristically in humans in many respects, including macro-and micro-anatomical changes in the brain structure, changes in gene expression, and cell populations and ratios. These characteristics are essential for the execution of higher functions, such as sociality, language, and cognition, which express humanity, and are thought to have been acquired over evolutionary time. However, with the acquisition of higher functions also comes the risk of the disease in which they fail. This review focuses on human brain evolution and neurodevelopmental disorders (NDDs) and discusses brain development, molecular evolution, and human brain evolution. Discussing the potential for the development and pathophysiology of NDDs acquired by human brain evolution will provide insights into the acquisition and breakdown of higher functions from a new perspective.

    DOI: 10.3389/fnins.2022.871979

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  • Transient expansion of the expression region of Hsd11b1, encoding 11β-hydroxysteroid dehydrogenase type 1, in the developing mouse neocortex. Reviewed International journal

    Miyuki Doi, Yuichiro Oka, Manabu Taniguchi, Makoto Sato

    Journal of neurochemistry   159 ( 4 )   778 - 788   2021.11

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    Corticosteroids are stress-related hormones that maintain homeostasis. The most effective corticosteroids are corticosterone (CORT) in rodents and cortisol in primates. 11β-Hydroxysteroid dehydrogenase type 1 (11β-HSD1; EC 1.1.1.146), encoded by Hsd11b1, is a key regulator of the local concentration of CORT/cortisol. Hsd11b1 expression in layer 5 of the primary somatosensory cortex has been shown in adult mice. However, its localization in the entire neocortex, especially during development, has not been fully addressed. Here, we established robust and dynamic expression profiles of Hsd11b1 in the developing mouse neocortex. Hsd11b1 was found mostly in pyramidal neurons. By retrograde tracing, we observed that some Hsd11b1-positive cells were projection neurons, indicating that at least some were excitatory. At postnatal day 0 (P0), Hsd11b1 was expressed in the deep layer of the somatosensory cortex. Then, from P3 to P8, the expression area expanded broadly; it was observed in layers 4 and 5, spanning the whole neocortex, including the primary motor cortex (M1) and the primary visual cortex (V1). The positive region gradually narrowed from P14 onwards and was ultimately limited to layer 5 of the somatosensory cortex at P26 and later. Furthermore, we administered CORT to nursing dams to increase the systemic CORT level of their pups. Here, we observed a reduced number of Hsd11b1-positive cells in the neocortex of these pups. Our observation suggests that Hsd11b1 expression in the developing neocortex is affected by systemic CORT levels. It is possible that stress on mothers influences the neocortical development of their children.

    DOI: 10.1111/jnc.15505

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  • Interstitial Axon Collaterals of Callosal Neurons Form Association Projections from the Primary Somatosensory to Motor Cortex in Mice. Reviewed International journal

    Yuichiro Oka, Miyuki Doi, Manabu Taniguchi, Sheena Y X Tiong, Hisanori Akiyama, Takuto Yamamoto, Tokuichi Iguchi, Makoto Sato

    Cerebral cortex (New York, N.Y. : 1991)   31 ( 11 )   5225 - 5238   2021.10

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    Association projections from cortical pyramidal neurons connect disparate intrahemispheric cortical areas, which are implicated in higher cortical functions. The underlying developmental processes of these association projections, especially the initial phase before reaching the target areas, remain unknown. To visualize developing axons of individual neurons with association projections in the mouse neocortex, we devised a sparse labeling method that combined in utero electroporation and confocal imaging of flattened and optically cleared cortices. Using the promoter of an established callosal neuron marker gene that was expressed in over 80% of L2/3 neurons in the primary somatosensory cortex (S1) that project to the primary motor cortex (M1), we found that an association projection of a single neuron was the longest among the interstitial collaterals that branched out in L5 from the earlier-extended callosal projection. Collaterals to M1 elongated primarily within the cortical gray matter with little branching before reaching the target. Our results suggest that dual-projection neurons in S1 make a significant fraction of the association projections to M1, supporting the directed guidance mechanism in long-range corticocortical circuit formation over random projections followed by specific pruning.

    DOI: 10.1093/cercor/bhab153

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  • Kcnab1 Is Expressed in Subplate Neurons With Unilateral Long-Range Inter-Areal Projections. Reviewed International journal

    Sheena Yin Xin Tiong, Yuichiro Oka, Tatsuya Sasaki, Manabu Taniguchi, Miyuki Doi, Hisanori Akiyama, Makoto Sato

    Frontiers in neuroanatomy   13   39 - 39   2019

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    Subplate (SP) neurons are among the earliest-born neurons in the cerebral cortex and heterogeneous in terms of gene expression. SP neurons consist mainly of projection neurons, which begin to extend their axons to specific target areas very early during development. However, the relationships between axon projection and gene expression patterns of the SP neurons, and their remnant layer 6b (L6b) neurons, are largely unknown. In this study, we analyzed the corticocortical projections of L6b/SP neurons in the mouse cortex and searched for a marker gene expressed in L6b/SP neurons that have ipsilateral inter-areal projections. Retrograde tracing experiments demonstrated that L6b/SP neurons in the primary somatosensory cortex (S1) projected to the primary motor cortex (M1) within the same cortical hemisphere at postnatal day (PD) 2 but did not show any callosal projection. This unilateral projection pattern persisted into adulthood. Our microarray analysis identified the gene encoding a β subunit of voltage-gated potassium channel (Kcnab1) as being expressed in L6b/SP. Double labeling with retrograde tracing and in situ hybridization demonstrated that Kcnab1 was expressed in the unilaterally-projecting neurons in L6b/SP. Embryonic expression was specifically detected in the SP as early as embryonic day (E) 14.5, shortly after the emergence of SP. Double immunostaining experiments revealed different degrees of co-expression of the protein product Kvβ1 with L6b/SP markers Ctgf (88%), Cplx3 (79%), and Nurr1 (58%), suggesting molecular subdivision of unilaterally-projecting L6b/SP neurons. In addition to expression in L6b/SP, scattered expression of Kcnab1 was observed during postnatal stages without layer specificity. Among splicing variants with three alternative first exons, the variant 1.1 explained all the cortical expression mentioned in this study. Together, our data suggest that L6b/SP neurons have corticocortical projections and Kcnab1 expression defines a subpopulation of L6b/SP neurons with a unilateral inter-areal projection.

    DOI: 10.3389/fnana.2019.00039

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Presentations

  • 周産期のリスクが神経発達に与える影響~動物モデル研究から~ Invited

    土井 美幸, 臼井 紀好

    第66回 日本児童青年精神医学会総会  2025.11 

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    Event date: 2025.11

    Presentation type:Symposium, workshop panel (public)  

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  • 自閉スペクトラム症発症における ZBTB16の新たな機能

    土井 美幸, 臼井 紀好, 島田 昌一

    ORIGIN2025 神経科学研究会  2025.8 

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    Event date: 2025.8

    Language:Japanese   Presentation type:Oral presentation (general)  

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  • Analysis of the pathogenesis of autism spectrum disorders focusing on genetic mutations

    Miyuki Doi, Noriyoshi Usui, Tomomitsu Miyoshi, Saki Ishino, Yuki Fujiwara, Nanako Nakama, Taiichi Katayama, Shoichi shimada

    2025.7 

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    Event date: 2025.7

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  • Analysis of autism spectrum disorder pathogenesis focusing on genetic mutations International conference

    Miyuki Doi, Noriyoshi Usui, Tomomitsu Miyoshi, Saki Ishino, Yuki Fujiwara, Nanako Nakama, Taiichi Katayama, Shoichi shimada

    MEI Center and University of Côte d’Azur International Symposium  2025.6 

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    Event date: 2025.6

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  • 自閉スペクトラム症モデルマウスにおける眼球運動異常メカニズムの解析

    入江 浩 一郎, 臼井 紀好, 高瀬 篤暉, 市原 怜華, 原田 祥太郎, 今井 貴夫, 土井 美幸, 島田 昌一

    APPW2025 (第130回日本解剖学会・第102回日本生理学会・第98回日本薬理学会合同大会)  2025.3 

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    Event date: 2025.3

    Language:English   Presentation type:Oral presentation (general)  

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  • 自閉スペクトラム症における変異型Zbtb16遺伝子の機能解析

    土井 美幸, 臼井 紀好, 三好 智満, 石野 早紀, 藤原 悠紀, 仲間 菜々子, 片山 泰一, 島田 昌一

    APPW2025 (第130回日本解剖学会・第102回日本生理学会・第98回日本薬理学会合同大会)  2025.3 

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    Event date: 2025.3

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  • 自閉スペクトラム症の病態形成メカニズムにおける代謝異常の機能解析

    臼井 紀好, 土井 美幸, 藤原 悠紀, 片山 泰一, 松﨑 秀夫, 牧之段 学, 島田 昌一

    APPW2025 (第130回日本解剖学会・第102回日本生理学会・第98回日本薬理学会合同大会)  2025.3 

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    Event date: 2025.3

    Language:English   Presentation type:Poster presentation  

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  • 精神刺激薬がマウスの社会性行動に与える影響についての検討

    鍔本 侑志, 臼井 紀好, 土井 美幸, 島田 昌一

    APPW2025 (第130回日本解剖学会・第102回日本生理学会・第98回日本薬理学会合同大会)  2025.3 

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    Event date: 2025.3

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  • 遺伝子変異に着目した自閉スペクトラム症の病態形成メカニズム Invited

    土井美幸, 臼井紀好, 三好智満, 石野早紀, 藤原悠紀, 仲間菜々子, 片山泰一, 島田昌一

    第4回日本神経化学会 若手KYOUEN  2025.2 

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    Event date: 2025.2

    Language:Japanese   Presentation type:Poster presentation  

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  • 自閉スペクトラム症における変異型ZBTB16の機能解析

    土井美幸, 臼井紀好, 仲間菜々子, 藤原悠紀, 吉村武, 片山泰一, 島田昌一

    第50回日本脳科学会  2023.12 

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    Event date: 2023.12

    Presentation type:Oral presentation (general)  

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  • 自閉スペクトラム症における変異型ZBTB16の機能解析

    土井美幸, 臼井紀好, 仲間菜々子, 藤原悠紀, 吉村武, 片山泰一, 島田昌一

    第98回日本解剖学会学術集会近畿支部  2023.11 

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    Event date: 2023.11

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  • Mutation of ZBTB16 in patients with autism spectrum disorder

    2023.3 

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  • Mutation of ZBTB16 in patients with autism spectrum disorder

    2022.7 

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    Event date: 2022.6 - 2022.7

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  • 自閉スペクトラム症の発症・病態におけるZBTB16遺伝子変異の機能解析 Invited

    土井 美幸, 臼井 紀好, 三好 智満, 石野 早紀, 藤原 悠紀, 仲間 菜々子, 片山 泰一, 島田 昌一

    第47回日本分子生物学会年会  2024.11 

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    Presentation type:Symposium, workshop panel (public)  

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  • 自閉スペクトラム症の発症・病態におけるZBTB16遺伝子変異の機能解析

    土井 美幸, 臼井 紀好, 三好 智満, 石野 早紀, 藤原 悠紀, 仲間 菜々子, 片山 泰一, 島田 昌一

    第47回日本分子生物学会年会  2024.11 

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  • 自閉スペクトラム症におけるZBTB16遺伝子変異と病態形成メカニズムの解析

    土井 美幸, 臼井 紀好, 三好 智満, 石野 早紀, 藤原 悠紀, 仲間 菜々子, 片山 泰一, 島田 昌一

    第6回生理学若手研究者フォーラム  2024.11 

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  • 自閉スペクトラム症におけるZBTB16遺伝子の機能解析

    土井 美幸, 臼井 紀好, 石野 早紀, 藤原 悠紀, 仲間 菜々子, 片山 泰一, 島田 昌一

    第51回日本脳科学会  2024.11 

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  • 社会性行動におけるZBTB16転写因子の役割

    臼井 紀好, 土井 美幸, 松﨑 秀夫, 島田 昌一

    NEURO2024  2024.7 

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  • 自閉スペクトラム症における変異型ZBTB16の機能解析

    土井 美幸, 臼井 紀好, 仲間 菜々子, 藤原 悠紀, 吉村 武, 片山 泰一, 島田 昌一

    NEURO2024  2024.7 

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  • 発生におけるZBTB16転写因子の役割

    臼井 紀好, 入江 浩一郎, 叶 鑫, 高瀬 篤暉, 土井 美幸, 島田 昌一

    第129回日本解剖学会総会全国学術集会  2024.3 

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  • 自閉スペクトラム症における変異遺伝子の機能解析

    土井美幸, 臼井紀好, 仲間菜々子, 藤原悠紀, 吉村武, 片山泰一, 島田昌一

    第129回日本解剖学会総会・全国学術集会  2024.3 

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  • The transient expansion of Hsd11b1-expression region in the developing mouse neocortex

    Doi M, Oka Y, Taniguchi M, Sato M

    2021.9 

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  • Dynamic change of stress-related hormone activator gene expressing cortical areas during the postnatal development

    2020.7 

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  • An early subplate marker Kcnab1 is expressed in cortico-cortical projection neurons in layer 6b in the mouse neocortex.

    Oka Y, Tiong YXS, Yahaya MH, Sasaki T, Doi M, Yasumura M, Taniguchi M, Sato M

    第125回日本解剖学会総会・全国学術集会  2020.3 

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  • 発達段階の大脳新皮質において、Hsd11b1発現領域は一時的に拡大する

    土井美幸, 岡雄一郎, 佐藤真

    第125回日本解剖学会総会・全国学術集会  2020.3 

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  • 単一大脳皮質2/3層ニューロンによる長連合性および交連性回路の形成過程の解析

    岡雄一郎, 土井美幸, 谷口学, 猪口徳一, 佐藤真

    第46回日本脳科学会  2019.11 

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  • Kcnab1はマウス大脳皮質サブプレートの早期マーカーであり、6b層の皮質内投射ニューロンに発現する

    岡雄一郎, Sheena Y, X. Tiong, 佐々木達也, 土井美幸, 谷口学, 佐藤真

    NEURO2019(第42回日本神経科学大会、第62回日本神経化学会大会)  2019.7 

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  • マウス体性感覚野における連合及び交連ニューロン発現遺伝子のスクリーニングとその比較解析

    土井美幸

    第94回日本解剖学会近畿支部学術集会  2018.11 

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  • 単一皮質ニューロンは軸索毎に異なる伸長速度により複数領野へ同調的に投射する

    岡雄一郎, 林由佳, Sheena Y, X. Tiong, 佐々木達也, 土井美幸, 猪口徳一, 佐藤真

    第41回日本神経科学大会  2018.7 

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  • Elevated extension speed for a selected long associational collateral of a single cortical dual-projection neuron

    Oka Y, Lin Y, Tiong YXS, Sasaki T, Doi M, Iguchi T, Sato M

    2018 Joint Meeting between The Neurodevelopmental Biology Section of The Korean Society for Molecular and Cellular Biology and Japanese  2018.6 

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  • Long associational projections of Plxnd1-expressing cortical neurons are formed by interstitial collaterals from the callosally-projecting primary axonal shaft

    Oka Y, Lin Y, Tiong YXS, Sasaki T, Doi M, Iguchi T, Sato M

    22nd Biennial Meeting of the International Society for Developmental Neuroscience  2018.5 

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  • 大脳皮質ニューロン軸索側枝による領野間回路形成過程の解析

    岡 雄一郎, 林 由佳, Tiong Sheena, 土井 美幸, 佐々木 達也, 猪口 徳一, 佐藤 真

    第95回日本生理学会大会  2018.3 

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  • Distant area-targeting axonal branches of layer 2/3 neurons develop more rapidly than locally targeting branches in mouse neocortex

    Oka Y, Lin Y, Hattori M, Tiong YXS, Doi M, Sasaki T, Iguchi T, Sato M

    第48回生理研国際シンポジウム  2017.11 

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  • Developmental analysis of the inter-areal connections from cortical neurons in different layers

    Oka Y, Lin Y, Hattori M, Tiong YXS, Doi M, Iguchi T, Sato M

    第40回日本神経科学大会  2017.7 

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Awards

  • APPW2025 Young Investigator Award

    2025.3   Functional analysis of ZBTB16 mutation underlying the pathogenesis of autism spectrum disorder

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  • Japan Brain Science Society

    2023.12  

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Research Projects

  • 情動が制御する記憶強化における新たなメカニズムの解明

    2026.4 - 2029.3

    System name:科学研究費助成事業 若手研究

    Awarding organization:日本学術振興会

    土井 美幸

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    Authorship:Principal investigator 

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  • 社会性を制御する新たなメカニズムの解明

    2025.9 - 2026.8

    System name:自然科学系基礎的分野の研究に対する助成事業

    Awarding organization:公益財団法人木下記念事業団

    土井美幸

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    Authorship:Principal investigator 

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  • 社会性行動に関連する線条体神経回路の発生メカニズム解明

    2024.12 - 2026.3

    System name:第11回(2024年度) 研究助成

    Awarding organization:公益財団法人ヒロセ財団

    土井美幸, 臼井紀好

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  • コホート臍帯血と含有微量元素を利用した子どもの発達特性・健康リスク検査法の開発

    2024.6 - 2027.3

    System name:科学研究費助成事業 挑戦的研究(萌芽)

    Awarding organization:日本学術振興会 科学研究費助成事業

    臼井 紀好, 土屋 賢治, 島田 昌一, 土井 美幸

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    Authorship:Coinvestigator(s) 

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  • 自閉スペクトラム症の病態形成と脳の発達における体内微量元素の役割の解明

    Grant number:23H02837

    2023.4 - 2027.3

    System name:科学研究費助成事業

    Research category:基盤研究(B)

    Awarding organization:日本学術振興会

    臼井 紀好, 島田 昌一, 松崎 秀夫, 牧之段 学, 吉村 武, 土井 美幸

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    Grant amount:\18590000 ( Direct Cost: \14300000 、 Indirect Cost:\4290000 )

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  • Generation of a mouse model of nociplastic pain and identification of therapeutic target molecules through analyzing brain mechanisms involved in it

    Grant number:23H03002

    2023.4 - 2027.3

    System name:Grants-in-Aid for Scientific Research

    Research category:Grant-in-Aid for Scientific Research (B)

    Awarding organization:Japan Society for the Promotion of Science

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    Grant amount:\18720000 ( Direct Cost: \14400000 、 Indirect Cost:\4320000 )

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  • 薬物依存の形成を制御する神経基盤の解明

    Grant number:23K14443

    2023.4 - 2026.3

    System name:科学研究費助成事業

    Research category:若手研究

    Awarding organization:日本学術振興会

    土井 美幸

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    Grant amount:\4680000 ( Direct Cost: \3600000 、 Indirect Cost:\1080000 )

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  • 薬物依存症の発症における分子基盤の解明

    Grant number:28-2-24

    2022.9 - 2023.8

    System name:2022 年度(第28 回)医学研究助成

    Awarding organization:公益財団法人大阪難病研究財団

    土井美幸

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    Authorship:Principal investigator 

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Teaching Experience (researchmap)

  • 神経解剖学

    2025.12
    Institution name:新潟大学 医学部医学科

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  • 機器セミナー (大阪大学 大学院医学系研究科)

    2025.4

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  • 系統解剖学・系統解剖学実習

    2022.4
    Institution name:大阪大学 医学部医学科

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  • 学問への扉「脳と心と行動」

    2022.4
    Institution name:大阪大学 全学共通教育

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  • 組織学・組織学実習

    2022.4
    Institution name:大阪大学 医学部医学科

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  • 基礎医学体験実習 (大阪大学 医学部医学科)

    2022.4
    Institution name:大阪大学 医学部医学科

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  • 基礎医学講座配属

    2022.4
    Institution name:大阪大学 医学部医学科

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  • 人体系統解剖学・人体系統解剖学実習 (大阪大学 大学院医学系研究科)

    2022.4

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