研究者業績

芳賀 康太郎

ハガ コウタロウ  (Kotaro Haga)

基本情報

所属
藤田医科大学 臨床再生医学 循環器内科 任期付き研究員
学位
修士(理学)(2019年3月 横浜市立大学)
学士(理学)(2017年3月 横浜市立大学)

研究者番号
50990496
ORCID ID
 https://orcid.org/0000-0003-2697-2097
J-GLOBAL ID
202301016219078473
researchmap会員ID
R000056212

論文

 11
  • Taijun Moriwaki, Hidenori Tani, Kotaro Haga, Shugo Tohyama
    STAR Protocols 6(2) 103891-103891 2025年6月  
  • Tomohiko C. Umei, Shugo Tohyama, Yuika Morita-Umei, Manami Katoh, Seitaro Nomura, Kotaro Haga, Takako Hishiki, Tomomi Matsuura, Hidenori Tani, Yusuke Soma, Otoya Sekine, Masatoshi Ohno, Masashi Nakamura, Taijun Moriwaki, Yoshikazu Kishino, Keiichi Fukuda, Masaki Ieda
    iScience 28(7) 112843-112843 2025年6月  査読有り
  • Yusuke Soma, Shugo Tohyama, Akiko Kubo, Tomoteru Yamasaki, Noriko Kabasawa, Kotaro Haga, Hidenori Tani, Yuika Morita-Umei, Tomohiko C. Umei, Otoya Sekine, Masashi Nakamura, Taijun Moriwaki, Sho Tanosaki, Shota Someya, Yujiro Kawai, Masatoshi Ohno, Yoshikazu Kishino, Hideaki Kanazawa, Jun Fujita, Ming-Rong Zhang, Makoto Suematsu, Keiichi Fukuda, Masaki Ieda
    iScience 27(11) 111234-111234 2024年11月  
  • Hideki Kobayashi, Shugo Tohyama, Hajime Ichimura, Noburo Ohashi, Shuji Chino, Yusuke Soma, Hidenori Tani, Yuki Tanaka, Xiao Yang, Naoko Shiba, Shin Kadota, Kotaro Haga, Taijun Moriwaki, Yuika Morita-Umei, Tomohiko C. Umei, Otoya Sekine, Yoshikazu Kishino, Hideaki Kanazawa, Hiroyuki Kawagishi, Mitsuhiko Yamada, Kazumasa Narita, Takafumi Naito, Tatsuichiro Seto, Koichiro Kuwahara, Yuji Shiba, Keiichi Fukuda
    Circulation 2024年4月26日  査読有り
    BACKGROUND: The clinical application of human induced pluripotent stem cell–derived cardiomyocytes (CMs) for cardiac repair commenced with the epicardial delivery of engineered cardiac tissue; however, the feasibility of the direct delivery of human induced pluripotent stem cell–derived CMs into the cardiac muscle layer, which has reportedly induced electrical integration, is unclear because of concerns about poor engraftment of CMs and posttransplant arrhythmias. Thus, in this study, we prepared purified human induced pluripotent stem cell–derived cardiac spheroids (hiPSC-CSs) and investigated whether their direct injection could regenerate infarcted nonhuman primate hearts. METHODS: We performed 2 separate experiments to explore the appropriate number of human induced pluripotent stem cell–derived CMs. In the first experiment, 10 cynomolgus monkeys were subjected to myocardial infarction 2 weeks before transplantation and were designated as recipients of hiPSC-CSs containing 2×10 7 CMs or the vehicle. The animals were euthanized 12 weeks after transplantation for histological analysis, and cardiac function and arrhythmia were monitored during the observational period. In the second study, we repeated the equivalent transplantation study using more CMs (6×10 7 CMs). RESULTS: Recipients of hiPSC-CSs containing 2×10 7 CMs showed limited CM grafts and transient increases in fractional shortening compared with those of the vehicle (fractional shortening at 4 weeks after transplantation: 26.2±2.1%; 19.3±1.8%; P <0.05), with a low incidence of posttransplant arrhythmia. Transplantation of increased dose of CMs resulted in significantly greater engraftment and long-term contractile benefits (fractional shortening at 12 weeks after transplantation: 22.5±1.0%; 16.6±1.1%; P <0.01, left ventricular ejection fraction at 12 weeks after transplantation: 49.0±1.4%; 36.3±2.9%; P <0.01). The incidence of posttransplant arrhythmia slightly increased in recipients of hiPSC-CSs containing 6×10 7 CMs. CONCLUSIONS: We demonstrated that direct injection of hiPSC-CSs restores the contractile functions of injured primate hearts with an acceptable risk of posttransplant arrhythmia. Although the mechanism for the functional benefits is not fully elucidated, these findings provide a strong rationale for conducting clinical trials using the equivalent CM products.
  • Taijun Moriwaki, Hidenori Tani, Kotaro Haga, Yuika Morita-Umei, Yusuke Soma, Tomohiko C. Umei, Otoya Sekine, Kaworu Takatsuna, Yoshikazu Kishino, Hideaki Kanazawa, Jun Fujita, Keiichi Fukuda, Shugo Tohyama, Masaki Ieda
    Cell Reports Methods 3(12) 100666-100666 2023年12月  査読有り

MISC

 2

講演・口頭発表等

 2

社会貢献活動

 13