Rchr
J-GLOBAL ID:201701005834668028
Update date: Oct. 25, 2021
MARI ISOMI
イソミ マリ | MARI ISOMI
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Affiliation and department:
University of Tsukuba Faculty of Medicine
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Detailed information
Research theme for competitive and other funds (1):
2017 - 2018 心臓前駆細胞誘導因子による新しい心筋誘導法の確立と分子機序解明
Papers (7):
Isomi M, Sadahiro T, Ieda M. Progress and Challenge of Cardiac Regeneration to Treat Heart Failure. Journal of cardiology. 2018
Taketaro Sadahiro, Mari Isomi, Naoto Muraoka, Hidenori Kojima, Sho Haginiwa, Shota Kurotsu, Fumiya Tamura, Hidenori Tani, Shugo Tohyama, Jun Fujita, et al. Tbx6 Induces Nascent Mesoderm from Pluripotent Stem Cells and Temporally Controls Cardiac versus Somite Lineage Diversification. Cell stem cell. 2018. 23. 3. 382-395
Kazutaka Miyamoto, Mizuha Akiyama, Fumiya Tamura, Mari Isomi, Hiroyuki Yamakawa, Taketaro Sadahiro, Naoto Muraoka, Hidenori Kojima, Sho Haginiwa, Shota Kurotsu, et al. Direct In Vivo Reprogramming with Sendai Virus Vectors Improves Cardiac Function after Myocardial Infarction. Cell stem cell. 2018. 22. 1. 91-103
Shota Kurotsu, Rina Osakabe, Mari Isomi, Fumiya Tamura, Taketaro Sadahiro, Naoto Muraoka, Hidenori Kojima, Sho Haginiwa, Hidenori Tani, Kaori Nara, et al. Distinct expression patterns of Flk1 and Flt1 in the coronary vascular system during development and after myocardial infarction. Biochemical and Biophysical Research Communications. 2018. 495. 1. 884-891
Tomohiko C. Umei, Hiroyuki Yamakawa, Naoto Muraoka, Taketaro Sadahiro, Mari Isomi, Sho Haginiwa, Hidenori Kojima, Shota Kurotsu, Fumiya Tamura, Rina Osakabe, et al. Single-Construct Polycistronic Doxycycline-Inducible Vectors Improve Direct Cardiac Reprogramming and Can Be Used to Identify the Critical Timing of Transgene Expression. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. 2017. 18. 8
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Patents (2):
多能性幹細胞からの心臓前駆細胞と心筋細胞の製造方法
線維芽細胞からの心臓前駆細胞と心筋細胞の直接製造方法
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