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Author Details

Yang Zhou
University of Alabama at Birmingham
2015
29
15
Jake Y. Chen (CM4AI)
PMIDPaper TitleJournal TitlePublished Year
36845191Comparative analysis of the cardiomyocyte differentiation potential of induced pluripotent stem cells reprogrammed from human atrial or ventricular fibroblasts.Front Bioeng Biotechnol2023
37565345CCND2 Modified mRNA Activates Cell Cycle of Cardiomyocytes in Hearts With Myocardial Infarction in Mice and Pigs.Circ Res2023
37100826Analysis of cardiac single-cell RNA-sequencing data can be improved by the use of artificial-intelligence-based tools.Sci Rep2023
36845191Comparative analysis of the cardiomyocyte differentiation potential of induced pluripotent stem cells reprogrammed from human atrial or ventricular fibroblasts.Front Bioeng Biotechnol2023
37565345CCND2 Modified mRNA Activates Cell Cycle of Cardiomyocytes in Hearts With Myocardial Infarction in Mice and Pigs.Circ Res2023
37100826Analysis of cardiac single-cell RNA-sequencing data can be improved by the use of artificial-intelligence-based tools.Sci Rep2023
36102189TBX20 Improves Contractility and Mitochondrial Function During Direct Human Cardiac Reprogramming.Circulation2022
36102189TBX20 Improves Contractility and Mitochondrial Function During Direct Human Cardiac Reprogramming.Circulation2022
35860330Cardiomyocyte Cell-Cycle Regulation in Neonatal Large Mammals: Single Nucleus RNA-Sequencing Data Analysis <i>via</i> an Artificial-Intelligence-Based Pipeline.Front Bioeng Biotechnol2022
35666813Single Nucleus Transcriptomics: Apical Resection in Newborn Pigs Extends the Time Window of Cardiomyocyte Proliferation and Myocardial Regeneration.Circulation2022
35666813Single Nucleus Transcriptomics: Apical Resection in Newborn Pigs Extends the Time Window of Cardiomyocyte Proliferation and Myocardial Regeneration.Circulation2022
35860330Cardiomyocyte Cell-Cycle Regulation in Neonatal Large Mammals: Single Nucleus RNA-Sequencing Data Analysis <i>via</i> an Artificial-Intelligence-Based Pipeline.Front Bioeng Biotechnol2022
33399005Changes in Cardiomyocyte Cell Cycle and Hypertrophic Growth During Fetal to Adult in Mammals.J Am Heart Assoc2021
33951921Cyclin D2 Overexpression Enhances the Efficacy of Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes for Myocardial Repair in a Swine Model of Myocardial Infarction.Circulation2021
33842440Cardiac Fibroblasts and Myocardial Regeneration.Front Bioeng Biotechnol2021
34149424miR-199a Overexpression Enhances the Potency of Human Induced-Pluripotent Stem-Cell-Derived Cardiomyocytes for Myocardial Repair.Front Pharmacol2021
34087994Inhibition of EZH2 primes the cardiac gene activation via removal of epigenetic repression during human direct cardiac reprogramming.Stem Cell Res2021
33399005Changes in Cardiomyocyte Cell Cycle and Hypertrophic Growth During Fetal to Adult in Mammals.J Am Heart Assoc2021
34676829TT-10-loaded nanoparticles promote cardiomyocyte proliferation and cardiac repair in a mouse model of myocardial infarction.JCI Insight2021
34597364Transcription factor MEF2D is required for the maintenance of MLL-rearranged acute myeloid leukemia.Blood Adv2021
33842440Cardiac Fibroblasts and Myocardial Regeneration.Front Bioeng Biotechnol2021
34597364Transcription factor MEF2D is required for the maintenance of MLL-rearranged acute myeloid leukemia.Blood Adv2021
34676829TT-10-loaded nanoparticles promote cardiomyocyte proliferation and cardiac repair in a mouse model of myocardial infarction.JCI Insight2021
34149424miR-199a Overexpression Enhances the Potency of Human Induced-Pluripotent Stem-Cell-Derived Cardiomyocytes for Myocardial Repair.Front Pharmacol2021
33951921Cyclin D2 Overexpression Enhances the Efficacy of Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes for Myocardial Repair in a Swine Model of Myocardial Infarction.Circulation2021
34087994Inhibition of EZH2 primes the cardiac gene activation via removal of epigenetic repression during human direct cardiac reprogramming.Stem Cell Res2021
32453661Single-Cell Transcriptomics: New Insights in Heart Research.Circulation2020
32453661Single-Cell Transcriptomics: New Insights in Heart Research.Circulation2020
33087505Down-regulation of Beclin1 promotes direct cardiac reprogramming.Sci Transl Med2020
32866067Apical Resection Prolongs the Cell Cycle Activity and Promotes Myocardial Regeneration After Left Ventricular Injury in Neonatal Pig.Circulation2020
32728671An Optimized Protocol for Human Direct Cardiac Reprogramming.STAR Protoc2020
33087505Down-regulation of Beclin1 promotes direct cardiac reprogramming.Sci Transl Med2020
32728671An Optimized Protocol for Human Direct Cardiac Reprogramming.STAR Protoc2020
32866067Apical Resection Prolongs the Cell Cycle Activity and Promotes Myocardial Regeneration After Left Ventricular Injury in Neonatal Pig.Circulation2020
31230860Single-Cell Transcriptomic Analyses of Cell Fate Transitions during Human Cardiac Reprogramming.Cell Stem Cell2019
31852937Deciphering Role of Wnt Signalling in Cardiac Mesoderm and Cardiomyocyte Differentiation from Human iPSCs: Four-dimensional control of Wnt pathway for hiPSC-CMs differentiation.Sci Rep2019
31230860Single-Cell Transcriptomic Analyses of Cell Fate Transitions during Human Cardiac Reprogramming.Cell Stem Cell2019
31852937Deciphering Role of Wnt Signalling in Cardiac Mesoderm and Cardiomyocyte Differentiation from Human iPSCs: Four-dimensional control of Wnt pathway for hiPSC-CMs differentiation.Sci Rep2019
29743891A Loss of Function Screen of Epigenetic Modifiers and Splicing Factors during Early Stage of Cardiac Reprogramming.Stem Cells Int2018
29743891A Loss of Function Screen of Epigenetic Modifiers and Splicing Factors during Early Stage of Cardiac Reprogramming.Stem Cells Int2018
28526819Systematic comparison of 2A peptides for cloning multi-genes in a polycistronic vector.Sci Rep2017
28954220Comparative Gene Expression Analyses Reveal Distinct Molecular Signatures between Differentially Reprogrammed Cardiomyocytes.Cell Rep2017
28526819Systematic comparison of 2A peptides for cloning multi-genes in a polycistronic vector.Sci Rep2017
29072293Single-cell transcriptomics reconstructs fate conversion from fibroblast to cardiomyocyte.Nature2017
29072293Single-cell transcriptomics reconstructs fate conversion from fibroblast to cardiomyocyte.Nature2017
28954220Comparative Gene Expression Analyses Reveal Distinct Molecular Signatures between Differentially Reprogrammed Cardiomyocytes.Cell Rep2017
26957038Re-patterning of H3K27me3, H3K4me3 and DNA methylation during fibroblast conversion into induced cardiomyocytes.Stem Cell Res2016
27344947Epigenetic Perturbations by Arg882-Mutated DNMT3A Potentiate Aberrant Stem Cell Gene-Expression Program and Acute Leukemia Development.Cancer Cell2016
27194122Generation of an inducible fibroblast cell line for studying direct cardiac reprogramming.Genesis2016
26957038Re-patterning of H3K27me3, H3K4me3 and DNA methylation during fibroblast conversion into induced cardiomyocytes.Stem Cell Res2016
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Collaborators

University of Alabama at Birmingham, 1670 University Boulevard
Co-authored papers 15
University of Alabama at Birmingham
Co-authored papers 6
University of Alabama at Birmingham
Co-authored papers 5
University of Alabama at Birmingham
Co-authored papers 4
National Engineering Research Center of Cell Products, AmCellGene Engineering Co.
Co-authored papers 4
The Second Xiangya Hospital, Central South University
Co-authored papers 4
University of Alabama at Birmingham, 1670 University Boulevard
Co-authored papers 3
Binzhou Medical University
Co-authored papers 3
University of Alabama at Birmingham.
Co-authored papers 2
Co-authored papers 2
University of Alabama at Birmingham
Co-authored papers 2
University of Alabama at Birmingham.
Co-authored papers 2
Co-authored papers 2
University of Michigan ann arbor
Co-authored papers 2
Co-authored papers 1
Lillehei Heart Institute, University of Minnesota
Co-authored papers 1
University of Minnesota
Co-authored papers 1
University of Minnesota
Co-authored papers 1
University of Alabama at Birmingham.
Co-authored papers 1
University of Alabama at Birmingham
Co-authored papers 1
University of Alabama at Birmingham
Co-authored papers 1
University of Alabama at Birmingham
Co-authored papers 1
College of Biomedical Engineering, Taiyuan University of Technology
Co-authored papers 1
Union Hospital, Tongji Medical College, Huazhong University of Science and Technology
Co-authored papers 1
University of Alabama at Birmingham.
Co-authored papers 1
Mayo Clinic
Co-authored papers 1