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F Ichimura

Publications and source records attributed to F Ichimura.

47 records · Page 3Linked to original sources

A physiologically based pharmacokinetic model for (-)-quinuclidinyl benzylate using nonlinear irreversible tissue binding parameters in rats.

The disposition characteristics of (-)-quinuclidinyl benzylate (QNB) were investigated in rats, and a physiologically based pharmacokinetic model was established using its linear and nonlinear tissue binding parameters. The steady-state distribution volume (Vdss) and systemic clearance (CLtot) were comparable after iv administration of 325 ng/kg and 3.2 mg/kg, suggesting that QNB pharmacokinetics based on plasma concentrations is linear. However, tissue accumulation was observed in the heart, lung, muscle, and brain. This accumulation persisted for over 12 hr after the iv administration of 325 ng/kg [3H]QNB. Tissue binding parameters were determined after continuous infusion of QNB. Irreversible and nonlinear binding parameters were obtained in various regions of the brain and other tissues. Reversible equilibrium concentration ratios between tissue and plasma were determined after high-dose infusion. QNB concentrations in the plasma, heart, lung, muscle, and brain were predicted after the administration of 325 ng/kg or 3.2 mg/kg. There was reasonable agreement between the model predictions and the observed data.

Animals↗

Comparative pharmacokinetics of cefoperazone and cephradine in untreated streptozotocin diabetic rats.

Experimental diabetes mellitus was induced in adult male rats by injecting streptozotocin (STZ; 60 mg/kg iv) for the purpose of surveying changes in the pharmacokinetics of biliary excretion after the intravenous administration of 40 mg/kg of cefoperazone (CPZ) or cephradine (CED). CPZ, CED, and other organic anions share affinity for the organic anion transport system in the bile canalicular membrane. The STZ treatment had a marked influence on the distribution and elimination of both cephalosporins. The blood levels of both cephalosporins at each time point after administration differed significantly between the STZ-treated and control rats. The values of mean residence time (MRT) of CPZ and CED were significantly decreased in the STZ-treated rats. Basal bile flow rates were increased after the administration of CPZ in the control and STZ-treated rats. Biliary clearance (CLbile) of CPZ was more than 60% of the CLtot, whereas CLbile of CED was less than 20% of CLtot in both groups of rats. The mean CLbile value of CPZ in the STZ-treated rats was 1.0 ml/min higher than that of the control rats, whereas the mean CLbile value of CED was almost the same as that of the control rats. The increased CLbile of CPZ suggested that diabetes alters the biliary excretion of CPZ. The changes in MRT of CPZ in the STZ-treated and control rats are mainly caused by an increase in the biliary excretory rate and renal clearance. The changes in MRT of CED in the STZ-treated and control rats are caused by a decrease in the apparent volume of distribution and increased renal clearance.

Animals↗

Effect of fat tissue volume on the distribution kinetics of biperiden as a function of age in rats.

The relationship between the volume of fat tissue and variations in the time course of plasma biperiden concentration in rats has been examined in three different groups (4-, 10-, and 50-week-old rats). The plasma concentrations at 24 hr after iv injection of 3.2 mg/kg varied between 0.8 ng/ml (4-week-old rats) and 5.0 ng/ml (50-week-old rats). The rank order of the steady state distribution volume of biperiden was: 50-week-old rats greater than 10-week-old rats greater than 4-week-old rats. The fat volume of the whole body, extracted from the dried carcass with ether, varied between 42 g/kg (4-week-old rats) and 167 g/kg (50-week-old rats). There was a good correlation between the steady state distribution volume of biperiden per lean mass body weight and the fat volume per lean mass body weight (r = 0.987). The fat/plasma concentration ratios at 8 hr after the iv injection varied between 600 (4-week-old rats) and 200 (50-week-old rats), whereas the brain/plasma concentration ratios were identical to those at steady state among the three groups. The time courses of biperiden concentration in plasma, brain, and fat were simulated using a physiological pharmacokinetic model. There was reasonable agreement between the model predictions and the observed data, suggesting that the change in the fat volume is a dominant determinant of the distribution volume of biperiden in rats. Age-related changes in tissue and plasma concentrations are discussed in relation to the clinical usefulness of the blood level monitoring.

Adipose Tissue↗