Rchr
J-GLOBAL ID:202001000729404426   Update date: Mar. 14, 2024

Kamei Hiroyasu

カメイ ヒロヤス | Kamei Hiroyasu
Affiliation and department:
Job title: Associate Professor
Homepage URL  (1): https://ridb.kanazawa-u.ac.jp/public/detail.php?id=4489
Research field  (3): Morphology, anatomy ,  Applied molecular and cellular biology ,  Zoological sciences
Research keywords  (7): Zebrafish ,  Catch-up growth ,  Oxygen ,  Growth retardation ,  Embryonic growth ,  Neural crest stem cells ,  Insulin-like growth factor
Research theme for competitive and other funds  (10):
  • 2023 - 2027 Role of transcription factor Tfcp2l1 in growth spurt phenomena in zebrafish
  • 2021 - 2024 魚類L-アミノ酸オキシダーゼの免疫調節機能:ROSシグナリング起点としての役割
  • 2018 - 2021 Cellular energy-sensing mechanism modulates insulin-like growth factor signaling to facilitate catch-up growth.
  • 2019 - 2021 REDOX SIGNALING IN CATCH-UP GROWTH
  • 2015 - 2017 Roles of insulin-like activity and neural crest cells in catch-up growth
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Papers (40):
  • Oki Hayasaka, Mukaze Shibukawa, Hiroyasu Kamei. Cellular Energy Sensor Sirt1 Augments Mapk Signaling to Promote Hypoxia/Reoxygenation-Induced Catch-up Growth in Zebrafish Embryo. Zoological Science. 2023. 41. 1
  • Ayaka Zasu, Futa Hishima, Marion Thauvin, Yosuke Yoneyama, Yoichiro Kitani, Fumihiko Hakuno, Michel Volovitch, Shin-Ichiro Takahashi, Sophie Vriz, Christine Rampon, et al. NADPH-Oxidase Derived Hydrogen Peroxide and Irs2b Facilitate Re-oxygenation-Induced Catch-Up Growth in Zebrafish Embryo. Frontiers in Endocrinology. 2022. 13. 929668-929668
  • Shin-Ichiro TAKAHASHI, Hiroyasu KAMEI, Masahiro TOMIOKA, Hitomi SEIKE, Shinji NAGATA, Atsufumi OZOE, Fumihiko HAKUNO. Physiological Significance of Insulin-like Peptide System from Evolutionary Perspective: The Anabolic Hormone Responsible for the Lifelong Health of Animals. Chemistry and Biology. 2022. 60. 5. 240-250
  • Ohira T, Terasawa T, Toyota T, Kamei H, Ogiso S, Suzuki N, Katayama H. Purification and characterization of red pigment concentrating hormone from the Alaska pink shrimp Pandalus eous. Aquatic Animals. 2022. AA2022-8
  • Hiroyasu Kamei, Cunming Duan. Alteration of organ size and allometric scaling by organ-specific targeting of IGF signaling. General and Comparative Endocrinology. 2021. 113922-113922
more...
MISC (39):
  • 中川裕斗, 亀井宏泰. ゼブラフィッシュklf11a/bの形態形成における役割. 第23回マリンバイオテクノロジー学会大会 要旨集. 2023
  • Yuto Nakagawa, Hiroyasu Kamei. Role of hypoxia-inducible gene klf11a/b in embryonic growth and development of zebrafish. International Symposium on Aquatic Animal Physiology. 2023
  • Mayu Mizuno, Yuma Nakayashiki, Oki Hayasaka, Hiroyasu Kamei. Studies on motor function in catch-up growth using zebrafish. International Symposium on Aquatic Animal Physiology. 2023
  • Futa Hishima, Ayaka Zasu, Hiroyasu Kamei. Effect of redox signals generated by oxygen deprivation and resupply on embryonic growth. International Symposium on Aquatic Animal Physiology. 2023
  • Oki Hayasaka, Hiroyasu Kamei. Zebrafish larva acquires hypoxia tolerance after temporal oxygen deprivation in embryonic period. International Symposium on Aquatic Animal Physiology. 2023
more...
Books (1):
  • ZEBRAFISH EXPERIMENTAL GUIDE
    2020
Lectures and oral presentations  (25):
  • 逆境にめげない小魚に学ぶ成長力
    (第5回生命科学概論(東京大学 大学院新領域創成科学研究科 先端生命科学専攻) 2023)
  • Neural crest cells exploit growth factor signaling for facilitating catch-up growth in zebrafish embryo.
    (International Symposium on Aquatic Animal Physiology 2023)
  • The expression of an embryonic stem cell regulator is essential to the growth regain induced by the environmental hypoxia/re-oxygenation
    (45th Molecular Biology Society of Japan, Annual Meeting 2022)
  • Neural crest cells and growth factor signaling regulate embryonic catch-up growth.
    (46th Japan Society of Comparative Endocrinology Meeting 2022)
  • 酸素の欠乏と再供給で生じる酸化還元シグナルと胚の成長補償現象
    (第44回 日本分子生物学会 年会 2021)
more...
Education (3):
  • 2002 - 2005 The University of Tokyo Graduate School of Agricultural and Life Sciences Department of Aquatic Bioscience, Ph.D. course
  • 2000 - 2002 The University of Tokyo Graduate School of Agricultural and Life Sciences Department of Aquatic Bioscience, Master course
  • 1996 - 2000 Utsunomiya University Faculty of Agriculture
Professional career (1):
  • 博士(農学) (東京大学)
Work history (8):
  • 2022/08 - 現在 Kanazawa University Faculty of Biological Science and Technology, Institute of Science and Engineering Associate Professor
  • 2018/04 - 2022/07 Kanazawa University Faculty of Biological Science and Technology, Institute of Science and Engineering Assistant Professor (Research Professor ~ Feb. 2021)
  • 2016/02 - 2018/03 Kanazawa University Institute of Science and Engineering Faculty of Natural System Assistant Professor・Research Professor
  • 2011/01 - 2016/01 The University of Tokyo Graduate School of Agricultural and Life Sciences
  • 2005/08 - 2010/12 University of Michigan Department of Molecular, Cellular, and Developmental Biology (MCDB) Postdoctoral Fellow
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Committee career (3):
  • 2021/01 - 現在 Japan Society for Comparative Endocrinology Accounting
  • 2019 - 現在 19th ICCE Executive Committee (Finance Committee)
  • 2018/12 - 2020/12 The Japan Society for Comparative Endocrinology Academic Planning Committee
Awards (5):
  • 2018/11 - The Japan Society for Comparative Endocrinology Incentive award / Encouragement award
  • 2015/03 - ゴードンリサーチカンファレンス Travel Grant Award
  • 2014/10 - 第七回国際GRS・IGFカンファレンス Travel Grant Award
  • 2011/07 - 北米比較内分泌学会 Endocrine Society Travel Award
  • 2001/09 - International symposium “Advances in Eel Biology”, Best poster prize
Association Membership(s) (5):
The Zoological Society of Japan ,  The Japan Society for Comparative Endocrinology ,  Endocrine Society ,  The Molecular Biology Society of Japan ,  The Japan Endocrine Society
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