研究者業績

kumamoto kanako

  (熊本 海生航)

Profile Information

Affiliation
Advanced Medical Research Center for Animal Models of Human Diseases, Fujita Health University
Degree
博士(広島大学)

J-GLOBAL ID
201701013940448161
researchmap Member ID
7000019881

Papers

 40
  • Koyo Yoshidomi, Kazuo Kunisawa, Masaya Hasegawa, Yuki Kon, Aika Kosuge, Moeka Tanabe, Haruto Ojika, Yasuko Yamamoto, Hidetsugu Fujigaki, Suwako Fujigaki, Hiroyuki Tezuka, Sei Saitoh, Kanako Kumamoto, Masanori Kugita, Shizuko Nagao, Kuniaki Saito, Toshitaka Nabeshima, Akihiro Mouri
    Neurochemistry International, 195 106141-106141, May, 2026  
  • Kanako Kumamoto, Hiroyuki Kagami, Sei Saitoh, Shiori Yamada, Mami Matsumoto, Nobuhiko Ohno
    Scientific reports, Mar 1, 2026  
  • 福井 渓実, 白水 貴大, 釘田 雅則, 熊本 海生航, 山口 太美雄, 高橋 和男, 吉村 文, 長尾 静子
    日本腎臓学会誌, 67(4) 543-543, Jun, 2025  
  • 白水 貴大, 吉村 文, 福井 渓実, 釘田 雅則, 熊本 海生航, 八代 百合子, 白倉 美雨, 大畑 敬一, 秋江 靖樹, 山口 太美雄, 高橋 和男, 長尾 静子
    日本腎臓学会誌, 67(4) 543-543, Jun, 2025  
  • Takanori Hayashi, Kanako Kumamoto, Tatsuya Kobayashi, Xinfeng Hou, Shizuko Nagao, Nobuhiro Harada, Shinichiro Honda, Yohei Shimono, Eiji Nishio
    The FEBS journal, Feb 18, 2025  
    Estrogen is synthesized throughout various tissues in the body, and its production is regulated by the rate-limiting enzyme aromatase (encoded by the Cyp19a1 gene). Notably, aromatase is also expressed in central nervous system cells, allowing for localized estrogen synthesis in regions such as the hypothalamus. Estrogens produced within these neurons are referred to as neuroestrogens. In this study, we investigated the role of neuroestrogens in the regulation of appetite through modulation of hypothalamic pathways in OVX, ArKO, and aromatase-restored mice. Estrogen suppresses appetite by influencing the expression of appetite-regulating peptides, including POMC and NPY, via MC4R. We explored the direct effects of neuroestrogens, independent from ovarian estrogen, on appetite suppression and the underlying molecular mechanisms. We monitored body weight and food intake and evaluated the expression of Cyp19a1, Mc4r, and other appetite-related genes. Our findings indicate that OVX and ArKO mice exhibited increased body weight and food consumption, which correlated with altered expression of Mc4r and Cyp19a1. Conversely, restoration of Cyp19a1 expression in a neuron specific manner significantly decreased food intake and increased Mc4r expression in the hypothalamus. Furthermore, neuroestrogens enhanced leptin responsiveness. Our results imply that neuroestrogens likely contribute to appetite regulation and may be relevant for body weight reduction.

Misc.

 51

Teaching Experience

 6

Research Projects

 6