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1.
Thiopental was administered to neurosurgical patients for cerebral protection and its pharmacokinetic parameters were determined after a single bolus of 540, 1000 or 1500 mg (3 subjects) or after multiple doses of 250 mg (5 subjects) and 500 mg (2 subjects) every two hours for up to 7 days. The data were analysed by a two- or three- compartment model and linear kinetics. After a single IV bolus, the mean initial volume of distribution (V1) was 0.4811·kg–1, and the steady-state volume of distribution (Vss) was 2.16 1·kg–1. The distribution (t1/2) and elimination (t1/2) half-lives were 0.590 and 5.89 h, respectively, and the mean residence time (MRT) was 7.44 h. The clearance was 5.41 ml·min–1·kg–1. With repeated injections, the pharmacokinetic parameters for each patient were estimated taking into account all administered doses and blood samples, which were taken whenever possible daily at steady state and after the last dose. The variability observed in the pharmacokinetic parameters of thiopental reflected by the coefficient of variation (CV%) was wide but was of similar magnitude within patients (CVintra) as it was between patients (CVinter). The steady-state trough plasma concentration (Cmin obs) ranged from 4.8 to 30 mg·1–1 (mean 16.0 mg·1–1 and median 14.3 mg·1–1). Peak concentrations (Cmax obs) ranged from 8.35 to 45 mg·1–1 (25.4 mg·1–1, and median 23.3 mg·1–1). The values of V1 and Vss were similar to those obtained after a single dose. For V1, the mean was 0.333 1·kg–1. The mean Vss was 2.68 1·kg–1, with a CVintra of 12.6 to 56% and a CVinter of 13.2%. A shorter distribution half-life t1/2 was noted on multiple dosing; the mean value was 0.122 h. The elimination half-life t1/2 and the mean residence time became longer due to a decrease in clearance. For t1/2 the mean value was 16.3 h. The mean MRT was 21.9 h, CVintra 9.19 to 48.5%, and the CVinter 35.3%. The mean clearance was 2.16 ml·min–1·kg–1, CVintra 7.28 to 25.5%, and the CVinter 20.4%. This value is 50% lower than after a single dose.Identification of the kinetic parameters of thiopental allows simulation of the effects of doses on subsequent plasma levels and will permit a priori prediction of day to day adjustment of drug dosage.  相似文献   

2.
Summary The pharmacokinetic behaviour of cefadroxil was dose-dependent in healthy male volunteers following the oral administration of single doses of 5, 15, and 30 mg · kg–1.As the dose of cefadroxil increased from 5 to 15 and 30 mg · kg–1, the peak plasma concentrations, normalized to 5 mg · kg–1, decreased significantly from 15.1 to 10.7 and 7.6 mg·l–1, while the corresponding normalized areas under the plasma concentration-time curves from 0 to 2 h decreased significantly from 1258 to 946 and 801 min·mg·l–1.When the same subjects were given 5 mg·kg–1 of cefadroxil together with 45 mg·kg–1 of cephalexin, the absorption of cefadroxil was slowed to a similar or greater extent than with the high dose of cefadroxil.Although the absorption rate decreased as the dose increased, the systemic availability of cefadroxil was essentially complete at all doses, as judged by the 24 h urinary recoveries of the antibiotic. Kinetic analysis of the plasma concentration-time curves gave the best fit with a zero-order followed by a first-order absorption process, consistent with saturable intestinal absorption of cefadroxil.The elimination rate of cefadroxil was directly related to dose and plasma concentrations, and the clearance at the dose of 5 mg·kg–1 was significantly increased by the simultaneous administration of high-dose cephalexin.The renal clearance of cefadroxil ranged from 98 ml·min·l–1 at total plasma cephalosporin (cefadroxil + cephalexin) concentrations less than 2.5 mg·l–1 to 156 mg·l–1 at concentrations greater than 40 mg·l–1. These findings are consistent with saturable active gastrointestinal absorption and renal tubular reabsorption of cefadroxil, with competitive inhibition of both processes by cephalexin.  相似文献   

3.
We measured in nine patients, poisoned by organophosphorus agents (ethyl parathion, ethyl and methyl parathion, dimethoate, or brompphos), erythrocyte and serum cholinesterase activities, and plasma concentrations of the organophosphorus agent. These patients were treated with pralidoxime methylsulphate (ContrathionR), administered as a bolus injection of 4.42 mg.kg–1 followed by a continuous infusion of 2.14 mg.kg–1/h, a dose regimen calculated to obtain the presumed therapeutic plasma level of 4 mg.l–1, or by a multiple of this infusion rate. Oxime plasma concentrations were also measured. The organophosphorus agent was still detectable in some patients after several days or weeks. In the patients with ethyl and methyl parathion poisoning, enzyme reactivation could be obtained in some at oxime concentrations as low as 2.88 mg.l–1; in others, however, oxime concentrations as high as 14.6 mg.l–1 remained without effect. The therapeutic effect of the oxime seemed to depend on the plasma concentrations of ethyl and methyl parathion, enzyme reactivation being absent as long as these concentrations remained above 30 g.l–1. The bromophos poisoning was rather mild, cholinesterases were moderately inhibited and increased under oxime therapy. The omethoate inhibited enzyme could not be reactivated.  相似文献   

4.
Summary. Twelve healthy children in three age groups anaesthetized for minor surgery were given a single oral dose of tiaprofenic acid (3 mg · kg–1) (TA). Seven blood samples and zero to 8 and 8 to 24 h urines were collected. TA concentrations in plasma and urine were measured by HPLC.No significant difference was found between the age groups in the kinetic parameters of TA and no correlation was found between these parameters and age; tmax=2.12h, Cmax=8.78mg · l–1, AUC(08 h) 33.9mg · h · l–1, AUC=39.3 mg · h · l–1, t1/2=2.35 h, Vz=0.319 l · kg–1, CL=0.094 l · h–1 · kg–1. Renal clearance was 14 ml · h–1. kg–1. 33% of the TA dose was recovered in the 24 h urine, 48% of which was conjugated, whereas in adults, TA is only found in urine as conjugates.The apparent plasma clearance was significantly higher (56%) than in 12 healthy adults given 1.5 mg · kg–1 TA. Volume of distribution and t1/2 did not significantly differ between children and adults. Since no relationship has been established between plasma TA and either efficacy or toxicity, a different dose regimen cannot be recommended in 3–11 year-old children from that in adults.  相似文献   

5.
Pharmacokinetics of ibuprofen in febrile children   总被引:1,自引:0,他引:1  
Summary Ibuprofen may be an alternative to acetaminophen to control fever in children but little is known about its pharmacokinetics in pediatric patients. We studied 17 patients (age 3–10 yr) with fever; the most prevalent diagnoses were streptococcal pharyngitis and otitis media. Ibuprofen liquid was given as a single dose, 5 mg/kg (9 patients) or 10 mg/kg (8 patients). Multiple blood samples were collected over 8 hours and analyzed by HPLC.The maximum observed serum concentrations of ibuprofen ranged from 17–42 m·ml–1 at 5 mg·kg–1 and 25–53 m·ml–1 at 10 mg·kg–1 doses. Pharmacokinetics did not appear to be affected by ibuprofen dose. Mean tmax, oral clearance and elimination half life were 1.1 h, 1.2 ml·min–1·kg–1, and 1.6 h, respectively in patients at 5 mg·kg–1 doses; the corresponding values were 1.2 h, 1.4 ml·min–1·kg–1, and 1.6 h in those receiving 10 mg·kg–1 doses. There was no relationship between age and ibuprofen kinetics. No adverse effects occurred in any patients.These data suggest that ibuprofen pharmacokinetics may not be affected by dose between 5 and 10 mg/kg or age between 3 and 10 years.  相似文献   

6.
The objective of this study was to determine the pharmacokinetics of fluconazole after oral administration in children with human immunodeficiency virus (HIV) infection. After an overnight fast, a single dose of either 2 mg·kg–1 or 8 mg·kg–1 was administered in a suspension; five children received 2 mg·kg–1 and four 8 mg·kg–1 (ages 5–13 years). Blood samples were collected at various times on day 1, and once daily on days 2–7 after the dose. Fluconazole serum concentrations were measured by gas chromatography. At the dose of 2 mg·kg–1, the Cmax, AUC (0–), and t1/2 ranged from 2.3–4.4 g·ml–1, 84.9–136 g·h·ml–1, and 19.8–34.8 h, respectively. At the dose of 8 mg·kg–1 the Cmax, AUC (0–), and t1/2 ranged from 5.4–12.1 g·ml–1, 330–684 gh·ml–1, and 25.6–42.3 h, respectively. When compared with published data in healthy adults, fluconazole achieved similar serum concentrations in the present group of children, indicating a nearly complete degree of absorption.  相似文献   

7.
Summary We have investigated the interaction of -monofluoromethyldopa (MFMD) with the effects of i.p. injectedl-DOPA (200 mg·kg–1) on blood pressure and tissue catecholamines in normal and spontaneously hypertensive rats (SHR). MFMD 10 mg·kg–1 (i.p.) effectively antagonizes thel-DOPA induced increase in heart dopamine (DA). This action is also seen after 15 or 50 mg·kg–1. The accumulation of DA in the brain is very much reduced by MFMD 50 mg ·kg–1 while after 15 or, especially, 10 mg·kg–1 more DA is formed in the rrain than afterl-DOPA alone, probably due to the peripheral decarboxylase inhibition which presents morel-DOPA to the brain. We conclude that MFMD 10 mg ·kg–1 gives a relatively selective peripheral inhibition of the decarboxylation ofl-DOPA and this dose combination was accordingly found to result in a reduction of blood pressure in conscious animals. This hypotensive response tol-DOPA was attenuated after MFMD 15 mg·kg–1 and was absent after MFMD 50 mg·kg–1. Interestingly, the hypotensive effect ofl-DOPA after MFMD 10 or 15 mg·kg–1 was more pronounced in SHR.  相似文献   

8.
Methyl parathion (20 mg · kg–1 intravenously and orally) and parathion (5 mg · kg–1 intravenously and 10 mg · kg–1 orally) were given to non-anesthetized dogs and the serum concentrations were followed in function of time. For both substances a low bioavailability after oral administration was found.In other dogs radioactivity was followed in urine after oral and after intravenous administration of labeled methyl parathion or parathion. The results suggest a good gastro-intestinal absorption of the substances.In anesthetized dogs which were given methyl parathion or parathion intravenously, high hepatic extraction ratios were found, suggesting that the low systemic availability after oral administration can be explained by an important hepatic first-pass extraction.Binding of methyl parathion and parathion to dog serum, to human serum and to a solution of human albumin was determined with equilibrium dialysis. In both species a high binding (>90%) was found for both substances and there was no concentration-dependency in the concentration range used (0.2–30 g · ml–1). In man and in dog the serum protein binding of parathion was about 5% higher than that of methyl parathion.  相似文献   

9.
Summary Cyclophosphamide pharmacokinetics were studied in seven patients with moderate to severe renal insufficiency (creatinine clearances 0–51 ml · min–1), and compared with a matched control group of patients with normal renal function. The mean half-life of cyclophosphamide following intravenous administration in the normal group was 8.21±2.33 (SD) h whilst that in renal failure was 10.15±1.80 h: these were significantly different. The total body clearance in the normal control group was 58.6±10.9 ml·kg–1h–1 which was significantly larger than in renal failure where it was 48.8±10.9 ml·kg–1h–1. Vd , Vd ss and Vc were not significantly different between the two groups. A linear relationship exists between , the first order disposition rate constant and endogenous creatinine clearance since this drug shows a relatively small degree of compartmentalisation. The plasma half-life of phosphoramide mustard, a cytotoxic metabolite of cyclophosphamide, shows a parallel and significant increase in renal failure with the parent compound. The t1/2 in normal patients was 8.33±2.0 h, whilst in the renal failure group it was 13.37±4.23 h. Total alkylating activity as measured by the nitrobenzylpyridine reaction showed a significant increase in renal failure. This data suggests that in pharmacokinetic terms it may not be necessary to alter the dose of cyclophosphamide until there is severe renal impairment. Further studies correlating the efficacy and toxicity of the drug with its pharmacokinetics in renal failure are necessary.  相似文献   

10.
Summary The time-courses of plasma carbamazepine concentrations were followed in six apparently healthy adult subjects who, at different times, took single oral drug doses of 200, 400, 500, 600, 700, 800 and 900 mg. There were some suggestions of impaired bioavailability of the drug when given in tablet form. The following values were obtained for various pharmacokinetic parameters:k abs =0.176±0.209 h–1;k=0.0203±0.0055 h–1; T1/2=37.5±13.1 h; VD=0.825±0.1041 · kg–1; Clearance=0.0163±0.0061 l · kg–1. The elimination rate constant showed a statistically significant increase with increasing drug dose. This may help explain the clinical observation that the rate of rise of steady state plasma carbamazepine concentrations tends to decrease with dose increase in patients taking carbamazepine alone.  相似文献   

11.
Summary The pharmacokinetics of digoxin were studied before and after a 2 week course of diltiazem, 30 mg four times daily, in 7 healthy volunteers. Each subject received an IV dose of digoxin before starting diltiazem and again on day 15 of the study. Diltiazem was continued until all sera and urine were collected. During the control and diltiazem phases, respectively, the terminal elimination rate constants were 0.0231±0.007 h–1 and 0.0254±0.007 h–1, the volumes of distribution were 10.5±3.95 l/kg and 10.2±3.26 l/kg, and the total body clearances were 3.72±0.78 ml·min–1·kg–1 and 4.09±0.94 ml·min–1·kg–1. None of these pharmacokinetic parameters of digoxin were significantly different before or during diltiazem administration. Overall, there does not appear to be an interaction between digoxin and diltiazem.  相似文献   

12.
A pharmacokinetic study of cyanamide, an inhibitor of aldehyde dehydrogenase (EC1.2.1.3) used as an adjuvant in the aversive therapy of chronic alcoholism, has been carried out in healthy male volunteers following intravenous and oral administration. Cyanamide plasma levels were determined by a sensitive HPLC assay, specific for cyanamide. After intravenous administration cyanamide displayed a disposition profile according to a two-compartmental open model. Elimination half-life and total plasma clearance values ranged from 42.2 to 61.3 min and from 0.0123 to 0.0190 L · kg –1 · min–1, respectively. After oral administration of 0.3, 1.0, and 1.5 mg/kg ± SEM values of Cmax, tmax (median) and AUC were 0.18 ± 0.03, 0.91 ± 0.11, and 1.65 ± 0.27 g · ml –1 ; 13.5, 13.5, and 12 min; and 8.59 ± 1.32, 45.39 ± 1.62, and 77.86 ± 17.49 g · ml –1 · min, respectively. Absorption was not complete and the oral bioavailability, 45.55 ± 9.22, 70.12 ± 4.73, and 80.78 ± 8.19% for the 0.3, 1.0, and 1.5 mg/kg doses, respectively, increased with the dose administered. The models that consider a first-order absorption process alone (whether with a fixed or variable bioavailability value as a function of dose) or with loss of drug due to presystemic metabolism (with zero-order or Michaelis–Menten kinetics) were simultaneously fitted to plasma level data obtained following 1 mg/kg iv and 0.3, 1.0, and 1.5 mg/kg oral administrations. The model that best fit the data was that with a first-order absorption process plus a loss by presystemic metabolism with Michaelis–Menten kinetics, suggesting the presence of a saturable first-pass effect.  相似文献   

13.
Summary Nimodipine pharmacokinetics was investigated in 12 Chinese patients with acute subarachnoid haemorrhage receiving an IV infusion of 1.6 or 2 mg/h (based on estimated body weight) for 10 days. Peripheral venous blood samples were collected for up to 4 days and plasma nimodipine was assayed by GC/ECD. The mean value was taken as the steady state concentration (Css) and Clearance (CL) (hourly dose/Css) was calculated. Eight survivors were given oral nimodipine (60 or 90 mg) every 6h (based on body weight), blood was sampled over 6 h and the plasma nimodipine level determined. The values for Css, CL and CL·kg–1 were 33.5 g·l–1, 58 l·h–1 and 1.0 l·h–1·kg–1 respectively; in survivors receiving the drug orally, bioavailability of the 30 mg tablet was 9%. In one very sick patient given crushed tablets by naso-gastric tube, the AUC was very low; in vitro studies indicated that adsorption of nimodipine by the tubing was unlikely to have been the cause.The pharmacokinetic findings in Chinese patients are comparable to previously reported values in Caucasians.  相似文献   

14.
Summary The effects of two doses of tolazoline have been compared in 2 groups of newborns suffering from the persistent fetal circulation syndrome. The effects on PaO2 and AaDO2 were similar in the 2 groups who received either a bolus of 1 or 0.5 mg·kg–1 tolazoline, followed by a continuous infusion of 1 or 0.5 mg·kg–1·h–1. The observed changes did not differ significantly from those previously observed in babies treated with 2 mg·kg–1. A rise in PaO2 and a reduction in AaDO2 were usually observed shortly after the bolus injection and at plasma levels between 1.5 and 4 µg·ml·–1. A progressive rise in plasma level over time occurred after 1 mg·kg–1 (and in the previous study of 2 mg) but not with 0.5g/kg tolazoline. The elimination half-life of tolazoline in 6 patients was 5 to 13 h. The data suggest that continuous infusion of tolazoline is not necessarily required and that the dose of 0.5 mg/kg is more appropriate and safer than the higher doses usually proposed.  相似文献   

15.
Summary The pharmacokinetics of vinpocetine and its main metabolite, apovincaminic acid (AVA), were studied in the aged. Vinpocetine was eliminated with a mean half-life of 2.12±0.51 h. Total plasma clearance (CL) and distribution coefficient () of the parent drug were 2.2±0.9 l · kg–1 · h–1 and 6.7±3.7 l · kg–1, respectively. The CL and of vinpocetine differed significantly from young subjects but the elimination half-life was not altered. Significant changes in the elimination half-life and plasma clearance of AVA were found, perhaps because of the physiological decrease in renal function.  相似文献   

16.
Summary We have analysed the pharmacokinetics of-human atrial natriuretic polypeptide (-hANP) in healthy subjects, using a two-compartment open model following bolus intravenous injection. The plasma half-times for the fast and slow components were 1.7±0.07 min and 13.3±1.69 min respectively. V1 (the volume of the central compartment), Vz (volume of distribution) and Vss (volume of distribution at steady-state) were 5370±855 ml (89.5±14.3 ml·kg–1), 32000±4620 ml (533±77.0 ml·kg–1), and 11900±1530 ml (198±25.5 ml·kg–1) respectively. The mean plasma clearance was 1520±121 ml·min–1 (25.4±2.0 ml·min–1·kg–1.  相似文献   

17.
Summary Sparteine sulphate, given i.v. as a bolus of 15 mg/ml plus 90 mg in 0.9% NaCl 100 ml over 60 min, increases plasma insulin and decreases plasma glucose and adrenaline in non-insulin dependent (Type II) diabetic subjects. The hypoglycaemic effect was also evident in the presence of a high plasma glucose level produced by Biostator changing glucose infusion from 20.2±2.8 to 26.4±4.2 mg · kg–1 · min–1 (p<0.01), and it was potentiated by simultaneous infusion of arginine.No additional effect of sparteine on the peripheral sensitivity to insulin were detected by the euglycaemic, hyperinsulinaemic glucose clamp technique, as the glucose infusion rate (3.1±0.8 vs 2.6±1.2 mg · kg–1 · min–1) was not statistically significant different in the last 60 min of the experiment.It is concluded that sparteine sulphate enhances -cell secretion, causing a fall in the plasma glucose concentration.  相似文献   

18.
The urinary excretion kinetics of p-nitrophenol were studied in rabbits following oral administration of parathion at a dose of 3 mg/kg. Elimination of p-nitrophenol began rapidly, and of the total amount excreted during the study period, 46% was excreted in the first 3 h; 85% was excreted at 6 h after administration of the pesticide. The mean maximum excretion rate of p-nitrophenol was 111.15±61.02 g/h reached in a time of 0.77±0.26 h. The formation and disappearance rate constants of the metabolite were 2.85±2.80 h–1 and 0.80±0.28 h–1, respectively. A linear relationship was observed between the plasma concentrations of parathion and the urinary excretion rate of p-nitrophenol.  相似文献   

19.
Summary We have studied the mechanisms of the increased dosage requirements of the H2-receptor antagonist cimetidine in paediatric burned patients in a pharmacokinetic and pharmacodynamic study.Cimetidine (10–15 mg·kg–1) was given to 21 burned children and multiple blood samples were obtained for determination of plasma cimetidine concentrations and pharmacokinetic analysis.The relation of gastric pH to plasma cimetidine concentrations was studied in five of these children who had nasogastric tubes. In an additional four patients the effects of cimetidine on gastric pH were studied during a continuous infusion of cimetidine, which maintained steady-state plasma cimetidine concentrations above 0.5 µg·ml–1.The mean (SEM) clearance of cimetidine in burned children was 16.22 ml·kg–1 and cimetidine half-life was 1.06 h. The cimetidine clearance and half-life values were significantly higher in burned children compared with our previously reported values for normal adult patients, 8.2 ml·min·kg–1 and 2.21 h respectively.Endogenous creatinine clearance normalized to 70 kg in burned children was 190 ml·min–1. In burned children 41% of the dose of intact cimetidine was excreted during 8 h of the study compared with 45% excretion during 24 h in healthy adult controls previously reported. The correlation coefficient between creatinine and cimetidine clearances was 0.93 (r 2=0.85).The plasma concentration of cimetidine needed to increase gastric pH to 4.0 was 1.0 µg·ml–1, which contrasts with the value of >0.5 µg·ml–1 required for adult burned patients.These findings support the hypothesis that the higher dosage requirements of cimetidine in burned children is due both to enhanced elimination kinetics and to alterations in target organ sensitivity, requiring higher than normal plasma concentrations for the desired effect. In burned children Cimetidine should be given in higher doses and/or more frequently.  相似文献   

20.
Summary The monitoring of quinine by HPLC in 3 patients suffering from cerebral malaria with acute renal failure and treated by haemofiltration is reported.The recommended dose of quinine in this situation is reduced to 10 to 15 mg·kg–1·day–1. However, in the first patient, when given quinine 10 mg kg–1·day–1 the plasma concentration was mainly below the recommended therapeutic range of 5 to 15 mg/l. In consequence, the dose of quinine in the second patient was elevated to quinine dihydrochloride 15.1 mg·kg–1·day–1 which produced plasma concentrations in the low therapeutic range. In the third patient, an unreduced dose of quinine dihydrochloride 25.7 mg·kg–1·day–1 was employed, resulting in plasma concentrations above 15 mg/l, which is generally assumed to be toxic, although, no sign of acute quinine toxicity was seen.The antimalarial effect in all three patients was satisfactory. Quinine was estimated in the haemofiltrate in two patients and was found to be below the limit of sensitivity (0.25 mg/l). Plasma quinine did not change during or shortly after haemofiltration.It is concluded that in case of acute renal failure in cerebral malaria the dose of quinine should be reduced, but that the common recommendation of 10 to 15 mg·kg–1·day–1 may be too low, and that haemofiltration has no marked influence on the total body clearance of quinine.  相似文献   

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