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Iscience|October 21, 2020
Fatty Acid Synthesis Is Indispensable for Survival of Human Pluripotent Stem CellsSho Tanosaki, Shugo Tohyama, Jun Fujita, et al.
Cell Stem Cell|November 22, 2012
Distinct metabolic flow enables large-scale purification of mouse and human pluripotent stem cell-derived cardiomyocytesShugo Tohyama, Fumiyuki Hattori, Motoaki Sano, et al.
Stem Cell Reports|May 3, 2024
H1FOO-DD promotes efficiency and uniformity in reprogramming to naive pluripotencyAkira Kunitomi, Ryoko Hirohata, Mitsujiro Osawa, et al.
Scientific Reports|March 15, 2017
Emerin plays a crucial role in nuclear invagination and in the nuclear calcium transientMasaya Shimojima, Shinsuke Yuasa, Chikaaki Motoda, et al.
The EMBO Journal|June 13, 2014
MiR-133 promotes cardiac reprogramming by directly repressing Snai1 and silencing fibroblast signaturesNaoto Muraoka, Hiroyuki Yamakawa, Kazutaka Miyamoto, et al.
FEBS Open Bio|April 9, 2015
Impaired respiratory function in MELAS-induced pluripotent stem cells with high heteroplasmy levelsMasaki Kodaira, Hideyuki Hatakeyama, Shinsuke Yuasa, et al.
The Journal of Heart and Lung Transplantation : the Official Publication of the International Society for Heart Transplantation|January 30, 2019
Development of a transplant injection device for optimal distribution and retention of human induced pluripotent stem cell‒derived cardiomyocytesRyota Tabei, Shinji Kawaguchi, Hideaki Kanazawa, et al.
Nature Methods|December 1, 2009
Nongenetic method for purifying stem cell-derived cardiomyocytesFumiyuki Hattori, Hao Chen, Hiromi Yamashita, et al.
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