High-resolution lattice-gas simulation of two-dimensional turbulence.
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Biomedical subjects
Publications and source records attributed to R Benzi.
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We measured the chemiluminescence (CL) of human leukocytes (PMNs) exposed to different concentrations of Clindamycin (1; 5; 1 mcg/ml) using a standardized luminolamplified reagent-instrument methodology (Auto Picolite 6500 Luminometer and ZAP/Picolite Kits, Packard Instruments Co. Drowners Grove, IL. USA). Cells obtained from healthy donors were also tested for chemotaxis with Boyden chambers, for phagocytosis and for killing activity against Staphylococcus aureus by the agar-medium culture plate technique. Clindamycin does not induce significant variations of the CL response in whole blood, or changes in phagocytosis and killing activity. On the contrary, concentrations of drug corresponding to therapeutically obtainable levels significantly increase light emission by isolated cells. A concentration effect was seen on leukotaxis, that was increased, but not significantly, at 1 and 5 mcg/ml and decreased (P less than 0.01) at 10 mcg/ml. CL assay is a simple, sensitive, reproducible technique to assess the PMNs functions during antibiotic therapy.
The effect of constant, controlled hyperinsulinemia on in vivo and in vitro insulin responsiveness has been investigated in rats that have received insulin infusions through chronically implanted jugular vein catheters. Constant rates of insulin infusion during days 1-4 resulted in stable plasma insulin concentrations. The plasma glucose initially fell from 122 +/- 3 to 53 +/- 4 mg/dl. While the infusion rate was maintained constant, the plasma glucose continued to fall over the subsequent days so that on day 4 the plasma glucose, 40 +/- 2 mg/dl, was significantly lower than that in the same animals on day 1 (P less than 0.02). Subsequently, the rate of insulin infusion was decreased to maintain the plasma glucose level in the 35-40 mg/dl range. Plasma catecholamine levels were high in insulin-infused rats. On the eighth day an in vivo insulin tolerance test (0.5 U/kg) was performed. Insulin-infused rats responded with a hypoglycemia that was both more pronounced and longer sustained than in saline-infused controls. Insulin responsiveness in vitro has been measured in isolated adipocytes. Adipocytes from epididymal fat pads were of similar size in the two groups of animals. Glucose uptake by adipocytes from insulin-infused rats was similar to that of controls under basal (zero insulin) conditions, but showed an increase in the maximum response to insulin. Glucose incorporation into total lipid and fatty acid was greater in adipocytes from insulin-infused rats than in controls under both basal (zero insulin) and insulin-stimulated conditions. Activities of the lipogenic enzymes acetyl CoA carboxylase and fatty acid synthetase were markedly increased in epididymal fat pads of insulin-infused rats.(ABSTRACT TRUNCATED AT 250 WORDS)