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Öğe Immunohistochemical Expression of Nitric Oxide Synthase Enzymes (iNOS, eNOS, nNOS) in the Estrual and Luteal Phases of the Sexual Cycle in the Cow Oviduct(Wiley-Blackwell, 2013) Ozen, A.; Ergun, E.; Oztas, E.; Ergun, L.; Ozcan, Z.; Alabay, B.; Erdogan, E.This study was aimed to determine staining intensity, cellular localization and distribution of the nitric oxide synthase (NOS) enzymes during the sexual cycle in the cow oviduct. Oviduct samples belonging to 20 cows, 10 of which were in the estrual phase and 10 in the luteal phase of the sexual cycle, were examined by an immunohistochemical procedure to determine the presence of the NOS enzymes. In the epithelial cells of the isthmus, endothelial NOS (eNOS) expression showed a strong positive reaction during the estrual phase and a weak positive reaction during the luteal phase in the endothelium and smooth muscle of the blood vessels found in the serosa and lamina propria. eNOS expression was not observed in the epithelium of either the ampulla or the fimbria in the two particular phases of the sexual cycle. The eNOS reactions observed in the blood vessel wall in these regions were stronger during the estrual phase. eNOS activity was not observed in the tunica muscularis in any of the regions of the oviduct. During the estrual phase, it was observed that inducible NOS expression showed a stronger positive reaction in the epithelium and muscle layer of the isthmus and ampulla and in the epithelium of the fimbria, compared to the luteal phase. Neuronal NOS immunoreactivity was observed in the epithelial cells of all oviduct regions and in the muscle layer of the isthmus and ampulla and did not display any significant difference between the estrual and luteal phases.Öğe Ultrastructure of pancreatic alpha and beta cells in young quails (Coturnix coturnix japonica) fed aflatoxin(M H Schaper Gmbh Co Kg, 2007) Şimşek, Nejdet; Ergün, Levent; Ergün, E.; Alabay, B.; Özen, A.The present investigation was undertaken to assess the effects of aflatoxin (AF) containing diets on alpha and beta cells of the endocrine pancreas in young quails by means of light and electron microscopy. A total of thirty quails were divided into 3 groups, each comprising 10 animals. Total AF was incorporated into the diet of these groups, at dosages of 0 (control, group 1), 2.5 (group 2), and 5.0 (group 3) mg AF/kg feed. The chicks were housed in electrically heated battery cages and exposed to light for 24 h from hatching to 3 weeks of age. Quails consumed the diets and water ad libitum. Electron microscopic examinations demonstrated degranulation of alpha cells, decrease in the size and number of secreting granules, and increase in the number of free ribosomes and polisomes in the animals of group 2 and 3. In beta cells, the numbers of free ribosomes and polisomes decreased, whereas the number of mature granules increased in the animals of group 3. Mononuclear cell infiltrates were observed in the periphery of capillaries and around endocrine islets in the experimental groups. Furthermore, capillaries of the animals in group 2 and 3 were dilated at all sides of both alpha and beta islets. According to the results of this study, the addition of aflatoxin to the diets of quails at dosage of 2.5 and 5 mg AF/kg leads to significant changes in pancreatic alpha and beta cells. These changes may exhibit adverse effect on the metabolism of carbohydrates in poultry.