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Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine | 論文
- Spironolactone Modulates Expressions of Cardiac Mineralocorticoid Receptor and 11β-Hydroxysteroid Dehydrogenase 2 and Prevents Ventricular Remodeling in Post-Infarct Rat Hearts
- Mass Transfer Behavior of Tritium from Air to Water through the Water Surface
- PE-391 Novel Cell Delivery System : Microbubbles Desturuction by Ultrasound caused Angiogenesis by Transplantation of Bone Marrow Cells in Platelet Destrucion-Dependent Manner(Angiogenesis 4 (IHD) : PE67)(Poster Session (English))
- Trans-Differentiation of Bone Marrow Monocyte-Lineage Cells to Endothelial-Like Cells and Reendothelialization on Injured Endothelium by MCP-1-Dependent Adhesion
- OJ-252 Overexpression of Tie2-promoted Activated FGFR2 in Endothelium Enhances Angiogenesis and Induces Cardioprotection via Akt Signaling Pathway in Mice Myocardial Infarction(Growth factor/Cytokine-2(H/M), The 71st Annual Scientific Meeting of the Japan
- DETECTION OF MspI RFLP IN HUMAN THY1 GENE BY THE POLYMERASE CHAIN REACTION
- Insulin Receptor Gene Polymorphism and Hyperinsulinemia in Hypertensive Patients
- PE-543 Senescent Vascular Smooth Muscle Cells Acquire Osteoblastic Phenotype : A Potential Role in the Aging-associated Medial Calcification(PE091,Molecular Biology (M),Poster Session (English),The 73rd Annual Scientific Meeting of the Japanese Circulatio
- OJ-055 Bone Morphogenetic Protein-2 Plays Crucial Roles in the Formation of Medial Calcification and Atherosclerosis in vivo(OJ10,Atherosclerosis, Basic (IHD),Oral Presentation (Japanese),The 73rd Annual Scientific Meeting of The Japanese Circulation Soci
- Coronary Microcirculation Disturbance in Takotsubo-like Transient Left Ventricular Dysfunction(Cardiomyopathy, Clinical 3 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- PE-442 Endogenous TGF-β Negatively Regulates Cardiac Differentiation through Smad2 Activation in Embryonic Stem Cells(Heart failure, basic-5, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PE-439 MicroRNA-1 Facilitates Skeletal Myogenic Differentiation without Affecting Osteoblastic and Adipogenic Differentiation(Heart failure, basic-5, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- OE-304 Smad2 Activation Specifies Mesodermal Induction and Modulates Cardiac Differentiation in Embryonic Stem Cells(Development and differentiation-1 (M) OE51,Oral Presentation (English),The 70th Anniversary Annual Scientific Meeting of the Japanese Circ
- PJ-108 Overexpression of Tie2-promoted Activated FGFR2 in Endothelium Enhances Angiogenesis and Induces Cardioprotection via Akt Signaling Pathway in Mice Myocardial Infarction(Growth factor/Cytokine(02)(H),Poster Session(Japanese),The 72nd Annual Scienti
- OE-168 Inhibition of Myocardin Deteriorates Cardiac Function under Beta-Adrenergic Stimulation(Molecular biology, myocardium (M),Oral Presentation(English),The 72nd Annual Scientific Meeting of the Japanese Circulation Society)
- OE-035 Deficiency of Redox-Sensitive Tyrosine Kinase Pyk2 Reduced Myocardial Infarction Size by Regulating ROS/VEGF- and Cytokine-Mediated Inflammatory Reactions and Apoptosis(OE06,Myocardial Ischemia-reperfusion (Basic) (IHD),Oral Presentation (English),
- OE-269 Calcium and Redox Sensitive Tyrosine Kinase Pyk2 Aggravates Myocardial Ischemia by Promoting Inflammatory Cytokine Synthesis and Hypoxia-Induced Apoptosis(Acute myocardial infarction, basic(01)(IHD),Oral Presentation(English),The 72nd Annual Scient
- OJ-065 Central Role of Calcium-Dependent Tyrosine Kinase Pyk2 in eNOS-Mediated Angiogenesis Unmasked by Pyk2 Knockout Mice(Endothelium-2, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- OJ-043 Calcium-Dependent Tyrosine Kinase Pyk2 Plays Crucial Role in Angiotensin II- But Not Norepineprine-Mediated Activation of Rac/Superoxide Pathway(Hypertension, basic-2, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- 1 Oxidized LDL-Activated Redox-Sensitive Tyrosine Kinases Modulates Atherogenesis via Small GTPase and PI3K/Akt/eNOS Signaling(A New Era in Atherosclerosis Research, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
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