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Plos One|November 9, 2013
Transcriptome-guided functional analyses reveal novel biological properties and regulatory hierarchy of human embryonic stem cell-derived ventricular cardiomyocytes crucial for maturationEllen Poon, Bin Yan, Shaohong Zhang, et al.Stem Cell Research & Therapy|June 25, 2023
Adipose tissue-derived human mesenchymal stromal cells can better suppress complement lysis, engraft and inhibit acute graft-versus-host disease in miceStanley Chun Ming Wu, Manyu Zhu, Stanley C C Chik, et al.Journal of Clinical Medicine|July 24, 2021
Altered Electrical, Biomolecular, and Immunologic Phenotypes in a Novel Patient-Derived Stem Cell Model of Desmoglein-2 Mutant ARVCRobert N Hawthorne, Adriana Blazeski, Justin Lowenthal, et al.Stem Cells Translational Medicine|April 3, 2015
Inhibition of an NAD⁺ salvage pathway provides efficient and selective toxicity to human pluripotent stem cellsErin M Kropp, Bryndon J Oleson, Katarzyna A Broniowska, et al.Cardiovascular Research|August 8, 2012
Cardiac ryanodine receptors control heart rate and rhythmicity in adult miceMichael J Bround, Parisa Asghari, Rich B Wambolt, et al.The Journal of Biological Chemistry|March 22, 2008
Ca(2+) -stimulated basal adenylyl cyclase activity localization in membrane lipid microdomains of cardiac sinoatrial nodal pacemaker cellsAntoine Younes, Alexey E Lyashkov, David Graham, et al.Journal of Molecular and Cellular Cardiology|October 27, 2019
Enhancement of human iPSC-derived cardiomyocyte maturation by chemical conditioning in a 3D environmentChen Yu Huang, Rebeca Peres Moreno Maia-Joca, Chin Siang Ong, et al.Plos One|November 24, 2011
Distinct roles of microRNA-1 and -499 in ventricular specification and functional maturation of human embryonic stem cell-derived cardiomyocytesJi-Dong Fu, Stephanie N Rushing, Deborah K Lieu, et al.Stem Cell Reports|July 29, 2014
A human pluripotent stem cell surface N-glycoproteome resource reveals markers, extracellular epitopes, and drug targetsKenneth R Boheler, Subarna Bhattacharya, Erin M Kropp, et al.Cardiovascular Research|January 27, 2018
Integrated transcriptomic and regulatory network analyses identify microRNA-200c as a novel repressor of human pluripotent stem cell-derived cardiomyocyte differentiation and maturationEllen Ngar-Yun Poon, Baixia Hao, Daogang Guan, et al.Pageof 15