26 results on '"Lam, Nicholas T."'
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2. Targeting calcineurin induces cardiomyocyte proliferation in adult mice
3. Mitochondrial fatty acid utilization increases chromatin oxidative stress in cardiomyocytes
4. Adducin Regulates Sarcomere Disassembly During Cardiomyocyte Mitosis.
5. Abstract 15792: Unchecked Cytokinesis Generates Highly Proliferative Mononuclear Cardiomyocytes at the Expense of Contractility
6. A calcineurin-Hoxb13 axis regulates growth mode of mammalian cardiomyocytes
7. Mitochondrial substrate utilization regulates cardiomyocyte cell-cycle progression
8. Cellular Basis for Myocardial Regeneration and Repair
9. Contributors
10. Neonatal Heart Regeneration: Comprehensive Literature Review
11. Cellular and Molecular Effects of Bioactive Phenolic Compounds in Olives and Olive Oil
12. Contributors
13. Abstract MP161: A Calcineurin-hoxb13 Axis Regulates Growth Mode of Mammalian Cardiomyocytes
14. Mechanism of Eccentric Cardiomyocyte Hypertrophy Secondary to Severe Mitral Regurgitation
15. DNA Damage Response Mediates Pressure Overload–Induced Cardiomyocyte Hypertrophy
16. Neonatal Heart Regeneration
17. Redox Regulation of Heart Regeneration: An Evolutionary Tradeoff
18. Abnormal mitochondrial L-arginine transport contributes to the pathogenesis of heart failure and rexoygenation injury
19. Abnormal Mitochondrial L-Arginine Transport Contributes to the Pathogenesis of Heart Failure and Rexoygenation Injury
20. Cardiogenic Genes Expressed in Cardiac Fibroblasts Contribute to Heart Development and Repair
21. PM397 Nerve Growth Factor promotes mammalian cardiomyocytes to proliferate
22. Effect of Oxygen on Cardiac Differentiation in Mouse iPS Cells: Role of Hypoxia Inducible Factor-1 and Wnt/Beta-Catenin Signaling
23. Nerve Growth Factor Stimulates Cardiac Regeneration via Cardiomyocyte Proliferation in Experimental Heart Failure
24. Nerve Growth Factor Rescues a Cardiotoxic Model of Heart Failure in Zebrafish
25. Adducin Regulates Sarcomere Disassembly During Cardiomyocyte Mitosis.
26. Hypoxia-induced stabilization of HIF2A promotes cardiomyocyte proliferation by attenuating DNA damage.
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