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Biomedical subjects

K Barada

Publications and source records attributed to K Barada.

3 recordsLinked to original sources

Na,K-ATPase in diabetic rat small intestine. Changes at protein and mRNA levels and role of glucagon.

Na,K-ATPase activity and isoform expression were measured in rat small intestinal mucosa taken from both normal and streptozocin-treated diabetic rats. Enzyme activity and abundance was 1.7-2.3-fold higher in rats diabetic for 2 wk than in controls. This was associated with 1.4-1.7-fold increases in small intestinal protein and DNA content. Ouabain inhibition curves of Na,K-ATPase were monophasic with Kis of 2.6 +/- 1.4 x 10(-4) and 2.0 +/- 1.2 x 10(-4) M for control and diabetic rats, respectively (NS). Northern blot analysis revealed a 2.5-fold increase in mRNA alpha 1 and a 3.4-fold increase in mRNA beta 1 in diabetic rats relative to controls. Two thirds of this increase occurred within 24h after injection of streptozocin. Immunoblots of intestinal enzyme preparations from diabetic and control rats indicated the presence of alpha 1 and beta 1 subunits but not of alpha 2 or alpha 3. Administration of glucagon (80 micrograms/kg) to normal rats daily for 14-16 d increased mRNA alpha 1 3.1-fold but did not increase mRNA beta 1 or enzyme activity. In experimental diabetes, alpha 1 and beta 1 isoforms of Na,K-ATPase are coordinately upregulated at both protein and mRNA levels, an effect which appears to be partially mediated by the associated hyperglucagonemia.

Animals

[Comparison of urine volume, glomerular filtration rate, excretion and fraction of reabsorption of major substances in urine in three different rat strains].

Urine volume (UV), Glomerular filtration rate (GFR) and Fraction of reabsorption (FR) of water, Ca, IP, Na+, K+, Cl-, Glu and UN, which are significant in kidney function analysis, were investigated and compared in three rat strains (WI, SD and F344). UV/body weight ratios were higher in SD rats as compared to other strains. The GFR difference was not significant, but the FRH2O difference was significant in three rat strains. FR of Ca, K+ and Glu showed no significant differences in three different rat strains. SD and F344 were significantly lower than WI in FR of IP. FR of Na+, Cl- and UN were significantly different in three rat strains without Cl- between SD and F344, and UN between WI and SD.

Animals

A new visual method for evaluating multiple data (Diagnostic Radar Chart) in general toxicological study.

A Diagnostic Radar Chart method was devised for use in the general assessment of the toxicity of drugs on the basis of visual patterns in toxicity studies. Its usefulness was evaluated on the findings of 32 laboratory items in 3 groups of animal models with experimental pathological conditions. The chart was found to facilitate intuitive discrimination among three types of pathological animal models, evaluation of sexual differences and evaluation of individual differences among the animals for each item. Therefore, if patterns are constructed on the Diagnostic Radar Chart for each of the drugs usable for preparing animal models with typical experimental pathological conditions, the chart is thought to be useful for evaluation or identification of the toxicity of an unknown drug.

Anemia, Hemolytic