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Progress in Molecular Biology and Translational Science|August 25, 2012
Roles of microRNAs and myocardial cell differentiationTomohide Takaya, Hitoo Nishi, Takahiro Horie, et al.
Japanese Clinical Medicine|August 16, 2013
A Case of Transient ACTH Deficiency Associated with Polymyalgia RheumaticaHitoo Nishi, Yuichi Nishi, Masato Yagita, et al.
Plos One|March 15, 2017
A wild-type mouse-based model for the regression of inflammation in atherosclerosisMichael Peled, Hitoo Nishi, Ada Weinstock, et al.
Immunometabolism|June 28, 2021
Meta-Analysis of Smooth Muscle Lineage Transcriptomes in Atherosclerosis and Their Relationships to In Vitro ModelsAustin C Conklin, Hitoo Nishi, Florencia Schlamp, et al.
Journal of Cellular Physiology|January 1, 2008
Oxidative stress induces GLUT4 translocation by activation of PI3-K/Akt and dual AMPK kinase in cardiac myocytesTakahiro Horie, Koh Ono, Kazuya Nagao, et al.
Journal of Lipid Research|March 4, 2008
TG-interacting factor is required for the differentiation of preadipocytesTakahiro Horie, Koh Ono, Minako Kinoshita, et al.
Biochemical and Biophysical Research Communications|September 2, 2009
MicroRNA-133 regulates the expression of GLUT4 by targeting KLF15 and is involved in metabolic control in cardiac myocytesTakahiro Horie, Koh Ono, Hitoo Nishi, et al.
Journal of Molecular and Cellular Cardiology|October 27, 2009
Neural cell adhesion molecule is a cardioprotective factor up-regulated by metabolic stressKazuya Nagao, Koh Ono, Yoshitaka Iwanaga, et al.
The Journal of Biological Chemistry|December 17, 2009
MicroRNA-15b modulates cellular ATP levels and degenerates mitochondria via Arl2 in neonatal rat cardiac myocytesHitoo Nishi, Koh Ono, Yoshitaka Iwanaga, et al.
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