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Hugo Cejas

Publications and source records attributed to Hugo Cejas.

3 recordsLinked to original sources

High dissemination and hepatotoxicity in rats infected with Candida albicans after stress exposure: potential sensitization to liver damage.

The liver constitutes the first barrier in the control of hematogenous dissemination for Candida albicans of intestinal origin. The ability of this organ to limit the growth of the yeast and to mount an efficient inflammatory reaction is crucial in determining the outcome of the fungal infection. When rats infected with C. albicans are exposed to chronic varied stress, the cell recruitment is impaired at the site of the infection, the tissue reaction is highly disorganized in target organs and the infection evolution is more severe. At hepatic level, higher fungal burden is associated with hyphal form and the consistent presence of steatosis (fatty liver). Herein we aimed at characterizing the steatosis associated with C. albicans infection and to provide molecular evidence of the correlation among liver injury markers, stress products and the initiation of the inflammatory tissue reaction. After 3 days of stress and infection, we observed micro and macro steatosis in acinar zone 1 (specific lipid stain), higher lipid peroxidation and increased levels of serum alanine aminotransferase and gamma glutamil transferase. While infection triggered hepatic NO production and arginase activity, stress down-modulated both. Remarkably, defects in levels of TNF-alpha and NO were observed during the first step of the inflammatory response. Our results demonstrate that stress mediators down-regulate the acute inflammatory reaction in the hepatic scenario, promoting a major liver injury with particular immunopathological traits.

Animals↗

[Prostatic neuroendocrine cells].

From the first description of Pretl in 1944, many authors have shown different morphological and immunohistochemical studies related to prostatic neuroendocrine cells. These cells belong to a neuroendocrine system, wide disseminated network, that is found in many human tissues. They secret neuroendocrine peptides and play an important role in the glandular epithelium regulation (growing, differentiation, and exocrine secretion), in both normal and hyperplastic glands. They are also present in ordinary prostatic adenocarcinoma and in unusual small cell carcinoma. Recently, it has been suggested that prostatic neuroendocrine cells may be related to prognosis in prostatic carcinoma, particularly in cases with hormonal therapy resistant. In this study, there are 23 prostatic disorders: 11 nodular hyperplasias and 12 adenocarcinomas, and also areas of normal gland. The objective is the morphologic identification of these cells with silver impregnation technique, in normal tissue, nodular hyperplasia and adenocarcinoma. In normal gland and nodular hyperplasia, the NE cells can be seen along most of the gland or near the urethra, solitary or in small clusters. These cells are located between acinar epithelium cells and basement membrane, but they are also found within the stroma in relation to nerve endings. They characteristically contain argyrophil and argentaffin granules in the cytoplasm and exhibit cytoplasmatic processes extended to acinar or urethral lumen. Within the stroma, they are seen isolated with dendritic or ribbon-like cytoplasmatic processes. In this study, there is only one adenocarcinoma of high grade with NE cells. In this neoplasm they are increase in number, and appear isolated and more polymorphic.

Adenocarcinoma↗