Glutamine Oxidation Is Indispensable for Survival of Human Pluripotent Stem Cells
Shugo Tohyama(Fujita Health University), Keiichi Fukuda(Keio University Hospital), Tomomi Matsuura(Keio University), Hideaki Kanazawa(Sakakibara Hospital), Shinsuke Yuasa(Okayama University), Motoaki Sano(Yamaguchi University), Makoto Suematsu(Central Institute for Experimental Animals), Satoshi Yasuda(National Institute of Health Sciences), Fumiyuki Hattori(Kansai Medical University), Yoshikazu Kishino(Keio University), Rei Ohno(Keio University Hospital), Yoji Sato(National Institute of Health Sciences), Takako Hishiki(Keio University), Jun Fujita(The University of Osaka), Marina Okada(Keio University Hospital), Kazuaki Nakajima(Keio University Hospital), Tomohisa Seki(Keio University), Akinori Hirano(Keio University Hospital), Takuya Kuroda(National Institute of Health Sciences)
Cited by 252
Related Papers
Distinct Metabolic Flow Enables Large-Scale Purification of Mouse and Human Pluripotent Stem Cell-Derived Cardiomyocytes
|Cell stem cell|2012|1.1k
Senolysis by glutaminolysis inhibition ameliorates various age-associated disorders
|Science|2021|434
TRPC3 and TRPC6 are essential for angiotensin II‐induced cardiac hypertrophy
|The EMBO Journal|2006|417
Mitochondrial dysfunction associated with increased oxidative stress and α-synuclein accumulation in PARK2 iPSC-derived neurons and postmortem brain tissue
|Molecular Brain|2012|392
Cardiac Innervation and Sudden Cardiac Death
|Circulation Research|2015|391