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Jun-Ichi Abe

Showing results (61-70 of 180) with videos related to

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Heart Failure Clinics|June 19, 2022
Myocardial Dysfunction in Patients with CancerEfstratios Koutroumpakis, Nikhil Agrawal, Nicolas L Palaskas, et al.
Circulation Research|May 10, 2005
BMK1/ERK5 is a novel regulator of angiogenesis by destabilizing hypoxia inducible factor 1alphaXinchun Pi, Gwenaele Garin, Liang Xie, et al.
International Journal of Inflammation|September 20, 2012
Reactive Oxygen Species, SUMOylation, and Endothelial InflammationNhat-Tu Le, James P Corsetti, Janet L Dehoff-Sparks, et al.
Cellular and Molecular Life Sciences : CMLS|January 1, 2017
Flow signaling and atherosclerosisNhat-Tu Le, Uday G Sandhu, Raymundo A Quintana-Quezada, et al.
Genes|June 12, 2020
Rapid Evaluation of CRISPR Guides and Donors for Engineering MiceElena McBeath, Jan Parker-Thornburg, Yuka Fujii, et al.
Circulation Research|May 26, 2007
Flow antagonizes TNF-alpha signaling in endothelial cells by inhibiting caspase-dependent PKC zeta processingGwenaele Garin, Jun-ichi Abe, Amy Mohan, et al.
Biochemical and Biophysical Research Communications|May 30, 2006
Central role of endogenous Toll-like receptor-2 activation in regulating inflammation, reactive oxygen species production, and subsequent neointimal formation after vascular injuryTetsuro Shishido, Naoki Nozaki, Hiroki Takahashi, et al.
Circulation Research|May 10, 2008
Effects of MEK5/ERK5 association on small ubiquitin-related modification of ERK5: implications for diabetic ventricular dysfunction after myocardial infarctionTetsuro Shishido, Chang-Hoon Woo, Bo Ding, et al.
Circulation Research|February 6, 2013
De-SUMOylation enzyme of sentrin/SUMO-specific protease 2 regulates disturbed flow-induced SUMOylation of ERK5 and p53 that leads to endothelial dysfunction and atherosclerosisKyung-Sun Heo, Eugene Chang, Nhat-Tu Le, et al.
The Journal of Biological Chemistry|March 15, 2003
Regulation of epidermal growth factor-induced connexin 43 gap junction communication by big mitogen-activated protein kinase1/ERK5 but not ERK1/2 kinase activationScott J Cameron, Sundeep Malik, Masashi Akaike, et al.
Pageof 18

Showing results (61-70 of 180) with videos related to

Sort By:
Pageof 18
Heart Failure Clinics|June 19, 2022
Myocardial Dysfunction in Patients with CancerEfstratios Koutroumpakis, Nikhil Agrawal, Nicolas L Palaskas, et al.
Circulation Research|May 10, 2005
BMK1/ERK5 is a novel regulator of angiogenesis by destabilizing hypoxia inducible factor 1alphaXinchun Pi, Gwenaele Garin, Liang Xie, et al.
International Journal of Inflammation|September 20, 2012
Reactive Oxygen Species, SUMOylation, and Endothelial InflammationNhat-Tu Le, James P Corsetti, Janet L Dehoff-Sparks, et al.
Cellular and Molecular Life Sciences : CMLS|January 1, 2017
Flow signaling and atherosclerosisNhat-Tu Le, Uday G Sandhu, Raymundo A Quintana-Quezada, et al.
Genes|June 12, 2020
Rapid Evaluation of CRISPR Guides and Donors for Engineering MiceElena McBeath, Jan Parker-Thornburg, Yuka Fujii, et al.
Circulation Research|May 26, 2007
Flow antagonizes TNF-alpha signaling in endothelial cells by inhibiting caspase-dependent PKC zeta processingGwenaele Garin, Jun-ichi Abe, Amy Mohan, et al.
Biochemical and Biophysical Research Communications|May 30, 2006
Central role of endogenous Toll-like receptor-2 activation in regulating inflammation, reactive oxygen species production, and subsequent neointimal formation after vascular injuryTetsuro Shishido, Naoki Nozaki, Hiroki Takahashi, et al.
Circulation Research|May 10, 2008
Effects of MEK5/ERK5 association on small ubiquitin-related modification of ERK5: implications for diabetic ventricular dysfunction after myocardial infarctionTetsuro Shishido, Chang-Hoon Woo, Bo Ding, et al.
Circulation Research|February 6, 2013
De-SUMOylation enzyme of sentrin/SUMO-specific protease 2 regulates disturbed flow-induced SUMOylation of ERK5 and p53 that leads to endothelial dysfunction and atherosclerosisKyung-Sun Heo, Eugene Chang, Nhat-Tu Le, et al.
The Journal of Biological Chemistry|March 15, 2003
Regulation of epidermal growth factor-induced connexin 43 gap junction communication by big mitogen-activated protein kinase1/ERK5 but not ERK1/2 kinase activationScott J Cameron, Sundeep Malik, Masashi Akaike, et al.
Pageof 18