30 results on '"Suh, Jun-Kyu"'
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2. PD49-03 EFFECT OF INTRACAVERNOUS ADMINISTRATION OF EMBRYONIC STEM CELL-DERIVED EXOSOME ON ERECTILE FUNCTION IN THE STREPTOZOTOCIN-INDUCED DIABETIC MOUSE
3. MP43-06 INHIBITION OF PRONGF PATHWAY RESTORES ERECTILE FUNCTION THROUGH DUAL ANGIOGENIC AND NEUROTROPHIC EFFECTS IN THE DIABETIC MOUSE
4. MP45-13 INTRACAVERNOUS DELIVERY OF DICKKOPF3 GENE OR PEPETIDE RESCUES ERECTILE FUNCTION THROUGH ENHANCED CAVERNOUS ANGIOGENESIS IN THE DIABETIC MOUSE
5. MP45-18 CALORIE RESTRICTION REVERSES THE AGE-RELATED ALTERATION OF CAVERNOUS NEUROVASCULAR STRUCTURE IN THE RAT
6. MP45-11 DICKKOPF2 PROMOTES ANGIOGENESIS AND NEURAL REGENERATION THROUGH AN ANGIOPOIETIN-1-TIE2 PATHWAY AND RESCUES ERECTILE FUNCTION IN THE DIABETIC MOUSE
7. Sac-1004, a Pseudo-Sugar Derivative of Cholesterol, Restores Erectile Function through Reconstruction of Nonleaky and Functional Cavernous Angiogenesis in the Streptozotocin Induced Diabetic Mouse
8. MP89-03 LOCAL DELIVERY OF RECOMBINANT HUMAN HEPATOCYTE GROWTH FACTOR PROTEIN RESCUES ERECTILE FUNCTION BY ENHANCING CAVERNOUS ANGIOGENESIS IN DIABETIC MOUSE
9. MP89-01 VASOHIBIN-1 IS A NOVEL THERAPEUTIC TARGET FOR DIABETIC ERECTILE DYSFUNCTION IN MICE
10. MP52-08 SAC-1004, A VASCULAR LEAKAGE BLOCKER, RESTORES ERECTILE FUNCTION BY ENHANCING HEALTHY ANGIOGENESIS IN THE STREPTOZOTOCIN-INDUCED DIABETIC MOUSE
11. MP52-03 THE PERICYTES AS A CELLULAR REGULATOR OF PENILE ERECTION AND A NOVEL THERAPEUTIC TARGET FOR ERECTILE DYSFUNCTION
12. Erectile Dysfunction Precedes Other Systemic Vascular Diseases Due to Incompetent Cavernous Endothelial Cell-Cell Junctions
13. 1015 EFFECTS OF INTRACAVERNOUS INJECTION OF ANGIOPOIETIN-4 ON ERECTILE FUNCTION IN THE STREPTOZOTOCIN-INDUCED DIABETIC MOUSE
14. 1507 NEUTRALIZING ANTIBODY FOR NERVE INJURY-INDUCED PROTEIN 1 RESTORES ERECTILE FUNCTION THROUGH ENHANCED CAVERNOUS ENDOTHELIAL REGENERATION IN THE STREPTOZOTOCIN-INDUCED DIABETIC MOUSE
15. Stromal Vascular Fraction From Adipose Tissue Forms Profound Vascular Network Through the Dynamic Reassembly of Blood Endothelial Cells
16. 1071 SKI2162, A NOVEL TRANSFORMING GROWTH FACTOR-βTYPE I RECEPTOR KINASE (ALK5) INHIBITOR, ALLEVIATES FIBROSIS IN FIBROBLASTS DERIVED FROM HUMAN PEYRONIE′S PLAQUE
17. 873 REPAIR OF ERECTILE DYSFUNCTION USING HUMAN MESENCHYMAL STEM CELLS TRANSPLANTED IN THE CARVERNOUS NERVE INJURED CAVERNOSA OF RATS MONITORED BY THE MOLECULAR MAGNETIC RESONANCE IMAGING
18. 881 INTRACAVERNOUS DELIVERY OF DESIGNED ANGIOPOIETIN-1 VARIANT RESCUES ERECTILE FUNCTION THROUGH ENHANCED CAVERNOUS ENDOTHELIAL REGENERATION IN THE STREPTOZOTOCIN-INDUCED DIABETIC MICE
19. ACTIVATION OF CAVERNOUS TRANSFORMING GROWTH FACTOR-β1 AND SMAD SIGNALING PATHWAY AFFECTS ERECTILE DYSFUNCTION IN MEN WITH SPINAL CORD INJURY
20. INTRACAVERNOUS DELIVERY OF COMP-ANGIOPOIETIN-1 PROTEIN AS A NOVEL THERAPEUTIC STRATEGY FOR TYPE II DIABETES-INDUCED ERECTILE DYSFUNCTION
21. DERANGEMENTS IN ENDOTHELIAL CELL-TO-CELL JUNCTIONS INVOLVE IN THE PATHOGENESIS OF HYPERCHOLESTEROLEMIA-INDUCED ERECTILE DYSFUNCTION
22. 749: IN-1130, A Novel Transforming Growth Factor-S Type I Receptor Kinase (ALK5) Inhibitor, Regresses Fibrotic Plaque and Corrects Penile Curvature in a Rat Model of Peyronie's Disease
23. 998: Repetitive Intratunical Injection of Adenovirus Expressing Transforming Growth Factor-β1 in a Rat Induces Penile Curvature with Tunical Fibrotic Plaque: A Useful Model for the Study of Peyronie's Disease
24. 687: Combined Angiopoietin-1 and Vascular Endothelial Growth Factor Gene Transfer Restores Cavernous Angiogenesis and Erectile Function in a Rat Model of Hypercholesterolemia
25. 93: Chronic Bacterial Seminal Vesiculitis Occupies Some Portion of Chronic Prostatitis/Chronic Pelvic Pain Syndrome
26. 101: Clinical Outcome of Acute Prostatitis, a Multicenter Study
27. 1440: Novel Non-Viral Vector Using Biodegradable Thermo-Sensitive Polymer (Regel®) in the Gene Therpy of Erectile Dysfunction
28. Imaging Seminal Vesiculitis with Tc-99m Ciprofloxacin
29. Imaging Prostatitis with Tc-99m Ciprofloxacin
30. CORRELATION OF AGING WITH CAVERNOUS NITRIC OXIDE SYNTHASE (NOS) IN MEN
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