Updated on 2024/10/04

写真a

 
KATAOKA Naoya
 
Organization
Graduate School of Medicine Designated Lecturer
Title
Designated Lecturer

Degree 1

  1. 博士(農学) ( 2009.3   鳥取大学 ) 

Research Interests 4

  1. sympathetic nerve

  2. hyperthermia

  3. Brown adipose tissue thermogenesis

  4. psychological stress

Research History 1

  1. Nagoya University   Designated Lecturer

    2020.5

      More details

    Country:Japan

Awards 1

  1. 第22回 日本生理学会奨励賞

    2021.3   日本生理学会  

     More details

    Award type:Award from Japanese society, conference, symposium, etc. 

 

Papers 14

  1. Prostaglandin EP3 receptor-expressing preoptic neurons bidirectionally control body temperature via tonic GABAergic signaling

    Nakamura Yoshiko, Yahiro Takaki, Fukushima Akihiro, Kataoka Naoya, Hioki Hiroyuki, Nakamura Kazuhiro

    SCIENCE ADVANCES   Vol. 8 ( 51 ) page: eadd5463   2022.12

     More details

  2. An oxytocinergic neural pathway that stimulates thermogenic and cardiac sympathetic outflow

    Fukushima Akihiro, Kataoka Naoya, Nakamura Kazuhiro

    CELL REPORTS   Vol. 40 ( 12 ) page: 111380   2022.9

     More details

  3. A brainstem monosynaptic excitatory pathway that drives locomotor activities and sympathetic cardiovascular responses

    Koba Satoshi, Kumada Nao, Narai Emi, Kataoka Naoya, Nakamura Kazuhiro, Watanabe Tatsuo

    NATURE COMMUNICATIONS   Vol. 13 ( 1 ) page: 5079   2022.8

     More details

  4. A hypothalamomedullary network for physiological responses to environmental stresses

    Nakamura Kazuhiro, Nakamura Yoshiko, Kataoka Naoya

    NATURE REVIEWS NEUROSCIENCE   Vol. 23 ( 1 ) page: 35 - 52   2022.1

     More details

  5. Metabolic flexibility via mitochondrial BCAA carrier SLC25A44 is required for optimal fever

    Yoneshiro Takeshi, Kataoka Naoya, Walejko Jacquelyn M., Ikeda Kenji, Brown Zachary, Yoneshiro Momoko, Crown Scott B., Osawa Tsuyoshi, Sakai Juro, McGarrah Robert W., White Phillip J., Nakamura Kazuhiro, Kajimura Shingo

    ELIFE   Vol. 10   2021.5

     More details

▼display all

KAKENHI (Grants-in-Aid for Scientific Research) 6

  1. Development of in vivo 4D visualization technology and applide biology for psychosomatic correlation

    Grant number:23H03846  2023.4 - 2026.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Transformative Research Areas (B)

      More details

    Authorship:Principal investigator 

    Grant amount:\38610000 ( Direct Cost: \29700000 、 Indirect Cost:\8910000 )

  2. Creation of multi-scale 4D biology

    Grant number:23B303  2023.4 - 2026.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Transformative Research Areas (B)

      More details

    Authorship:Principal investigator 

  3. Creation of multi-scale 4D biology

    Grant number:23H03844  2023.4 - 2026.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Transformative Research Areas (B)

      More details

    Authorship:Principal investigator 

    Grant amount:\6240000 ( Direct Cost: \4800000 、 Indirect Cost:\1440000 )

  4. 様々なストレス関連疾患の原因となるストレスホルモンの分泌制御機構解明

    Grant number:22K06470  2022.4 - 2025.3

    科学研究費助成事業  基盤研究(C)

    片岡 直也

      More details

    Authorship:Principal investigator 

    Grant amount:\4030000 ( Direct Cost: \3100000 、 Indirect Cost:\930000 )

    ストレスホルモン分泌を担うCRHニューロンが存在する PVHへストレス信号を入力する神経路は様々な報告がある。さらに、様々な環境刺激によって変化する血中ストレスホルモン濃度の分泌制御を担う中枢神経メカニズムも明らかになっていない。本研究では、PVHより上位に位置する複数の神経核が複雑な神経ネットワークを形成し、相互に神経活動のバランスを制御することでストレスホルモン分泌の強弱を決定すると仮説をたてた。この仮説を検証するため神経ネットワークのバランスを捉えるマルチファイバフォトメトリを駆使し、ストレスホルモン分泌と神経伝達路の活動相関をから、ストレスホルモン分泌制御機構の全容解明を目指す。

  5. Elucidation of higher central nervous circuits involved in inducing of psychological stress responses using by real-time multiple fiber-photometry

    Grant number:19K06954  2019.4 - 2023.3

    Grants-in-Aid for Scientific Research  Grant-in-Aid for Scientific Research (C)

      More details

    Authorship:Principal investigator 

    Grant amount:\4420000 ( Direct Cost: \3400000 、 Indirect Cost:\1020000 )

▼display all

 

Teaching Experience (On-campus) 3

  1. 基礎医学セミナー

    2022

  2. 生体の機能II・本能行動「ストレス」

    2022

  3. 後期基礎セミナー「Meet the authors」

    2021