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1.
Korean Journal of Urology ; : 187-196, 2015.
Article in English | WPRIM | ID: wpr-60935

ABSTRACT

PURPOSE: Clinical studies have reported a correlation between pelvic ischemia and voiding dysfunction in elderly men. The aim of this study was to identify and compare prostate structural modifications in cultured cells and in a rabbit model after exposure to hypoxia, oxidative stress, and chronic ischemia. MATERIALS AND METHODS: Cultured human prostate smooth muscle cells (SMCs), epithelial cells (ECs), and stromal cells (SCs) were incubated under normoxia, hypoxia, and oxidative stress conditions by use of a computerized oxycycler system. We developed a rabbit model of chronic prostate ischemia by creating aorto-iliac arterial atherosclerosis. Markers of oxidative stress were examined by using fluorometric analysis and enzyme immunoassay. Prostate structure was examined by using Masson's trichrome staining and transmission electron microscopy (TEM). RESULTS: Lipid peroxidation was found in SMCs exposed to hypoxia and in all cell types exposed to oxidative stress. We identified protein oxidation in ECs exposed to hypoxia and in all cell types exposed to oxidative stress. Markers indicating oxidative damage were present in chronically ischemic rabbit prostate tissue. These reactions were associated with DNA damage. Prostate ischemia resulted in epithelial atrophy, loss of smooth muscle, and diffuse fibrosis. TEM showed swollen mitochondria with degraded cristae, loss of membrane, loss of Golgi bodies, degenerated nerves, and disrupted cell-to-cell junctions. CONCLUSIONS: Human prostate cells exhibited differential reactions to hypoxia and oxidative stress with widespread DNA damage. Structural modifications in ischemic prostate tissue were similar to those in cells exposed to oxidative stress. Structural changes due to ischemia and oxidative stress may contribute to prostatic noncompliance in aging men.


Subject(s)
Animals , Humans , Male , Rabbits , Hypoxia/complications , Atherosclerosis/complications , Biomarkers , Cells, Cultured , DNA Damage , Disease Models, Animal , Epithelial Cells/ultrastructure , Fibrosis , Ischemia/complications , Lipid Peroxidation , Myocytes, Smooth Muscle/ultrastructure , Nerve Degeneration , Oxidative Stress , Prostate/anatomy & histology , Stromal Cells/ultrastructure , Urinary Bladder Neck Obstruction/complications
2.
Biocell ; 28(1): 21-30, Apr. 2004.
Article in English | LILACS | ID: lil-384231

ABSTRACT

The flutamide antiandrogenic effects on the Guinea pig male prostate morphology in puberal, post-puberal and adult ages were evaluated in the present study. Daily-treated group animals received flutamide subcutaneous injection at a dose of 10 mg/Kg body weight for 10 days. The control group animals received a pharmacological vehicle under the same conditions. The lateral prostate was removed, fixed and processed for light and transmission electron microscopy. The results revealed an increase of the acinus diameter in the treated puberal animals and straitness in the stromal compartment around the acini. The epithelial cells exhibited cubic phenotype. In the post-puberal and adult animals, a decrease of the acinus diameter was observed, as well as an increase of the smooth muscle layer and presence of the folds at epithelium. The ultrastructural evaluation of the secretory cells in the treated group demonstrated endomembrane enlargement, mainly in the rough endoplasmic reticulum and Golgi apparatus. In addition, a decrease of the microvilli and alterations in the distribution patterns and density of the stromal fibrillar components were observed. In conclusion, the flutamide treatment exerts tissue effects on the lateral prostate, promoting stroma/epithelium alterations.


Subject(s)
Androgen Antagonists/pharmacology , Epithelial Cells/drug effects , Flutamide/pharmacology , Prostate/drug effects , Age Factors , Golgi Apparatus/drug effects , Golgi Apparatus/ultrastructure , Epithelial Cells/ultrastructure , Stromal Cells/drug effects , Stromal Cells/ultrastructure , Guinea Pigs , Microscopy, Electron , Microvilli/drug effects , Microvilli/ultrastructure , Myocytes, Smooth Muscle/drug effects , Myocytes, Smooth Muscle/ultrastructure , Prostate/ultrastructure , Endoplasmic Reticulum/drug effects , Endoplasmic Reticulum/ultrastructure , Sexual Maturation , Cell Size/drug effects , Cell Size/physiology
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