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1. Transient Cell Cycle Induction in Cardiomyocytes to Treat Subacute Ischemic Heart Failure

2. Heart slice culture system reliably demonstrates clinical drug-related cardiotoxicity.

5. Gene therapy encoding cell cycle factors to treat chronic ischemic heart failure in rats

8. Abstract 14391: Transient Cell Cycle Induction in Cardiomyocytes is a Promising Approach to Treat Ischemia Induced Heart Failure

9. Physiological Biomimetic Culture System for Pig and Human Heart Slices

10. Abstract 10492: Preclinical Evaluation of Transient and Cardiomyocyte Specific Gene Therapy for the Treatment of Subacute Ischemic Heart Failure

14. The Effect of Cardiogenic Factors on Cardiac Mesenchymal Cell Anti-Fibrogenic Paracrine Signaling and Therapeutic Performance

17. Abstract 208: Reliable Biomimetic Culture System for Pig and Human Heart Slices

18. Correction: The heme oxygenase 1 inducer (CoPP) protects human cardiac stem cells against apoptosis through activation of the extracellular signal-related kinase (ERK)/NRF2 signaling pathway and cytokine release.

24. Long-Term Outcome of Administration of c-kitPOS Cardiac Progenitor Cells After Acute Myocardial Infarction: Transplanted Cells Do Not Become Cardiomyocytes, Structural and Functional Improvement and Proliferation of Endogenous Cells Persist for at Least One Year

25. Myocardial Reparative Properties of Cardiac Mesenchymal Cells Isolated on the Basis of Adherence

26. Cyclooxygenase-2 mediates the cardioprotective effects of the late phase of ischemic preconditioning in conscious rabbits

27. The late phase of ischemic preconditioning is abrogated by targeted disruption of the inducible NO synthase gene

28. Repeated Administrations of Cardiac Progenitor Cells Are Markedly More Effective Than a Single Administration

31. Safety of Intracoronary Infusion of 20 Million C-Kit Positive Human Cardiac Stem Cells in Pigs

33. The NHLBI-Sponsored Consortium for preclinicAl assESsment of cARdioprotective Therapies (CAESAR)

37. The Heme Oxygenase 1 Inducer (CoPP) Protects Human Cardiac Stem Cells against Apoptosis through Activation of the Extracellular Signal-regulated Kinase (ERK)/NRF2 Signaling Pathway and Cytokine Release

41. Transplantation of expanded bone marrow-derived very small embryonic-like stem cells (VSEL-SCs) improves left ventricular function and remodelling after myocardial infarction

42. Intracoronary Administration of Cardiac Progenitor Cells Alleviates Left Ventricular Dysfunction in Rats With a 30-Day-Old Infarction

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