Rchr
J-GLOBAL ID:201401006197213708   Update date: Sep. 03, 2023

Megumu Saito

サイトウ メグム | Megumu Saito
Affiliation and department:
Job title: Professor
Research field  (1): Fetal medicine/Pediatrics
Research keywords  (2): 再生医学 ,  小児の免疫学
Research theme for competitive and other funds  (18):
  • 2020 - 2024 ヒト神経筋接合部モデルを用いた先天性筋無力症候群などの病態解析
  • 2018 - 2021 The elucidation of neurogenesis mechanism by novel RNA binding protein Marf1, related with 16p13.11 duplication syndrome
  • 2016 - 2020 Development and application of human neuromuscular junctions
  • 2017 - 2019 Functional analysis of RPL5 using induced pluripotent stem cells from the patient with Diamond-Blackfan Anemia
  • 2015 - 2018 Exploration of the causative genes and elucidation of the pathophysiology on immune dysregulatory diseases with intractable inflammation
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Papers (121):
  • Motoyasu Hosokawa, Ryuta Mikawa, Atsuko Hagiwara, Yukiko Okuno, Tomonari Awaya, Yuki Yamamoto, Senye Takahashi, Haruka Yamaki, Mitsujiro Osawa, Yasuhiro Setoguchi, et al. Cryptotanshinone is a candidate therapeutic agent for interstitial lung disease associated with a BRICHOS-domain mutation of SFTPC. iScience. 2023. 107731-107731
  • Naoya Kase, Yohko Kitagawa, Akihiro Ikenaka, Akira Niwa, Megumu K. Saito. A concise in vitro model for evaluating interactions between macrophage and skeletal muscle cells during muscle regeneration. Frontiers in Cell and Developmental Biology. 2023. 11. 1022081-1022081
  • Akihiro Ikenaka, Yohko Kitagawa, Michiko Yoshida, Chuang-Yu Lin, Akira Niwa, Tatsutoshi Nakahata, Megumu K Saito. SMN promotes mitochondrial metabolic maturation during myogenesis by regulating the MYOD-miRNA axis. Life science alliance. 2023. 6. 3
  • Takahiro Hayashi, Naoko Yano, Kengo Kora, Atsushi Yokoyama, Kanako Maizuru, Taisei Kayaki, Kinuko Nishikawa, Mitsujiro Osawa, Akira Niwa, Toshiki Takenouchi, et al. Involvement of mTOR pathway in neurodegeneration in NSF-related developmental and epileptic encephalopathy. Human molecular genetics. 2023. 32. 10. 1683-1697
  • Shigeharu Oh, Akira Niwa, Ayako Nagahashi, Isao Asaka, Tatsutoshi Nakahata, Megumu K Saito. iPS cells from Chediak-Higashi syndrome patients recapitulate the giant granules in myeloid cells. Pediatrics international : official journal of the Japan Pediatric Society. 2022. 64. 1. e15390
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MISC (200):
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Patents (6):
Lectures and oral presentations  (3):
  • PRULIPOTENT STEM CELL DERIVED MYELOID CELL LINES FOR DISSECTING THE MECHANISM OF AUTOINFLAMMATION.
    (ISSAID2019 2019)
  • PLURIPOTENT STEM CELL MODEL OF NAKAJO-NISHIMURA SYNDROME UNTANGLES PROINFLAMMATORY PATHWAYS MEDIATED BY OXIDATIVE STRESS.
    (ESID2018 2018)
  • MODELING AN AUTOINFLAMMATORY IMMUNOPROTEASOME DISEASE NAKAJO-NISHIMURA SYNDROME WITH HUMAN PLURIPOTENT STEM CELL-DERIVED MYELOID CELL LINES
    (EULAR2018 2018)
Education (3):
  • 2004 - 2008 Kyoto University Graduate School of Medicine Department of Pediatrics
  • 1991 - 1997 Kyoto University Faculty of Medicine Department of Medical Science
  • - 1991 岡山県立岡山操山高等学校
Work history (8):
  • 2022/05 - 現在 京都大学iPS細胞研究所 教授
  • 2012/07 - 2022/04 京都大学iPS細胞研究所 准教授
  • 2011/07 - 2012/06 京都大学iPS細胞研究所 特定拠点講師
  • 2009/04 - 2011/06 京都大学iPS細胞研究所 特定拠点助教
  • 2007/04 - 2009/03 Japan Society for the Promotion of Science
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