Rchr
J-GLOBAL ID:201801002245516860   Update date: Oct. 24, 2024

Ogonuki Narumi

Ogonuki Narumi
Affiliation and department:
Research field  (1): Laboratory animal science
Research theme for competitive and other funds  (4):
  • 2014 - 2017 Rescue of age-related meiotic segregation errors in mouse oocytes
  • 2011 - 2013 Improvement of microinsemination techniques with primary spermatocytes of mice based on live-cell imaging analysis
  • 2008 - 2010 A high-speed congenic strategy using first-wave male germ cells
  • 2005 - 2006 雄性生殖細胞の簡便凍結保存法と顕微授精技術を利用した産子獲得技術の開発
Papers (150):
  • Hiroko Morimoto, Narumi Ogonuki, Shogo Matoba, Mito Kanatsu-Shinohara, Atsuo Ogura, Takashi Shinohara. Restoration of fertility in nonablated recipient mice after spermatogonial stem cell transplantation. Stem cell reports. 2024. 19. 4. 443-455
  • Mito Kanatsu-Shinohara, Yusuke Shiromoto, Narumi Ogonuki, Kimiko Inoue, Satoko Hattori, Kento Miura, Naomi Watanabe, Ayumi Hasegawa, Keiji Mochida, Takuya Yamamoto, et al. Intracytoplasmic sperm injection induces transgenerational abnormalities in mice. Journal of Clinical Investigation. 2023. 133. 22
  • Shunya Ihashi, Mizuto Hamanaka, Masaya Kaji, Ryunosuke Mori, Shuntaro Nishizaki, Miki Mori, Yuma Imasato, Kimiko Inoue, Shogo Matoba, Narumi Ogonuki, et al. Incomplete activation ofAlyrefandGabpb1leads to preimplantation arrest in cloned mouse embryos. Life Science Alliance. 2023. 6. 11. e202302296-e202302296
  • Shuhei Uemura, Shoji Maenohara, Kimiko Inoue, Narumi Ogonuki, Shogo Matoba, Atsuo Ogura, Mayuko Kurumizaka, Kazuo Yamagata, Jafar Sharif, Haruhiko Koseki, et al. UHRF1 is essential for proper cytoplasmic architecture and function of mouse oocytes and derived embryos. Life Science Alliance. 2023. 6. 8. e202301904-e202301904
  • Takehiro Miyazaki, Mito Kanatsu-Shinohara, Narumi Ogonuki, Shogo Matoba, Atsuo Ogura, Chihiro Yabe-Nishimura, Hongliang Zhang, Yves Pommier, Andreas Trumpp, Takashi Shinohara. Glutamine protects mouse spermatogonial stem cells against NOX1-derived ROS for sustaining self-renewal division in vitro. Development (Cambridge, England). 2023
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MISC (96):
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