Gap Junctions

Novel cell lines derived from adult human ventricular cardiomyocytes

Electrophysiology / Gap Junctions / Mitochondria / Gene expression / Molecular / Cell line / Cell Differentiation / Mitochondrial DNA / Humans / Mitochondrial Respiratory Chain / Structure Analysis / Transcription Factor / nuclear DNA / Biological markers / Primary Culture / Heart Ventricles / Myofibrils / Troponin I / Cell line / Cell Differentiation / Mitochondrial DNA / Humans / Mitochondrial Respiratory Chain / Structure Analysis / Transcription Factor / nuclear DNA / Biological markers / Primary Culture / Heart Ventricles / Myofibrils / Troponin I

Human Mesenchymal Stem Cells as a Gene Delivery System to Create Cardiac Pacemakers

Gap Junctions / Gene Therapy / Stem Cell / Ion Channels / Patch-clamp and imaging techniques / Dogs / Humans / Mice / Left Ventricular Assist Device / Electroporation / Animals / Heart rate / Acetylcholine / Clinical Sciences / Gene Delivery / Genetically Modified / Rats / Cesium / Delivery System / Circulation / Potassium Channels / Transfection / Ion Transport / Heart Ventricles / Mesenchymal Stromal Cells / Human Mesenchymal Stem Cells / Isoproterenol / Cholinergic agents / Dogs / Humans / Mice / Left Ventricular Assist Device / Electroporation / Animals / Heart rate / Acetylcholine / Clinical Sciences / Gene Delivery / Genetically Modified / Rats / Cesium / Delivery System / Circulation / Potassium Channels / Transfection / Ion Transport / Heart Ventricles / Mesenchymal Stromal Cells / Human Mesenchymal Stem Cells / Isoproterenol / Cholinergic agents
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