Rchr
J-GLOBAL ID:201201007037579368
Update date: Nov. 09, 2024
ISHIZAWA Michiyasu
イシザワ ミチヤス | ISHIZAWA Michiyasu
Affiliation and department:
Job title:
Assistant Professor
Research field (1):
Medical biochemistry
Research keywords (3):
bile acid
, vitamin D
, nuclear receptor
Research theme for competitive and other funds (7):
- 2016 - 2019 肥満モデルマウスの腸内環境及び胆汁酸代謝変動におけるビタミンD受容体の役割
- 2013 - 2016 Regulation of intestinal and hepatic immunity and metabolism by vitamin D receptor
- 2015 - 2016 Analysis of the effects of novel structural vitamin D derivatives to mice.
- 2014 - 2016 肥満モデルマウスにおけるビタミンDシグナルと胆汁酸代謝の関係
- 2010 - 2012 Regulation of inflammation and metabolism by vitamin Dreceptor in hepatic immune cells
- 2009 - 2011 ビタミンD及びリトコール酸の受容体であるビタミンD受容体のリガンド選択的作用機構
- 2006 - 2010 Dynamic regulation of metabolite-sensing nuclear receptors
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Papers (27):
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Michiyasu Ishizawa, Masashi Takano, Atsushi Kittaka, Taro Matsumoto, Makoto Makishima. 2α-Substituted Vitamin D Derivatives Effectively Enhance the Osteoblast Differentiation of Dedifferentiated Fat Cells. Biomolecules. 2024. 14. 6. 706-706
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Kazuki Maekawa, Michiyasu Ishizawa, Takashi Ikawa, Hironao Sajiki, Taro Matsumoto, Hiroaki Tokiwa, Makoto Makishima, Sachiko Yamada. Syntheses of 25-Adamantyl-25-alkyl-2-methylidene-1α,25-dihydroxyvitamin D3 Derivatives with Structure-Function Studies of Antagonistic and Agonistic Active Vitamin D Analogs. Biomolecules. 2023. 13. 7. 1082-1082
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Kubota H, Ishizawa M, Kodama M, Nagase Y, Kato S, Makishima M, Sakurai K. Vitamin D receptor mediates attenuating effect of lithocholic acid on dextran sulfate sodium induced colitis in mice. International Journal of Molecular Sciences. 2023. in press
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Yoshihara A, Kawasaki H, Masuno H, Takada K, Numoto N, Ito N, Hirata N, Kanda Y, Ishizawa M, Makishima M, et al. Lithocholic acid amides as potent vitamin D receptor agonists. Biomolecules. 2022. 12. 1. 130
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Adachi K, Ishizawa M, Uno S, Kubota H, Henmi T, Koshinaga T, Makishima M, Sakurai K. Oral benzo[a]pyrene administration attenuates dextran sulfate sodium-induced colitis in mice. Chem Biol Interact. 2022. 353. 109802
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MISC (8):
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Nishida Shigeru, Ishizawa Michiyasu, Kato Shigeaki, Makishima Makoto. Vitamin D receptor deletion changes bile acid composition in mice orally administered chenodeoxycholic acid. J Nutr Sci Vitaminol. 2020. 66. 4. 370-374
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Ishizawa Michiyasu, Akagi Daisuke, Yamamoto Jumpei, Makishima Makoto. 1α,25-Dihydroxyvitamin D3 enhances TRPV6 transcription through p38 MAPK activation and GADD45 expression. J Steroid Biochem Mol Biol. 2017. 172. 55-61
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坂根 里枝, 石澤 通康, 木村 キミト, 大西 創, 廣田 佳久, 中川 公恵, 岡野 登志夫, 槇島 誠, 須原 義智. ニューロンへの分化を誘導する新規ビタミンK誘導体の合成と簡便な活性評価法の検討. 日本薬学会年会要旨集. 2015. 135th. 2. 246-246
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石澤 通康, 高野 真史, 橘高 敦史, 坂根 里枝, 須原 義智, 山田 幸子, 槇島 誠. 1. 細胞選択的及び遺伝子選択的活性を有するビタミンD誘導体の生物活性評価(研究発表,第344回会議研究発表要旨,脂溶性ビタミン総合研究委員会). ビタミン. 2015. 89. 1. 39-40
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Sakane Rie, Kimura Kimito, Hirota Yoshihisa, Nakagawa Kimie, Ishizawa Michiyasu, Makishima Makoto, Wada Akimori, Okano Toshio, Suhara Yoshitomo. Exploring of Vitamin K Analogues Induce Selective Neuronal Differentiation of Neuronal Progenitor Cells. Symposium on the Chemistry of Natural Products, symposium papers. 2015. 57. 0. PosterP51
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Patents (1):
Lectures and oral presentations (102):
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Metabolically resistant vitamin D derivatives induce stable bone differentiation in dedifferentiated fat cells.
(2024)
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B細胞性急性リンパ芽球性白血病における新規融合遺伝子ZNF362::MAML3の同定と機能解析
(第86回日本血液学会学術集会 2024)
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分解耐性型ビタミンD誘導体は細胞治療法に利用可能な多能性細胞の骨分化誘導に有用である
(日本ビタミン学会 第76回大会 2024)
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The role of vitamin D receptor in the suppressive effects of lithocholic acid on murine colitis.
(2023)
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ビタミンD活性を有する胆汁酸誘導体の構造活性相関
(日本ビタミン学会 第75回大会 2023)
more...
Education (1):
- 2008 - 2012 Nihon University Graduate School, Division of Medicine major in pathological metabology
Work history (6):
Awards (1):
- 2010/06 - 学生優秀賞 リガンド選択的なビタミンD受容体作用発現機構の解析
Association Membership(s) (6):
日本ビタミン学会
, 日本分子生物学会
, 日本生化学会
, 日本レチノイド研究会
, 日本宇宙航空環境医学会
, 日本宇宙生物科学会
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