Ngā hua rapu - Gias U. Ahmmed
- E whakaatu ana i te 1 - 8 hua o te 8
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Changes in Ca <sup>2+</sup> Cycling Proteins Underlie Cardiac Action Potential Prolongation in a Pressure-Overloaded Guinea Pig Model With Cardiac Hypertrophy and Failure mā Gias U. Ahmmed, Pei Dong, Guoji Song, Nancy Ball, Yanfang Xu, Richard A. Walsh, Nipavan Chiamvimonvat
I whakaputaina 2000Artigo -
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Angiopoietin-1 Opposes VEGF-Induced Increase in Endothelial Permeability by Inhibiting TRPC1-Dependent Ca <sup>2</sup> Influx mā David H. Jho, Dolly Mehta, Gias U. Ahmmed, Xiao-Pei Gao, Chinnaswamy Tiruppathì, Michael Broman, Asrar B. Malik
I whakaputaina 2005Artigo -
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Protein Kinase Cα Phosphorylates the TRPC1 Channel and Regulates Store-operated Ca2+ Entry in Endothelial Cells mā Gias U. Ahmmed, Dolly Mehta, Stephen M. Vogel, Michael Holinstat, Biman C. Paria, Chinnaswamy Tiruppathì, Asrar B. Malik
I whakaputaina 2004Artigo -
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RhoA Interaction with Inositol 1,4,5-Trisphosphate Receptor and Transient Receptor Potential Channel-1 Regulates Ca2+ Entry mā Dolly Mehta, Gias U. Ahmmed, Biman C. Paria, Michael Holinstat, T. Voyno-Yasenetskaya, Chinnaswamy Tiruppathì, Richard D. Minshall, Asrar B. Malik
I whakaputaina 2003Artigo
Ngā utauta rapu:
Ngā marau whai pānga
Chemistry
Biochemistry
Biology
Cell biology
Receptor
Intracellular
Transient receptor potential channel
Endocrinology
Biophysics
Cancer research
Endothelial stem cell
In vitro
RHOA
Signal transduction
TRPC1
VEGF receptors
Vascular endothelial growth factor
Adherens junction
Angiogenesis
Archaeology
Cadherin
Cardiac hypertrophy
Cardiology
Cell
Channel (broadcasting)
Computer science
Diacylglycerol kinase
Electrophysiology
Endothelium
Exocytosis