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J Kanta

Publications and source records attributed to J Kanta.

At least 37 records · Page 2Linked to original sources

[Reaction of the respiratory tract epithelium to bronchoalveolar lavage].

The authors investigated experimentally the reaction of the airway epithelium to the bronchoalveolar lavage. The epithelium of the rabbit trachea was examined immediately after rinsing with saline and 2, 24, 48 and 72 hours after rinsing. Lavage causes excessive stimulation of goblet cells. Immediately after lavage we find in the epithelium 99% goblet cells which after releasing the secretion degenerate and are gradually expelled from the epithelium. Regeneration of goblet cells begins 24 hours after lavage and is associated with massive differentiation of new goblet cells which leads to hyperplasia of mucus secreting elements and the formation of endoepithelial mucous glands. Signs of pathological alteration of ciliated cells are most marked 2 hours after impairs subsequently the degree of alteration of these cells declines gradually. Bronchoalveolar lavage reduces markedly the ciliary border above the epithelium, the number of kinocilia declines on average to 1.5/microns 2. In the subsequent stages the number of kinocilia increases again to 7.5/microns 2. This value is still significantly lower (p less than 0.005) than in controls. In the impaired ciliary border as a morphological sign of the impaired self-cleaning ability of the airway epithelium, numerous bacteria and condensed mucus are founded. Signs of local disorders of mucus flow are apparent still three days after bronchoalveolar lavage.

Animals↗

Formation of granulomas in liver of silica-treated rats.

Hepatic silicosis was induced in rats by an intravenous injection of saline-suspended silica, 40 mg/kg of body weight. Changes in the liver were examined by biochemical, histological and histochemical methods. Infiltration of the liver parenchyma by polymorphonuclear leucocytes was observed only on the first day after silica treatment. Formation of silicotic nodules began on the first day by clustering of liver macrophages. A 22% increase in liver weight and a 67% increase in total liver DNA reflected accumulation of cells in the liver by day 28 after silica injection. Local cell division contributed to this increase. Almost all cells in the nodules contained carbon when the rats had been given ink before silica. Macrophages showed high activity of lysosomal esterases on the first few days after silica treatment; the activity disappeared later. Large granulomas containing hundreds of cells including lymphocytes were seen 226 days after treatment. Hydroxyproline content per gram of liver tissue increased by 35% and 58% by day 80 and 162, respectively. Connective tissue formed capsules around the nodules and grew to their inside. Activities of lysosomal enzymes, beta-D-galactosidase and acid proteases, in serum were increased by 20% and 300%, respectively, 35 days after treatment. Neither malondialdehyde concentration nor superoxide dismutase activity was elevated in silicotic liver.

Animals↗

Desmosine and isodesmosine contents and elastase activity in normal and cirrhotic rat liver.

The contents of desmosine and isodesmosine, the cross-linking amino acids of elastin, were increased 4-fold in rat liver with carbon tetrachloride-induced cirrhosis, which suggests that insoluble elastin accumulates in cirrhosis. Elastase activity in the cirrhotic liver, as determined with 3-carboxypropionyl-L-alanyl-L-alanyl-L-alanine p-nitroanilide, was 17% less than in the normal liver; no change was found when Congo Red-elastin was used as a substrate.

Amino Acids↗

Effect of endotoxin on granulation tissue formation in rats.

Open wounds were incised in the dorsal skin of female Wistar rats. Solutions of Salmonella typhosa endotoxin (0.25 micrograms to 25 micrograms/ml saline) were applied 3 times a day on granulation tissue formed in the wounds. 5 days of treatment with the lowest endotoxin concentration resulted in 25% increase of the weight of the tissue, a more than 30% increase of DNA content and a 25% increase of hydroxyproline content in the tissue. Further elevation of these values could be obtained by increasing endotoxin concentration by tenfold or hundredfold but these changes were not very pronounced.

Animals↗