In female Podarcis taurica the kidney collecting tubule always consists entirely of mucous-secreting cells. In males it has a seasonally variable sexual segment and a non variable mucous-secreting segment. In April the sexual segment is composed of columnar cells with cytoplasm rich in ribosomes and Golgi bodies and apical clusters of large vesicles with fibrous contents. The terminal region of the sexual segment also has pillar-shaped cells resembling those of the mucous-secreting segment. By May the accumulation of apical vesicles reaches a maximum, and many cells have apparently extruded their secretion into the lumen. In July all the cells are pillar shaped with dilated endoplasmic reticulum but with few apical vesicles. In September the sexual segment has some cells resembling those of the mucous-secreting segment and others the sexual segment pillar cells in April. It is suggested that during sexual activity in the spring the sexual segment secretes a spermatozoon-nutrient protein but subsequently reverts to mucous secretion. The non variable mucous-secreting regions in both males and females consist of mucous, intermediate, and dark cells. Mucous cells have apical masses of closely packed droplets, whereas dark cells have dense cytoplasm and small, loosely associated apical vesicles. Intermediate cells have some dark cell features but mucous cell apical vesicles. The dark, intermediate, and mucous cells probably represent activity states of a single type. The mucous secretion is interpreted as a protective material which lines the urinary passage and coats the secreted solid urates. Elaborated intercellular spaces in the mucous-secreting regions may indicate a water absorption capacity in urine concentration.
The current study aimed to assess the antiulcerogenic impact of mesenchymal bone marrow stem cells (BMMSCs) against gastric ulcer induced by the use of piroxicam in rats and to compare this effect with the antiulcer drug “Pantoloc ®” proton pump inhibitors. The study included histological, histochemical, immunohistochemical and ultrastructural examination in stomach of rats in different study groups. In the ulcerated group, the glandular region of the stomach displayed clear mucosal lesions occurring as perforations along the stomach axis. In addition, stomach displayed degeneration of surface mucous cells accompanied by pyknosis, vacuolation among parietal cells in ishmus region, basal region with vacuolated chief cells and karyolitic nucleus of parietal cells. Moreover, Stomach sections of ulcer model rats showed intensive immunoreactivity to cytokeratin 20, Cox 2 and PCNA. Findings of the present study have shown that BMMSCs have an ameliorative effect against piroxicam-induced gastric ulcer in rats. Collectively, the proposed work has shown that BMMSCs have a curative capacity as an antiulcer due to their high antioxidant activity. Further studies are required in molecular levels to understand the mechanism of action during treatment.
The proximal, intermediate, and distal convoluted tubules of the neprhon of Podarcis (= Lacerta) taurica were examined by electron microscopy. Proximal tubule cells have large, apical cytoplasmic protrusions and microvilli interpreted to function in urate secretion. Adjacent cells are bound apically by tight junctions and desmosomes but interdigitate in their basal region. This situation is repeated in the other tubules with significant differences in intercellular space width. The basal surfaces bear numerous cytoplasmic processes. The intermediate tubule has proximal and distal segments each with dark, ciliated, and light cells, the cuboidal dark cells with dense cytoplasm constituting the main bulk of the wall. As the cells of the proximal and distal segments resemble those of the proximal and distal convoluted tubules, respectively, the intermediate tubule is considered as a transition region. The ciliated cell body has two broad processes extending from the lumen, one to the basement membrane and one to a foot process of a light cell. The light cell is surrounded by dark and ciliated cells. It does not reach the lumen, but contacts the basement membrane through a process running below a ciliated cell to form a mushroom-shaped structure in tubule cross-section, the light cell process forming the stalk and a ciliated cell the cap. The cilia probably propel the glomerular filtrate towards the distal convoluted tubule. This latter tubule has initial, middle, and terminal zones, all nonciliated but with different lumen widths and cell shapes.
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