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Journal of Molecular and Cellular Cardiology|March 30, 2023
Reprogramming of cardiac cell fate as a therapeutic strategy for ischemic heart diseaseGlynnis A Garry, Eric N OlsonJournal of AAPOS : the Official Publication of the American Association for Pediatric Ophthalmology and Strabismus|October 1, 2014
Validation of Spot screening device for amblyopia risk factorsGlynnis A Garry, Sean P DonahueMethods in Molecular Biology (Clifton, N.J.)|August 6, 2016
Cardiotoxin Induced Injury and Skeletal Muscle RegenerationGlynnis A Garry, Marie Lue Antony, Daniel J GarrySeminars in Cell & Developmental Biology|July 11, 2021
Direct reprogramming as a route to cardiac repairGlynnis A Garry, Rhonda Bassel-Duby, Eric N OlsonThe Journal of Clinical Investigation|September 6, 2017
Deficiency in Kelch protein Klhl31 causes congenital myopathy in miceJames B Papizan, Glynnis A Garry, Svetlana Brezprozvannaya, et al.Nature Cell Biology|May 4, 2021
The histone reader PHF7 cooperates with the SWI/SNF complex at cardiac super enhancers to promote direct reprogrammingGlynnis A Garry, Svetlana Bezprozvannaya, Kenian Chen, et al.Nature Cell Biology|February 21, 2017
A Twist2-dependent progenitor cell contributes to adult skeletal muscleNing Liu, Glynnis A Garry, Stephen Li, et al.Cell Stem Cell|May 14, 2019
Cardiac Reprogramming Factors Synergistically Activate Genome-wide Cardiogenic Stage-Specific EnhancersHisayuki Hashimoto, Zhaoning Wang, Glynnis A Garry, et al.Pageof 1