69 results on '"Mohsin, Sadia"'
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2. Abstract 17416: Epigenetic Regulation of Fibroblast Fate Transition in Cardiac Wound Healing
3. Abstract 18418: Osteoprotegerin Mediates T-Cell Response in Myocardial Wound Healing Post-Ischemic Injury
4. Abstract P2033: Western Diet Can Cause Adverse Cardiac Remodeling During Pregnancy By Inducing Foxo1 Expression
5. Systemic Hypoxemia Induces Cardiomyocyte Hypertrophy and Right Ventricular Specific Induction of Proliferation
6. RNA-Binding Protein LIN28a Regulates New Myocyte Formation in the Heart Through Long Noncoding RNA-H19
7. Abstract P1137: Combination Of Zebularine Treated Rat Bone Marrow Mesenchymal Stem Cells With 3d Collagen Scaffold Preserves Ventricular Remodeling In Rat Myocardial Infarction Model
8. Abstract P1030: LIN28a-induced Metabolic Reprogramming Regulates New Myocyte Formation In The Heart Via Lncrna-H19
9. Abstract 9865: Temporal Dynamics of T Cell Response After Cardiac Injury
10. Abstract 14091: Systemic Hypoxemia Induces Cardiomyocyte Cell Cycle Re-Entry but Few Myocytes Appear to Truly Divide
11. Abstract 12777: Bmi1 Mediates Chromatin Remodeling and Redox Homeostasis for Cardiac Repair After Myocardial Injury
12. Abstract MP206: Cortical Bone Derived Stem Cells Modulate The Adaptive Immune Response Post-MI
13. Cardiac Remodeling During Pregnancy With Metabolic Syndrome
14. Role of Stem Cell–Derived Microvesicles in Cardiovascular Disease
15. Abstract 16482: Cardiac Remodeling During Pregnancy With Challenge: A Prologue of Pathological Remodeling
16. Abstract 428: Cortical Bone Stem Cell-derived Exosomes Reduce Myofibroblast Activation in Rat and Human Cardiac Fibroblasts
17. Abstract 342: Cortical Bone Stem Cell Therapy Alters Macrophage Phenotype and Reduces Cardiac Cell Death After Myocardial Infarction
18. Abstract 707: Cortical-bone Stem Cell Therapy Alters the Inflammatory Response After Myocardial Infarction
19. Abstract 760: Metabolic Syndrome Impairs Cardiac Remodeling During Pregnancy in Mice
20. Abstract 723: Cortical Bone Derived Stem Cells Modulates T Cell Response After Myocardial Injury
21. Abstract 155: Lin28 Enhances Cardiac Progenitor Cell Ability to Repair the Heart by Reprogramming Cellular Metabolism
22. Abstract 257: Cortical Bone Stem Cell-Derived Exosomes Alter Wound Healing Response in Cardiac Fibroblasts and Cardiac Endothelial Cells
23. Abstract 414: Postnatal Cardiac Tissue Harbors Progenitor Cells With Unique Metabolic Profile
24. Abstract 826: Histone Deacetylase Inhibition Improves Heart Failure With Preserved Ejection Fraction Cardiopulmonary Phenotype and Induces Metabolomic Switch
25. Transient Introduction of miR-294 in the Heart Promotes Cardiomyocyte Cell Cycle Reentry After Injury
26. Abstract 364: Metabolic Syndrome Induced by High Fat/high Fructose Diet in C57bl/6 Mice Impaired Cardiac Remodeling During Pregnancy
27. Abstract 249: Cortical-bone Derived Stem Cells Improve Cardiac Outcomes After Myocardial Infarction by Modulating the Inflammatory Response
28. Abstract 336: Human Bone Contains Primitive Cells With Angiogenic and Immunomodulatory Properties
29. Abstract 343: Lin28 Enhances Cardiac Repair by Reprogramming Metabolism of Cardiac Progenitor Cells
30. Abstract 227: Inhibition of Histone Deacetylase Catalytic Activity Improves Cardiac and Pulmonary Function in a Feline Model of Heart Failure with Preserved Ejection Fraction
31. Abstract 469: Transient Introduction of miR-294 in the Heart Promotes Cardiomyocyte Cell Reentry After Injury
32. Abstract 465: Short Term Hypoxia Can Induce Adult Feline Cardiomyocytes to Re-enter the Cell Cycle and Divide
33. Abstract 554: Mechanism of Action for the Beneficial Effects of Cortical Bone Stem Cells on the Heart After Myocardial Infarction
34. Cortical Bone Stem Cell Therapy Preserves Cardiac Structure and Function After Myocardial Infarction
35. Abstract 21: Ploidy Alteration of Murine Cardiac Progenitor Cells in Response to Infarction Injury
36. Concurrent Isolation of 3 Distinct Cardiac Stem Cell Populations From a Single Human Heart Biopsy
37. Role of STIM1 (Stromal Interaction Molecule 1) in Hypertrophy-Related Contractile Dysfunction
38. Acute Catecholamine Exposure Causes Reversible Myocyte Injury Without Cardiac Regeneration
39. Abstract 364: Cortical Bone Stem Cells Derived Exosomes as Potent Modulator of Cardiac Immune Response and Repair After Injury
40. Abstract 84: Remodeling of Repolarization and Arrhythmia Susceptibility in a Myosin Binding Protein C Knockout Mouse Model
41. Abstract 350: Chromosome Content of Cardiac Progenitor Cells Influence on Regenerative Potential in the Heart
42. Abstract 21: Effect of Hypoxic Preconditioning on Cortical Bone Stem Cells (CBSCs)
43. Abstract 298: Pluripotent Stem Cell Microrna-294 as a Mediator of Cardiac Proliferative Response After Myocardial Injury
44. Abstract 2: Cortical Bone Stem Cells Derived Exosomes as Potent Modulator of Cardiac Immune Response and Repair After Injury
45. Unique Features of Cortical Bone Stem Cells Associated With Repair of the Injured Heart
46. Abstract 17632: STIM1 Increases Calcium Stores in the Sarcoplasmic Reticulum of Adult Feline Ventricular Myocytes
47. Abstract 18293: Unique Features of Cortical Bone Stem Cells Associated With Enhanced Cardiac Repair
48. GDF11 Does Not Rescue Aging-Related Pathological Hypertrophy
49. Hrd1 and ER-Associated Protein Degradation, ERAD, Are Critical Elements of the Adaptive ER Stress Response in Cardiac Myocytes
50. Abstract 157: Unique Features of Cortical Bone Stem Cells Associated With Enhanced Cardiac Repair
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