46 results on '"Cai, Chen-Leng"'
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2. Endocardial HDAC3 is required for myocardial trabeculation
3. Spatial organizations of heterochromatin underpin nuclear structural integrity of ventricular cardiomyocytes against mechanical stress
4. Author Correction: Generation of the organotypic kidney structure by integrating pluripotent stem cell-derived renal stroma
5. The IncRNA, Cardiac Mesoderm Enhancer-Associated Noncoding RNA is Indispensable for Intestinal Smooth Muscle Homeostasis in Female Mice as Revealed by a Novel Endogenous Myh11-Encoded Inducible Cre Model
6. Generation of the organotypic kidney structure by integrating pluripotent stem cell-derived renal stroma
7. A unique stylopod patterning mechanism by Shox2-controlled osteogenesis.
8. QKI is a critical pre-mRNA alternative splicing regulator of cardiac myofibrillogenesis and contractile function
9. Single cell multi-omic analysis identifies a Tbx1-dependent multilineage primed population in murine cardiopharyngeal mesoderm
10. Limited Regeneration Potential with Minimal Epicardial Progenitor Conversions in the Neonatal Mouse Heart after Injury
11. Activation of iNKT Cells at the Maternal–Fetal Interface Predisposes Offspring to Cardiac Injury
12. Myocardial-specific R-spondin3 drives proliferation of the coronary stems primarily through the Leucine Rich Repeat G Protein coupled receptor LGR4
13. Smad4 deficiency impairs chondrocyte hypertrophy via the Runx2 transcription factor in mouse skeletal development
14. Novel Myh11 Dual Reporter Mouse Model Provides Definitive Labeling and Identification of Smooth Muscle Cells
15. Pkm2 Regulates Cardiomyocyte Cell Cycle and Promotes Cardiac Regeneration
16. A series of robust genetic indicators for definitive identification of cardiomyocytes
17. Endocardial HDAC3 is required for myocardial trabeculation
18. Maternal and zygotic Zfp57 modulate NOTCH signaling in cardiac development
19. Cardiac Sca-1+ Cells Are Not Intrinsic Stem Cells for Myocardial Development, Renewal, and Repair
20. Epicardial HDAC3 Promotes Myocardial Growth Through a Novel MicroRNA Pathway
21. Meteorin-like promotes heart repair through endothelial KIT receptor tyrosine kinase
22. Gene editing reverses arrhythmia susceptibility in humanized PLN-R14del mice: modelling a European cardiomyopathy with global impact
23. The Elusive Progenitor Cell in Cardiac Regeneration: Slip Slidin’ Away
24. Arrhythmia Mechanism and Dynamics in a Humanized Mouse Model of Inherited Cardiomyopathy Caused by Phospholamban R14del Mutation
25. Novel Myh11 Dual Reporter Mouse Model Provides Definitive Labeling and Identification of Smooth Muscle Cells—Brief Report
26. The Role of Tbx20 in Cardiovascular Development and Function
27. Generation ofPecam1endothelial specific dual reporter mouse model
28. Nkx2-5 defines a subpopulation of pacemaker cells and is essential for the physiological function of the sinoatrial node in mice
29. Generation of Pecam1 endothelial specific dual reporter mouse model.
30. Cardiac Sca-1+Cells Are Not Intrinsic Stem Cells for Myocardial Development, Renewal, and Repair
31. AGata4nuclear GFP transcriptional reporter to study endoderm and cardiac development in the mouse
32. CDC42 is required for epicardial and pro-epicardial development by mediating FGF receptor trafficking to the plasma membrane
33. Reduced dosage of β-catenin provides significant rescue of cardiac outflow tract anomalies in a Tbx1 conditional null mouse model of 22q11.2 deletion syndrome
34. Abstract 22: Identification of the Nature of Cardiac Resident c-kit + Cells
35. Cardiac Sca-1+ Cells Are Not Intrinsic Stem Cells for Myocardial Development, Renewal, and Repair.
36. Resident c-kit+ cells in the heart are not cardiac stem cells
37. A Murine Myh6MerCreMer Knock-In Allele Specifically Mediates Temporal Genetic Deletion in Cardiomyocytes after Tamoxifen Induction
38. Generation of a tamoxifen inducible Tnnt2MerCreMer knock‐in mouse model for cardiac studies
39. A Murine Myh6MerCreMer Knock-In Allele Specifically Mediates Temporal Genetic Deletion in Cardiomyocytes after Tamoxifen Induction.
40. Generation of a tamoxifen inducible Tnnt2 MerCreMer knock-in mouse model for cardiac studies.
41. Resident c-kit+ cells in the heart are not cardiac stem cells.
42. Generation of a novel constitutive smooth muscle cell-specific Myh11 -driven Cre mouse model.
43. Endocardial HDAC3 is required for myocardial trabeculation.
44. Generation of Pecam1 endothelial specific dual reporter mouse model.
45. A Gata4 nuclear GFP transcriptional reporter to study endoderm and cardiac development in the mouse.
46. CDC42 is required for epicardial and pro-epicardial development by mediating FGF receptor trafficking to the plasma membrane.
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