36 results on '"Mohamed, Tamer M.A."'
Search Results
2. Development of new adeno-associated virus capsid variants for targeted gene delivery to human cardiomyocytes
3. Restored autophagy is protective against PAK3-induced cardiac dysfunction
4. FGF21/FGFR1-β-KL cascade in cardiomyocytes modulates angiogenesis and inflammation under metabolic stress
5. Paracrine signal emanating from stressed cardiomyocytes aggravates inflammatory microenvironment in diabetic cardiomyopathy
6. Cell cycle induction in human cardiomyocytes is dependent on biosynthetic pathway activation
7. Heart slice culture system reliably demonstrates clinical drug-related cardiotoxicity
8. Context-Specific Transcription Factor Functions Regulate Epigenomic and Transcriptional Dynamics during Cardiac Reprogramming
9. Regulation of Cell Cycle to Stimulate Adult Cardiomyocyte Proliferation and Cardiac Regeneration
10. Improved Cardiac Function in Postischemic Rats Using an Optimized Cardiac Reprogramming Cocktail Delivered in a Single Novel Adeno-Associated Virus
11. Disease Model of GATA4 Mutation Reveals Transcription Factor Cooperativity in Human Cardiogenesis
12. Physiological Biomimetic Culture System for Pig and Human Heart Slices
13. The Mammalian Ste20-like Kinase 2 (Mst2) Modulates Stress-induced Cardiac Hypertrophy
14. The impact of senescence on muscle wasting in chronic kidney disease
15. Development and characterization of a novel fluorescent indicator protein PMCA4-GCaMP2 in cardiomyocytes
16. Advanced glycation end products reduce the calcium transient in cardiomyocytes by increasing production of reactive oxygen species and nitric oxide
17. Plasma Membrane Calcium Pump (PMCA4)-Neuronal Nitric-oxide Synthase Complex Regulates Cardiac Contractility through Modulation of a Compartmentalized Cyclic Nucleotide Microdomain
18. Local signals with global impacts and clinical implications: Lessons from the plasma membrane calcium pump (PMCA4)
19. Transient Cell Cycle Induction in Cardiomyocytes to Treat Subacute Ischemic Heart Failure
20. FTY720 prevents ischemia/reperfusion injury-associated arrhythmias in an ex vivo rat heart model via activation of Pak1/Akt signaling
21. Specific Role of Neuronal Nitric-oxide Synthase when Tethered to the Plasma Membrane Calcium Pump in Regulating the β-Adrenergic Signal in the Myocardium
22. The impact of senescence on muscle wasting in chronic kidney disease.
23. The tumour suppressor Ras-association domain family protein 1A (RASSF1A) regulates TNF-α signalling in cardiomyocytes
24. PRECLINICAL EFFICACY STUDY IN A PORCINE MODEL FOR A NOVEL GENE THERAPY APPROACH TO PROMOTE CARDIOMYOCYTE PROLIFERATION IN ISCHEMIC CARDIOMYOPATHY
25. The Sarcolemmal Calcium Pump, α-1 Syntrophin, and Neuronal Nitric-oxide Synthase Are Parts of a Macromolecular Protein Complex
26. Disruption of the interaction between PMCA2 and calcineurin triggers apoptosis and enhances paclitaxel-induced cytotoxicity in breast cancer cells
27. Emerging technology and platforms for cardiotoxicity testing
28. Slicing and Culturing Pig Hearts under Physiological Conditions
29. Endothelial nitric oxide synthase activity is inhibited by the plasma membrane calcium ATPase in human endothelial cells
30. Genetic ablation of the mammalian sterile-20 like kinase 1 (Mst1) improves cell reprogramming efficiency and increases induced pluripotent stem cell proliferation and survival
31. Miniaturized iPS-Cell-Derived Cardiac Muscles for Physiologically Relevant Drug Response Analyses
32. Plasma Membrane Calcium ATPase Isoform 4 Inhibits Vascular Endothelial Growth Factor–Mediated Angiogenesis Through Interaction With Calcineurin
33. The interaction between endogenous calcineurin and the plasma membrane calcium-dependent ATPase is isoform specific in breast cancer cells
34. Tumor Suppressor Ras-Association Domain Family 1 Isoform A Is a Novel Regulator of Cardiac Hypertrophy
35. Differential modulation of myocardial beta-adrenergic signalling by plasma membrane calcium pump isoforms
36. The sarcolemmal calcium pump, alpha-1 syntrophin and neuronal nitric oxide synthase are part of a macromolecular protein complex
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