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徳島大学先端酵素学研究所基幹研究部門
徳島大学研究クラスター群研究クラスター群 (インキュベーション)2402002 光を駆使した胚発生・組織形成を操作する技術の創出
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研究活動

個人のホームページ

専門分野

ライフサイエンス (Life sciences) [生体医工学 (Biomedical engineering)]
ライフサイエンス (Life sciences) [形態、構造 (Morphology, anatomy)]
ライフサイエンス (Life sciences) [水圏生命科学 (Marine/Aquatic life sciences)]
ライフサイエンス (Life sciences) [発生生物学 (Developmental biology)]

研究テーマ

著書・論文

著書:

1. Hajime Fukui, Yuu Usui and Fukumoto Moe :
Generating neural crest fluorescent reporter line in zebrafish,
2026.

学術論文(審査論文):

1. Akira Hanashima, Yoshihiro Ujihara, Misaki Kimoto, Momoko Ohira, Yuu Usui, Ken Hashimoto and Satoshi Mohri :
Cartilaginous fish and mammalian connectin evolved independently from an ancestral bony fish-like structure,
Scientific Reports, 15, 1, 2025.
(DOI: 10.1038/s41598-025-10916-z,   Elsevier: Scopus)
2. Akira Hanashima, Misaki Kimoto, Yoshihiro Ujihara, Ken Hashimoto, Yuu Usui, Momoko Ohira, Masato Hoshino, Kentaro Uesugi, Stephanie Witt, Dittmar Labeit, Sumiko Kimura, Takashi Murayama, Takashi Sakurai, Siegfried Labeit and Satoshi Mohri :
CCDC141 is a Connectin/Titin and Nesprin-1 binding protein that adapts cardiomyocytes to mechanical stress,
Communications Biology, 8, 1, 1693, 2025.
(DOI: 10.1038/s42003-025-09093-6,   PubMed: 41298937,   Elsevier: Scopus)
3. Akira Hanashima, Yuu Usui, Ken Hashimoto and Satoshi Mohri :
The Ancestor and Evolution of the Giant Muscle Protein Connectin/Titin,
Journal of Molecular Evolution, 93, 3, 306-321, 2025.
(DOI: 10.1007/s00239-025-10247-7,   PubMed: 40287879,   Elsevier: Scopus)
4. Yuu Usui, Naoki Yamane, Akira Hanashima, Ken Hashimoto, Yuji Kanaoka and Satoshi Mohri :
Precaudal Vertebrae in the Postcranial Region of Moray Eels Form Ventral Processes.,
Journal of Morphology, 285, 10, e21776, 2024.
(DOI: 10.1002/jmor.21776,   PubMed: 39279215)
5. Ken Hashimoto, Momoko Ohira, Aya Kodama, Misaki Kimoto, Mariko Inoue, Shigenobu Toné, Yuu Usui, Akira Hanashima, Takato Goto, Yuhei Ogura, Yoshihiro Ujihara and Satoshi Mohri :
Loss of connectin novex-3 leads to heart dysfunction associated with impaired cardiomyocyte proliferation and abnormal nuclear mechanics,
Scientific Reports, 14, 1, 13727, 2024.
(DOI: 10.1038/s41598-024-64608-1,   PubMed: 38877142,   Elsevier: Scopus)
6. Yuu Usui, Akira Hanashima, Ken Hashimoto, Misaki Kimoto, Momoko Ohira and Satoshi Mohri :
Comparative analysis of ventricular stiffness across species.,
Physiological Reports, 12, 8, e16013, 2024.
(DOI: 10.14814/phy2.16013,   PubMed: 38644486)
7. Kehao Wang, Yutian Pu, Leran Chen, Masato Hoshino, Kentaro Uesugi, Naoto Yagi, Xiaoyong Chen, Yuu Usui, Akira Hanashima, Ken Hashimoto, Satoshi Mohri and K Barbara Pierscionek :
Optical development in the murine eye lens of accelerated senescence-prone SAMP8 and senescence-resistant SAMR1 strains.,
Experimental Eye Research, 241, 2024.
(DOI: 10.1016/j.exer.2024.109858,   PubMed: 38467176)
8. Yuu Usui, Misaki Kimoto, Akira Hanashima, Ken Hashimoto and Satoshi Mohri :
Cardiac hemodynamics and ventricular stiffness of sea-run cherry salmon (Oncorhynchus masou masou) differ critically from those of landlocked masu salmon.,
PLoS ONE, 17, 11, 2022.
(DOI: 10.1371/journal.pone.0267264,   PubMed: 36331913)
9. Ken Hashimoto, Aya Kodama, Momoko Ohira, Misaki Kimoto, Reiko Nakagawa, Yuu Usui, Yoshihiro Ujihara, Akira Hanashima and Satoshi Mohri :
Postnatal expression of cell cycle promoter Fam64a causes heart dysfunction by inhibiting cardiomyocyte differentiation through repression of Klf15.,
iScience, 25, 5, 2022.
(DOI: 10.1016/j.isci.2022.104337,   PubMed: 35602953)
10. Yuu Usui and Masakatsu Watanabe :
Role of the Connexin C-terminus in skin pattern formation of Zebrafish.,
BBA Advances, 1, 2021.
(DOI: 10.1016/j.bbadva.2021.100006,   PubMed: 37082017)
11. Yuu Usui, Toshihiro Aramaki, Shigeru Kondo and Masakatsu Watanabe :
The minimal gap-junction network among melanophores and xanthophores required for stripe pattern formation in zebrafish.,
Development, 146, 22, 2019.
(DOI: 10.1242/dev.181065,   PubMed: 31666235)
12. Yuu Usui, Shigeru Kondo and Masakatsu Watanabe :
Melanophore multinucleation pathways in zebrafish.,
Development Growth & Differentiation, 60, 7, 454-459, 2018.
(DOI: 10.1111/dgd.12564,   PubMed: 30088265)
13. Masatoshi Kanda, Hiroyuki Yamanaka, Satoshi Kojo, Yuu Usui, Hiroaki Honda, Yusuke Sotomaru, Michishige Harada, Masaru Taniguchi, Nao Suzuki, Tatsuya Atsumi, Haruka Wada, Muhammad Baghdadi and Ken-Ichiro Seino :
Transcriptional regulator Bhlhe40 works as a cofactor of T-bet in the regulation of IFN-γ production in iNKT cells.,
Proceedings of the National Academy of Sciences of the United States of America, 113, 24, E3394-402, 2016.
(DOI: 10.1073/pnas.1604178113,   PubMed: 27226296)
14. Hirotake Abe, Haruka Wada, Muhammad Baghdadi, Sayaka Nakanishi, Yuu Usui, Takahiro Tsuchikawa, Toshiaki Shichinohe, Satoshi Hirano and Ken-Ichiro Seino :
Identification of a highly immunogenic mouse breast cancer sub cell line, 4T1-S.,
Human Cell, 29, 2, 58-66, 2016.
(DOI: 10.1007/s13577-015-0127-1,   PubMed: 26857856)
15. Shintaro Takeuchi, Muhammad Baghdadi, Takahiro Tsuchikawa, Haruka Wada, Toru Nakamura, Hirotake Abe, Sayaka Nakanishi, Yuu Usui, Kohtaro Higuchi, Mizuna Takahashi, Kazuho Inoko, Syoki Sato, Hironobu Takano, Toshiaki Shichinohe, Ken-ichiro Seino and Satoshi Hirano :
Chemotherapy-Derived Inflammatory Responses Accelerate the Formation of Immunosuppressive Myeloid Cells in the Tissue Microenvironment of Human Pancreatic Cancer.,
Cancer Research, 75, 13, 2629-2640, 2015.
(DOI: 10.1158/0008-5472.CAN-14-2921,   PubMed: 25952647)

総説・解説:

1. Yuu Usui and Watanabe Masakatsu :
Exploring gap junction networks required for zebrafish skin pattern formation,
ATLAS of Science, Oct. 2023.
2. 臼居 優 :
スペルミジンによる体表模様形成,
メディカル・サイエンス・ダイジェスト, 48, 11, 20-22, 2022年10月.
3. Hashimoto Ken, 臼居 優, Hanashima Akira, Ujihara Yoshihiro, Tsukada Kosuke :
酸素環境と心臓再生,
メディカル・サイエンス・ダイジェスト, 48, 10, 30-33, 2022年9月.
4. 臼居 優, Watanabe Masakatsu :
ゼブラフィッシュを用いたパターン形成研究,
医学のあゆみ, 272, 3, 247-248, 2020年2月.

科学研究費補助金 (KAKEN Grants Database @ NII.ac.jp)

  • 原始的な心臓における血流駆動メカニズムの解明 (研究課題/領域番号: 26K09335 )
  • 生命進化史における酸素トレードオフに立脚した心筋再生への挑戦 (研究課題/領域番号: 24K22413 )
  • 柔軟な核を持つ心筋細胞による革新的心再生戦略の創出 (研究課題/領域番号: 24K03270 )
  • 心筋細胞内張力受容伝達システムの分子基盤と心不全治療への展開 (研究課題/領域番号: 24K03254 )
  • 拡張障害型心不全の病態解明を目指す生体医工学的マルチスケール心室拡張機能解析 (研究課題/領域番号: 23H00556 )
  • 心室壁の厚さを最適化して、機能的な心臓を生成する仕組みの解明 (研究課題/領域番号: 22K15155 )
  • 心臓再生医療の実現に向けた胎児酸素制御機構のパラダイムシフト (研究課題/領域番号: 21K19933 )
  • スペルミジンによる体表模様形成機構の解明 (研究課題/領域番号: 20K15803 )
  • 研究者番号(10868615)による検索