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Biomedical subjects

M Nadai

Publications and source records attributed to M Nadai.

At least 37 records · Page 2Linked to original sources

Biliary and renal excretions of cefpiramide in Eisai hyperbilirubinemic rats.

Eisai hyperbilirubinemic mutant rats (EHBRs) with conjugated hyperbilirubinemia were recently derived from Sprague-Dawley rats (SDRs). The pharmacokinetic characteristics of the beta-lactam antibiotic cefpiramide (CPM), which is mainly excreted into bile, were investigated in 10- and 20-week-old EHBRs and were compared with those in 20-week-old healthy SDRs. The pharmacokinetic parameters of CPM after an intravenous administration of 20 mg/kg of body weight were estimated for each rat by noncompartmental methods. When compared with age-matched healthy SDRs, significant decreases (by approximately 30%) in the systemic clearance of CPM were observed in 20-week-old EHBRs. The biliary clearance of CPM in 20-week-old EHBRs markedly decreased to less than 10% of that in age-matched healthy SDRs, while total urinary recovery of unchanged CPM increased to threefold and renal clearance doubled. However, no significant differences in any of the pharmacokinetic parameters of CPM were observed between the two groups of EHBRs. There were no significant differences among the three groups in the steady-state volume of distribution of CPM. The present study indicates that hyperbilirubinemia induces an increase in the urinary excretion ability of CPM in return for a reduction in the biliary excretion.

Aging↗

Effect of a bacterial lipopolysaccharide on biliary excretion of a beta-lactam antibiotic, cefoperazone, in rats.

Klebsiella pneumoniae O3 lipopolysaccharide (LPS) has been found to dramatically modify the pharmacokinetics of the beta-lactam antibiotic cefazolin in rats. This study investigated the effect of LPS on the biliary excretion of the beta-lactam antibiotic cefoperazone (CPZ) in rats. CPZ is known to be actively secreted into the bile by a carrier-mediated transport system. LPS (250 micrograms/kg of body weight) was infused for 20 to 30 min 2 h before an intravenous administration of CPZ (20 mg/kg). The pharmacokinetic parameters of CPZ were estimated by a noncompartment model. LPS induced a significant decrease in the systemic clearance (by approximately 50%) and an increase in the mean residence time of CPZ. Significant decreases were also seen in the bile flow rate and in the biliary recovery of unchanged CPZ in the LPS-treated rats. LPS tended to increase the proportion of urinary excretion of CPZ. LPS significantly decreased the biliary clearance (by approximately 55%) and renal clearance (by approximately 35%) of CPZ. However, no changes in the volume of distribution at steady state for CPZ were observed between the treatment groups. Our findings suggest that LPS induces changes in the pharmacokinetics of CPZ as a result of changes occurring in the biliary secretory system.

Animals↗

Effects of traditional Chinese medicines on pharmacokinetics of levofloxacin.

The effects of single coadministrations of one of three traditional Chinese medicines, Hotyu-ekki-to, Rikkunshi-to, and Juzen-taiho-to, on the pharmacokinetics of levofloxacin (LVFX) were investigated with eight healthy volunteers in an open, random crossover fashion. Subjects each received a single oral dose of LVFX (200 mg) alone and then with a single coadministration of each Chinese medicine. There were no significant differences in any pharmacokinetic parameters of LVFX between the groups. Also, no significant changes in the urinary recovery (> 80%) and renal clearance of LVFX were observed. These results indicate that the Chinese medicines tested have no significant effect on the rate and extent of bioavailability or renal excretion of LVFX.

Adult↗

Influence of a newly developed quinolone, T-3761, on pharmacokinetics of theophylline in rats.

The effect of a new quinolone, T-3761, on the pharmacokinetics and metabolism of theophylline was investigated with rats. T-3761 at a high dose (20 mg/kg of body weight) was injected intravenously 10 min before an intravenous administration of theophylline (10 mg/kg). The presence of T-3761 slightly delayed the disappearance of theophylline from plasma. Parameters related to the pharmacokinetic interaction between theophylline and T-3761 were estimated by noncompartmental methods. A significant decrease (approximately 25%) in the systemic clearance of theophylline was observed in the presence of T-3761. However, no significant changes between the control group and the T-3761-treated groups in the volume of distribution at a steady state were observed. Pretreatment with T-3761 increased the urinary excretion of unchanged theophylline (by approximately 25%) and decreased the nonrenal clearances (by approximately 30%), indicating that T-3761 inhibits the metabolism of theophylline. These findings suggest that T-3761 at the dose used in this study affects the pharmacokinetics and metabolism of theophylline.

4-Quinolones↗

Tubulointerstitial injury induced in rats by a monoclonal antibody that inhibits function of a membrane inhibitor of complement.

The kidney widely expresses membrane-associated complement regulatory proteins (membrane inhibitors of complement). The aim of this work was to evaluate the roles of these molecules in rat kidneys in vivo. To suppress functions of rat membrane inhibitors of complement, two mAbs, 512 and 6D1, were used. 5I2 and 6D1 inhibit functions of membrane inhibitors of complement at C3 level (rat Crry/p65) and C8/9 level (rat CD59), respectively. F(ab')2 fragment of 5I2 or 6D1 was perfused in the left kidneys, and perfusate was discarded from the renal vein. After perfusion, the left kidneys were connected to systemic circulation. In rats perfused with 5I2, mouse IgG was found in glomeruli, peritubular capillaries, vascular bundles, and tubules 15 min after recirculation. Binding of C3 and C5b-9 was evident in these areas. 1 d after perfusion with 5I2, cast formation, dilatation of tubular lumen, and tubular cell degeneration were observed. At day 4 through day 7, significant mononuclear cell infiltration and proximal tubule damage were observed. These changes were completely prevented by complement depletion. Rats perfused with 6D1 showed the binding of mouse IgG in the similar areas as 5I2, but C3 or C5b-9 deposition was not observed. Rats perfused with 6D1 or vehicle only did not show any pathology in the left kidneys. These results suggest that rat Crry/p65 plays protective roles against spontaneously occurring indiscriminate attack to tubulointerstitial tissues by autologous complement and that rat Crry/p65 is one of the important factors to maintain normal integrity of the kidney in rats.

Animals↗

Time-dependent changes in the pharmacokinetics and renal excretion of xanthine derivative enprofylline induced by bacterial endotoxin in rats.

Time-dependent changes in the pharmacokinetics and renal handling of enprofylline induced by bacterial endotoxin (Klebsiella pneumoniae LPS) were investigated in rats. To evaluate the early effect of LPS on kidney functions and the renal excretion of enprofylline, which is an organic anion drug excreted primarily by an active tubular secretion, LPS (250 micrograms/kg) was infused for 5 min under constant infusion at rates of 2.3 and 23 micrograms/min/kg for inulin and enprofylline, respectively. LPS caused a drop in the glomerular filtration rate (GFR), estimated as the renal clearance of inulin, to 65-75% of that observed in the control rats within 30 min after the LPS treatment. The renal clearance (CLr) of enprofylline decreased in conjunction with GFR, while the percentage of decrease in the CLr was slightly greater than that in GFR. LPS-induced decreases in the CLr for enprofylline and GFR continued over the testing period of 120 min. The time-dependent effect of LPS on the pharmacokinetics of enprofylline was examined by a single injection of enprofylline (2.5 mg/kg) to rats pretreated 2, 10 or 24 h earlier with or without LPS. The pharmacokinetic parameters of enprofylline were determined by a model-independent method. Significant changes in the systemic clearance for enprofylline were observed in rats pretreated 2 and 10 h earlier with LPS, but no such changes were observed in rats pretreated 24 h earlier with LPS. These findings indicate the existence of a time-dependent effect of LPS on the pharmacokinetics of enprofylline, and suggest that LPS at a dose of 250 micrograms/kg, at least, does not induce cytotoxicity to kidney cells.

Animals↗

Pharmaceutical evaluation of carbamazepine suppositories in rats.

The absorption of carbamazepine (CBZ) after rectal administration in the form of a suppository was studied in rats. CBZ suppositories were prepared with Witepsol H-15 (H-15), Witepsol S-55 (S-55) or polyethylene glycol 6000 (PEG) bases by moulding procedure. An in vitro investigation was undertaken using a dissolution apparatus. The in vitro dissolution rate of CBZ showed marked differences among the bases in the order PEG > H-15 > S-55. An in vivo study demonstrated marked differences in the time required to reach peak plasma concentration (Tmax) of CBZ after rectal and oral administration: the absorption of CBZ from PEG base was the most prolonged among these bases (in the order PEG > H-15 > S-55 > ORAL). Comparison of the area under the plasma concentration-time curve (AUC) of CBZ after rectal administration of the three different suppositories with those after intravenous and oral administration showed no significant differences in the AUC among the five preparations. These results suggest the possibility that CBZ suppositories can replace oral treatment for epilepsy.

Animals↗

Kinetic interaction between theophylline and a newly developed anti-allergic drug, pemirolast potassium.

The effect of a newly developed anti-allergic drug, pemirolast potassium (TBX), on the pharmacokinetics and metabolism of theophylline was investigated under steady-state conditions in seven healthy male volunteers. A sustained-release theophylline formulation (100 mg twice daily at 12 h intervals) was given as monotherapy and coadministered with TBX (10 mg twice daily at 12 h). Plasma concentration-time curves and the urinary excretion of theophylline and its major metabolites after administration of theophylline alone and after coadministration with TBX were compared. No significant adverse effects from this study were observed. There were no significant differences in the total body clearance, renal clearance and maximum concentration of theophylline between the two treatments, although coadministration of TBX significantly delayed the time to reach maximum concentration of theophylline. In the case of urinary excretion, no significant changes in the fraction of urinary excretion of theophylline and its metabolites were observed. These results indicate that TBX has little or no effect on the pharmacokinetics and metabolism of theophylline and suggest that TBX is safe for asthma patients receiving theophylline therapy for treatment of chronic obstructive airway diseases.

Adult↗

Influence of age on the disposition and renal handling of enprofylline in rats.

The effects of ageing on the pharmacokinetics, renal handling and protein binding of enprofylline were investigated in 6-, 13- and 18-month-old male Fischer 344 rats. Concentrations of enprofylline in plasma and urine were determined by HPLC, and pharmacokinetic parameters were estimated by model-independent methods. No significant differences in the volume of distribution, systemic clearance of enprofylline or urinary recovery of unchanged enprofylline (> 85%) were observed among any of the groups of rats. The dissociation constant and free fatty acid concentration in plasma increased with age. Age-dependent decreases in the systemic clearance for unbound drug were observed, and the volume of distribution for unbound drug tended to decrease with age. The ratio of systemic clearance for unbound drug to the glomerular filtration rate (GFR) decreased with ageing. Ageing was associated with decreases in the apparent maximum capacity of transport (Vmax)(223.33, 160.24 and 142.98 micrograms min-1 kg-1 for 6-, 13- and 18-month-old rats, respectively) and in the tubular secretory intrinsic clearance (Vmax/Km) of enprofylline (75.45, 51.03 and 44.13 mL min-1 kg-1, respectively), while a slight change in the Michaelis-Menten constant (Km) was observed. These results indicate that the mechanism responsible for age-related changes in the disposition and renal handling of enprofylline may be responsible for a decrease in the ability of the tubular anion transport system.

Aging↗

Influence of endotoxin and lipid A on the renal handling and accumulation of gentamicin in rats.

The contribution of lipid A, an active component of endotoxin (LPS), to changes in the pharmacokinetics, renal handling and intrarenal accumulation of gentamicin induced by Klebsiella pneumoniae LPS was investigated in rats. Either LPS (250 micrograms/kg) or lipid A (equivalent to dose of LPS) was infused 2 h before the administration of gentamicin (10 mg/kg). The effects of LPS and lipid A on the intrarenal accumulation of gentamicin were also evaluated. Significant increases in the levels of plasma creatinine and blood urea nitrogen were observed in both the LPS and lipid A groups. Both LPS and lipid A induced significant decreases in the glomerular filtration rate (by approximately 30%) and systemic clearance of gentamicin (by approximately 25%). No changes in the fraction of urinary excretion (> 0.9) or steady-state volume of distribution of gentamicin were observed between either the control, LPS or lipid A groups. There were no significant differences among the three groups in the tubular reabsorption or intrarenal accumulation of gentamicin. The degree of effect of lipid A on the pharmacokinetics of gentamicin observed in this study was nearly equal to that of LPS. These results suggest that lipid A plays a major role in changes in the pharmacokinetics and renal handling of gentamicin induced by LPS.

Animals↗

Lack of effect of Chinese medicines on bioavailability of ofloxacin in healthy volunteers.

Recently, Chinese medicines have become available as OTC drugs and are frequently prescribed with Western medicine for the treatment of various chronic diseases. In this study, the effect of the Chinese medicines Sho-saiko-to (TJ-9), Rikkunshi-to (TJ-43) and Sairei-to (TJ-114) on the bioavailability of ofloxacin (OFLX) was investigated in seven volunteers in an open, random crossover fashion. Subjects received a single oral dose of OFLX (200 mg) alone and with coadministrations of each Chinese medicine, at one-week intervals. Plasma and urine samples were analyzed by high-performance liquid chromatography. No significant differences in any estimated bioavailability parameters of OFLX were observed between the two phases. The urinary recovery of OFLX excreted within 24 h after the administration of OFLX alone, 80.6 +/- 3.9% (mean +/- SEM), was not significantly different from those after the coadministrations of the Chinese medicines (79.7 +/- 5.1% for TJ-9, 76.8 +/- 2.3% for TJ-43 and 80.3 +/- 5.3% for TJ-114), suggesting that there was no difference in the systemic availability of the four doses. These findings indicate that the Chinese medicines studied have no significant effect on the rate and extent of bioavailability of OFLX.

Administration, Oral↗

The effect of lipopolysaccharide on the disposition of xanthines in rats.

The effect of lipopolysaccharide (LPS) isolated from Klebsiella pneumoniae O3 on the pharmacokinetic behaviour and metabolism of the xanthines, theophylline and 1-methyl-3-propylxanthine (MPX), which are mainly metabolized by the liver, was investigated in rats. LPS was infused at 0.25 mg kg-1 over a period of 20-30 min, 2 h before the administration of theophylline (10 mg kg-1) or MPX (2.5 mg kg-1). Concentrations of both xanthines in plasma and concentrations of the parent drug and metabolites in urine were measured by HPLC. Model-independent methods were applied to estimate the pharmacokinetic parameters for both xanthines. No significant changes in the pharmacokinetic parameters or metabolism of theophylline were observed in rats pretreated with LPS. However, the total body clearance and volume of distribution of MPX were significantly increased by pretreatments with LPS. Significant decreases in the binding capacity and number of binding sites on the albumin molecule were observed in the presence of LPS. Changes occurring in the protein binding behaviour as a result of the introduction of LPS is a primary factor which not only increases the volume of distribution but also increases total body clearance. These results indicate that LPS has no effect on the pharmacokinetics and metabolic pathway of theophylline although it changes the disposition of MPX due to decreases in the extent of the protein binding of MPX which is highly bound to protein.

Animals↗

Influence of a bacterial lipopolysaccharide on the pharmacokinetics of tobramycin in rats.

The effects of Klebsiella pneumoniae O3 lipopolysaccharide on the renal handling and distribution characteristics of the aminoglycoside tobramycin were investigated in rats. Tobramycin (2 mg kg-1) and inulin (100 mg kg-1) were administered intravenously 2 h after administration of 50, 250 or 500 micrograms kg-1 lipopolysaccharide. Lipopolysaccharide delayed the disappearance of tobramycin from plasma in a dose-dependent manner. A dose-dependent decrease in systemic clearance of tobramycin was observed, although the elimination rate constant and fraction of urinary recovery of unchanged drug were not significantly different in any group. Lipopolysaccharide significantly decreased the central compartment volume of distribution of tobramycin, but did not influence the steady-state volume of distribution. A dose-related increase in the ratio of the rate constant of transfer to the peripheral compartment to the rate constant of transfer from peripheral compartment to central compartment was observed. The glomerular filtration rate was significantly decreased by pretreatment with 250 micrograms kg-1 lipopolysaccharide and the clearance ratio was decreased by 20%, indicating that lipopolysaccharide increases the tubular reabsorption of tobramycin. Our findings suggest that K. pneumoniae O3 lipopolysaccharide modifies the glomerular filtration rate and tubular reabsorption without change in the terminal half-life and that drug distribution characteristics from the rapidly-distributing compartment to the peripheral compartment were altered without expansion of the extracellular fluid volume.

Animals↗

The effects of N-benzoyl-beta-alanine, a new nephroprotective drug, on the distribution and renal excretion of enprofylline in rats.

The effects of the new nephroprotective drug N-benzoyl-beta-alanine (BA) on the disposition and renal excretion of the bronchodilator enprofylline, which is actively secreted in urine, were investigated in rats. Enprofylline was administered intravenously at a dosage of 2.5 mg kg-1 under three different steady-state plasma BA concentrations (100, 200 and 400 micrograms mL-1) which were achieved by constant infusion rates. Pharmacokinetic parameters for both total and unbound enprofylline were estimated by model-independent methods. The presence of BA (400 micrograms mL-1) increased the systemic clearance by 25% and the volume of distribution at steady-state by 90%. A significant increase in the dissociation constant, which is the protein binding parameter of enprofylline was observed in the presence of BA (400 micrograms mL-1), indicating that BA competitively inhibits the protein binding of enprofylline. However, BA significantly decreased the systemic clearance and volume of distribution for unbound enprofylline. These results suggest that BA, the organic anion transport inhibitor, inhibits renal excretion of enprofylline with a high affinity for renal tubular secretion, although the unbound concentration of enprofylline increases with administration of BA. We conclude that BA decreases the renal tubular secretion of enprofylline probably by reducing the affinity of the tubular transport system, and that these changes have marked effects on the pharmacokinetic behaviour of enprofylline.

Alanine↗

Alterations in pharmacokinetics and protein binding behavior of cefazolin in endotoxemic rats.

The possible alterations in the pharmacokinetics and protein binding behavior of the beta-lactam antibiotic cefazolin (CEZ) were investigated in endotoxemic rats induced by Klebsiella pneumoniae O3 lipopolysaccharide (LPS). LPS (250 micrograms/kg of body weight) was infused for 20 to 30 min 2 h before an intravenous administration of CEZ (20 mg/kg). Significant decreases in systemic clearance and renal clearance of CEZ were observed in LPS-treated rats without any changes in fraction of urinary excretion in unchanged CEZ (> 0.8). The volume of distribution at steady state showed a tendency to increase. The protein binding parameters of CEZ, the binding capacity, and number of binding sites on the albumin molecule were decreased by LPS, whereas the dissociation constant did not change. Significant decreases in systemic and renal clearances for unbound CEZ were observed in LPS-treated rats. The glomerular filtration rate estimated as inulin clearance was also decreased by LPS. The ratio of renal clearance of unbound CEZ to glomerular filtration rate (clearance ratio) dropped to 70% of that in control rats, and the net tubular secretion of CEZ was also dramatically reduced. The present study suggests that LPS has an effect on the pharmacokinetics of CEZ by changes which occur in renal handling and protein binding.

Animals↗

Pharmacokinetics and the effect of probenecid on the renal excretion mechanism of diprophylline.

The mechanism of renal excretion of diprophylline (DPP) and the effect of probenecid on the active transport of DPP in renal tubules were investigated in rats. The concentration of DPP in plasma increased in proportion to the doses of 10, 30, and 60 mg/kg. The pharmacokinetic parameters and the urinary excretion of DPP did not change significantly with the dose. These findings indicate that DPP possesses dose-independent pharmacokinetics. Pharmacokinetic parameters for tubular secretion of DPP, as determined by a single-injection renal clearance method, were 21.25 micrograms/mL for the Michaelis-Menten constant and 102.38 micrograms/min for maximum velocity. Coadministration of probenecid decreased the total body clearance of DPP but did not change in the steady-state volume of distribution of DPP. The effect of probenecid concentration on the steady-state renal clearance of DPP was evaluated by continuously infusing probenecid at various rates. The renal clearance of DPP decreased as the probenecid concentration increased, a result indicating that probenecid inhibits the tubular secretion of DPP. However, probenecid did not inhibit the renal secretion of DPP completely, probably because of the existence of probenecid-insensitive transport systems for DPP in the renal proximal tubule. The Michaelis-Menten constant, maximum velocity, and glomerular filtration rate, as calculated with the competitive inhibition model for renal clearance of DPP, correlated well with estimated values after a single intravenous administration, as described earlier. The competitive inhibition constant of probenecid was 15.86 micrograms/mL.

Animals↗

Bronchodilatory activity and pharmacokinetics of new xanthines in guinea-pigs.

1. The in vitro biological activities and the effect of protein binding on the relaxant effects in vivo of N-3-alkylxanthine and N-3-alkyl-N-1-methylxanthine derivative were investigated in guinea-pigs. 2. A significantly positive correlation was observed among the in vitro muscle relaxant activity, the cyclic adenosine monophosphate (cAMP) phosphodiesterase (PDE) inhibitory activity and the protein-binding potency of xanthine derivatives. However, there was a weak relationship between these activities and affinity for adenosine receptors. 3. When theophylline, enprofylline and 1-methyl-3-propylxanthine (MPX) were injected intravenously in guinea-pigs, their ED50 values were 6.1, 3.3 and 1.0 mg/kg, respectively. Plasma concentrations of these drugs obtained following the intravenous injection of the ED50 approximated the theoretically effective concentration (EC50) predicted from both the relaxant effects in vitro and the protein binding parameters. A good linear correlation was observed between bodyweight in four species (rats, guinea-pigs, rabbits and humans) and certain pharmacokinetic parameters of enprofylline and theophylline. 4. The present study indicates that differences in the relaxant effects of these drugs in vitro and in vivo can be explained in part by protein binding, and that the protein binding of these xanthine bronchodilators is an important determinant for their pharmacological activity. Guinea-pigs provide a useful model for studying pharmacodynamic-pharmacokinetic relationships of new bronchodilators.

3',5'-Cyclic-AMP Phosphodiesterases↗

Interspecies differences and scaling for the pharmacokinetics of xanthine derivatives.

Pharmacokinetic characteristics of the new xanthine bronchodilators, enprofylline and 1-methyl-3-propylxanthine (MPX), were investigated in mice, rats, guinea-pigs, rabbits and dogs. The possibility of an interspecies pharmacokinetic scale was also evaluated. The concentration of these two drugs in plasma and urine was determined by HPLC. Pharmacokinetic parameters were calculated using model-independent methods. The disappearance curves of the two drugs from plasma varied markedly among animal species. Interspecies differences in the plasma protein binding of each drug were observed for all animals in the study. Differences in the biotransformation of enprofylline and MPX were also confirmed among the various animal species: enprofylline is mainly excreted in an unchanged form in urine while MPX follows a non-renal route of elimination. In all animals, the renal clearance for enprofylline was greater than the glomerular filtration rate, indicating active tubular secretion. Significant allometric relationships were seen between the values of total body clearance and steady state volume of distribution for both total and unbound enprofylline and species body weight, but similar correlations could not be recognized for MPX. Renal clearance of enprofylline was also closely correlated with species body weight, suggesting no interspecies difference with relation to affinity and/or capacity for the active tubular secretion mechanism of enprofylline. Our findings suggest that xanthine derivatives, including enprofylline, are mainly eliminated via the kidney, and an estimate of the basic pharmacokinetics in man can be obtained from data in experimental animals.

Animals↗