PubMed Health⌕ Search

Biomedical subjects

D W Bourne

Publications and source records attributed to D W Bourne.

At least 19 recordsLinked to original sources

A liquid chromatographic method for the simultaneous determination of promethazine and three of its metabolites in plasma using electrochemical and UV detectors.

A new assay method has been developed for the quantitation of promethazine (PMZ) with a sensitivity and reproducibility as good as any previously reported method. This method is also capable of quantitatively determining three metabolites of PMZ (monodemethylated, sulphoxidated, and monodemethylated sulphoxidated PMZ), which has not been previously described. The method uses high-performance liquid chromatography with amperometric and UV detection simultaneously and requires only one extraction step from serum with chloroform. The method uses trifluoperazine as the internal standard. The limit of detection level for PMZ is 1.0 ng/ml when a 0.2-mL specimen of plasma is assayed. A validation study is also conducted for evaluating the recovery, precision, linearity of response, sensitivity, and selectivity of the method.

Chromatography, High Pressure Liquid↗

Bioavailability of intranasal promethazine dosage forms in dogs.

Intramuscular promethazine (PMZ) is used aboard the US Space Shuttle to ameliorate symptoms of space motion sickness. Bioavailability after an oral dose of PMZ during space flight is thought to be impaired because of gastrointestinal disturbances associated with weightlessness and space motion sickness. In an attempt to find an alternative dosage form for use in space, we evaluated two intranasal (i.n.) dosage forms of PMZ in dogs for absorption and bioavailability relative to that of an equivalent intramuscular dose. Promethazine (5 mg kg-1) was administered as two intranasal dosage forms and as an intramuscular (i.m.) dose to three dogs in a randomised cross-over design. Serial blood samples were taken and analysed for PMZ concentrations and the absorption and bioavailability of PMZ were calculated for the three dosage forms. PMZ absorption from the carboxymethyl cellulose microsphere i.n. dosage form was more rapid and complete than from the myverol cubic gel formulation or from an i.m. injection. Bioavailability of the microsphere formulation was also greater than that of the gel formulation (AUC 3009 vs 1727 ng h ml-1). The bioavailability of the two i.n. dosage forms (relative to that of the i.m. injection) were 94% (microsphere) and 54% (gel). The i.n. microsphere formulation of PMZ offers great promise as an effective non-invasive alternative for treating space motion sickness due to its rapid absorption and bioavailability equivalent to the i.m. dose.

Administration, Intranasal↗

Disposition of aerosolized liposomal amphotericin B.

Amphotericin B (AmB) is an important drug for the treatment of fungal infection, but toxicity limits the lung tissue doses which may be achieved through intravenous administration. Although incorporation of AmB in liposomes reduces these effects and increases the therapeutic index for intravenous administration, targeted delivery to lung tissues via inhaled liposomal AmB aerosol may be a more effective approach. Aerosolization of liposomal amphotericin B targets the lungs, the organs first infested by many fungi. Development of optimal aerosolized liposomal AmB therapies requires a better understanding of the effect that liposome surface charge has on lung clearance kinetics. In this work we evaluated the clearance kinetics and organ distribution of inhaled liposomal AmB in male Balb/C mice. Mice were exposed via nose only to AmB-containing liposomal aerosols having positive, negative, or neutral surface charge characteristics. The formulations were aerosolized using a Collison nebulizer. Groups of animals were euthanized at predetermined times and the lungs and other organs were analyzed for AmB. AmB was not detected in serum and other organs such as kidneys, liver, and brain. The disposition of neutral and positive liposomal amphotericin B in lungs followed biexponential kinetics. The alpha and beta phase half-lives for positive liposomes were 1.3 and 15.1 days, respectively, and 2.3 and 22 days for neutral liposomes. AmB delivered via negative liposomes exhibited monoexponential clearance with a half-life of 4.5 days. These results suggest that toxic side effects in nontarget tissues are minimal and may indicate a potential for long term protection against fungal infections.

Aerosols↗

Using the Internet as a pharmacokinetic resource.

The Internet is an growing resource for scientific information, and includes information which can be useful to the pharmacokineticist. Once connected to the Internet there is a wide variety of information sources available. Collaboration with colleagues, research groups, discussion lists or news groups can be a valuable use of the Internet. Interactive discussions are possible using Internet Relay Chat or other conferencing software. There are a multitude of data, software and other information available via FTP, gopher or World Wide Web servers. This information may be exclusively research-oriented or more useful for instructional use, or suitable for both.

Computer Communication Networks↗

New high-performance liquid chromatographic method for amphotericin B analysis using an internal standard.

A simple and reproducible HPLC method for the analysis of amphotericin B (AmB) in serum, lung and liver using natamycin as the internal standard was developed. AmB and natamycin were extracted from serum, lung and liver and were separated using an isocratic elution from C18 reversed-phase column. The mobile phase consisted of acetonitrile-10 mM acetate buffer pH 4.0 (37:63, v/v). The HPLC system had two detectors in series. One was set at 303 nm and the other at 383 nm for the detection of natamycin and AmB, respectively. The retention times of AmB and natamycin were 15 and 6 min, respectively. The recovery efficiency was 96%-70%. The limit of quantification was 0.1 microgram/ml. The assay was reproducible, the within-day coefficient of variation (n = 6) was < 8% for serum, lungs and liver. The between-day variability (n = 6) was < 7.7% for serum, liver and lungs at 1 microgram/ml or 1 microgram/g tissue concentration. The assay was linear within the range 1-40 micrograms/ml (r2 = 0.99).

Amphotericin B↗

Bioavailability of intranasal scopolamine in normal subjects.

The bioavailability of scopolamine in three dosage forms was compared in 12 healthy nonsmoking male volunteers. Subjects received 0.4-mg doses of scopolamine bromide in intravenous (i.v.), intranasal (i.n.), or oral (p.o.) dosage forms on three occasions, with at least 2 weeks separating the doses. Scopolamine concentrations in plasma were determined with a combined reverse-phase liquid chromatographic-radioreceptor binding assay. Saliva volume and flow rate and percent suppression of control flow rate were determined from each sample. Absorption after i.n. and po scopolamine administration was rapid; plasma concentrations [1680 (i.n.) and 164 pg/mL (p.o.)] peaked within 1 h of dosing [0.37 (i.n.) and 0.78 h (p.o.)], respectively. i.n. and i.v. scopolamine suppressed salivary flow rate to similar extents (95% and 99.7%), respectively. Times to reach maximum effect were 1.05 and 0.27 h after i.n. and i.v. dosage, respectively. Absolute intranasal bioavailability, calculated from the area under the drug concentration vs time curve, was found to be significantly greater than that of p.o. scopolamine (83% vs 3.7%, p < 0.05). The i.n. route may provide a noninvasive, reliable, fast, and effective route for administering scopolamine.

Administration, Intranasal↗

Application of physiologically based pharmacokinetic models for assessing drug disposition in space.

Exposure to weightlessness induces physiologic changes that may lead to pharmacokinetic and pharmacodynamic alterations of drugs administered to crew members in flight. Preliminary data from flight and ground-based studies indicate that pharmacologically significant changes occur in the kinetics of medications given in weightlessness and in simulated microgravity (head-down bed rest). Conducting flight studies on all available medications to identify the changes in their pharmacokinetic behavior in weightlessness is not feasible. An alternative approach for obtaining such information is to use computer simulations employing physiologically based pharmacokinetic (PBPK) models. Information thus obtained would be helpful in predicting the therapeutic effectiveness of medications in space, and also in developing plans for flight studies. This paper presents a brief review of relevant physiologic factors and pharmacokinetic implications of space flight, and includes a preliminary PBPK model for estimating plasma concentration-time profiles of acetaminophen under different experimental conditions.

Acetaminophen↗

Effects of localized Pasteurella haemolytica infection on erythromycin-binding properties of bovine alpha-1-acid glycoprotein, albumin, serum, and tissue chamber fluids.

The in vitro erythromycin-binding properties of bovine alpha-1-acid glycoprotein (AAG) and albumin were studied by using equilibrium dialysis. In addition, the proportions of free erythromycin in bovine serum and tissue chamber fluid before and 4 days after inoculation of subcutaneous tissue chambers with Pasteurella haemolytica were measured. At a concentration of 5 micrograms/ml, erythromycin was moderately bound to AAG (39% +/- 4% free) and was only slightly bound to albumin (86% +/- 2% free). Scatchard analysis of the data describing binding to pure bovine AAG indicated that erythromycin was bound to a single high-affinity (6.45 x 10(4) M-1) site on the protein. At lower total concentrations of erythromycin, the free concentrations of the antibiotic were lower in serum samples collected after infection (49% +/- 3% at 5 micrograms of erythromycin per ml) than in those collected before inoculation (55% +/- 3% at 5 micrograms of erythromycin per ml). Inoculation had no effect on binding to macromolecules in chamber fluids. Inoculated tissue chambers served as a convenient model for studying the effect of infection on drug-macromolecule interactions in interstitial fluid.

Animals↗

Distribution of intramuscularly administered erythromycin into subcutaneous tissue chambers before and after inoculation with Pasteurella haemolytica.

Distribution of erythromycin into subcutaneous tissue chambers was characterised pharmacokinetically and the effect of Pasteurella haemolytica infection on the extent of penetration was studied. Thermoplastic tissue chambers were implanted subcutaneously in the paralumbar fossae of six calves. Thirty-five days after implantation, the tissue chamber distribution of intramuscularly administered erythromycin (30 mg kg-1) was studied. Chambers were then inoculated with P haemolytica and the tissue chamber pharmacokinetics of erythromycin were again studied. Diffusion of erythromycin into tissue chambers was best described using a two-compartment model with tissue chambers representing a relatively inaccessible compartment. Despite changes in chamber fluid pH, the extent of erythromycin penetration into chambers was not affected by P haemolytica inoculation. Comparison of computer simulated concentration-time curves resulting from different routes of administration revealed that penetration of erythromycin into less accessible sites was more likely to be higher after intravenous administration than after intramuscular administration.

Animals↗

Physiological modeling of disposition of potential tumor-imaging radiopharmaceuticals in tumor-bearing mice.

Radiopharmaceuticals have great potential in the early detection of human tumors. Three potential 99mTc-labeled platinum compounds based on cisplatin have been synthesized and tested in tumored mice. This report presents the analysis of the disposition data obtained after a single intravenous injection with an empirical, physiologically based pharmacokinetic model. The radioactivity of each radiopharmaceutical after administration was measured in blood, urine, and 15 tissues, including tumor. Parameters included in the model were tissue volumes (experimentally determined), tissue blood flows (determined from literature values), tissue:blood extraction ratios (determined by nonlinear least-squares regression with MULTI-FORTE), and clearance terms (also determined by nonlinear least-squares regression). Data were weighted by the reciprocal of the square of the observed values. Good fits to the experimental data were obtained. As expected, the compound producing the best tumor:blood profile (3) also had the highest tumor extraction ratio (6.2 versus 2.0 and 1.3 for 1 and 2, respectively). Total body clearance values for the radioactivity associated with the three compounds 1-3 were calculated to be 0.09, 0.04, and 0.016 mL/min, respectively. Analysis of data with such an empirical, physiologically based model may assist future development of suitable tumor-imaging agents.

Animals↗

Comparison of MS-DOS and Macintosh pharmacokinetic analysis programs using a two-compartment, two-infusion dosing scheme.

Pharmacokinetic values derived by three nonlinear least-squares regression computer programs for sets of serum drug concentration data were compared. The three programs selected for comparison were the MS-DOS-based programs PCNONLIN and ADAPT and the Macintosh program BOOMER. Data on serum recainam hydrochloride concentration in 10 patients given an i.v. loading dose followed by a maintenance infusion were fitted by the appropriate models in each program. Samples had been subjected to reverse-phase isocratic high-performance liquid chromatography with ultraviolet light detection; intraday and interday coefficients of variation were less than 8% over the range of concentrations measured. A two-compartment model was used for all regressions. Each program was given identical initial estimates, and the simplex minimization algorithm of each program was used to fit the model to the data. An identical weighting scheme was used for all three programs. The mean pharmacokinetic values estimated by each program for the 10 data sets were essentially identical. Slightly larger rate constants and smaller volume terms were derived by BOOMER. BOOMER yielded the lowest weighted sum of squares and the highest correlation coefficient. A mean concentration-time plot showed that the programs all produced values that described the data very well. The three computer programs used in this analysis derived essentially the same pharmacokinetic values to describe sets of serum drug concentration data. The BOOMER program provides an acceptable alternative to MS-DOS-based programs for pharmacokinetic analysis.

Chromatography, High Pressure Liquid↗

Biological evaluation of 99mTc labelled cis-platinum containing benzyliminodiacetic acids as potential tumour imaging agents.

The synthesis of three new potential tumour-imaging radiopharmaceuticals in which a cis-platin derivative is attached to benzyl iminodiacetic acid, a ligand capable of forming a stable complex with 99mTc, has previously been reported by us [Awaluddin et al. Appl. Radiat. Isot. 38, 671-674 (1987)]. We have now carried out extensive biodistribution studies on these compounds as well as on two fragments of their structures which do not contain platinum. The results suggest that the presence of platinum is not essential for the tumour-localizing properties of the radiopharmaceuticals.

Animals↗

Extension of the serum digoxin concentration--response relationship to patient management.

The purposes of this investigation were to demonstrate how computer simulations may be employed to extrapolate data obtained from a single intravenous digoxin dose to multiple oral dosing patterns and how these simulations may apply to clinical situations. The intravenous data were obtained from a previous study of the pharmacokinetics of serum digoxin and its inotropic response (derived from systolic intervals) in 12 normal male volunteers. The simulations were applied to various clinical situations including variations in oral dosing, alternate loading doses, no loading versus loading dose, and intravenous versus oral dosing. A nonlinear relationship was found between response and the post-distribution serum digoxin concentration in the therapeutic range. Thus, the increase in inotropic response is less than proportional to the increase in digoxin concentration in serum. This nonlinear relationship has several important clinical implications for loading and maintenance dosing protocols. Such concepts may be important relative to more rational clinical use of digoxin and to decreasing digoxin toxicity.

Computer Simulation↗

BOOMER, a simulation and modeling program for pharmacokinetic and pharmacodynamic data analysis.

BOOMER is an improved version of an earlier non-linear regression program, MULTI-FORTE. Rather than the user writing a FORTRAN subroutine, models are defined by means of the parameters which make up the model. Models based on differential equations are specified by means of zero-order, first-order, or Michaelis-Menten-type rate constants. Doses (in units of mass) are translated into the usually observed concentration units by a reciprocal volume parameter. Integrated equation models are specified in terms of baseline terms, exponential terms, or the emax function with slope term as described by the Hill equation. Time points can be specified as parameters to specify dose times, infusion start/stop times, or lag times. With careful selection of parameters quite complex models can be specified. The user has a choice of differential equation solvers and fitting algorithms.

Computer Simulation↗

Subcutaneously implanted tissue chambers--a pharmacokinetic study.

The purpose of this study was to characterize the pharmacokinetics of a subcutaneously implanted tissue-chamber model. Thermoplastic tissue chambers were implanted in the paralumbar fossae of six steers. Starting 30 days after implantation, the distribution of intravenously administered antipyrine and phenylbutazone into the tissue chambers was studied. These pharmacokinetic experiments were repeated 10 days later to determine the effect of time after implantation on tissue-chamber distribution. Fifty days after implantation, tissue chambers were drained of transudate, refilled with sterile saline and the rate of influx of endogenous urea, creatinine and albumin was measured. Delayed diffusion of antipyrine and phenylbutazone into tissue chambers was well described using a compartmental model in which tissue-chamber fluid represented the third of three compartments arranged in series. The distribution of antipyrine into tissue chambers was greater than that of phenylbutazone; an observation which is well correlated with the high degree of protein binding of phenylbutazone. There was no effect of time on the penetration of the two agents. Rapid diffusion of urea and creatinine and extremely slow influx of albumin into chambers showed that these chambers formed true interstitial compartments.

Animals↗

Disposition of cefotaxime and its metabolite, desacetylcefotaxime, in rat: application of a pharmacokinetic-protein binding model.

1. The pharmacokinetics and protein binding of cefotaxime and desacetylcefotaxime were studied in rat. 2. After i.v. dosing of cefotaxime (100 mg/kg) the concentration-time profiles of cefotaxime and its metabolite desacetylcefotaxime followed biphasic decays, giving the kinetic parameters for cefotaxime: VTss and AUC of 127 ml/kg and 8.2 mg/min per ml, respectively. The beta-elimination half-life was 17 min with Cls of 13.1 ml/min per kg. The average association constant (K x 10(3) M-1) and total protein binding site concentration (Pt x 10(-3) M) for cefotaxime were 3.87 and 0.68, respectively, with saturation of plasma protein binding occurring at about 30 micrograms/ml. The average free fraction of cefotaxime in plasma (Fp) was 0.48. 3. The metabolite desacetylcefotaxime had a plasma Cmax of 74.4 micrograms/ml (35 min). The respective elimination half-life and AUC were 53 min and 7.2 mg/min per ml. The binding profile, unlike that of cefotaxime, was non-saturable with a K value of 13.90M-1. The Fp of desacetylcefotaxime was 0.89. 4. The concentration-time behaviour of total and free desacetylcefotaxime (i.v. bolus, 50 mg/kg) declined biexponentially with respective VTss and AUC of 125 ml/kg and 19.4 mg/min per ml (total drug), and 192 ml/kg and 13.9 mg/min per ml (free drug). The beta-phase half-life of total and free drug was about 36 min, whereas CLs (ml/min per kg) were 2.7 (total) and 3.7 (free). The binding characteristics were in good agreement with those of the metabolite produced in vivo, with a K value of 8.58 M-1. The Fp value of desacetylcefotaxime in plasma was 0.73.

Animals↗

Disposition of ceftriaxone in rat: application of a pharmacokinetic-protein binding model and comparison with cefotaxime.

1. The pharmacokinetic profile and protein binding parameters of ceftriaxone were determined in rat, and compared with those of cefotaxime. 2. Plasma concentration-time curves of ceftriaxone and cefotaxime (single i.v. bolus; 100 mg/kg each) were described by a two-compartment, protein-binding model. 3. The corrected VTss (ml/kg) of ceftriaxone was lower than that of cefotaxime. The AUCs of both drugs were similar. The t1/2 beta of the two drugs differed significantly, being 29 min for ceftriaxone and 17 min for cefotaxime. 4. In vivo protein binding constants of both drugs were similar, but the concentrations of protein binding sites differed significantly. The average free fractions in plasma (Fp) of ceftriaxone and cefotaxime were 0.22 and 0.48 respectively. 5. Saturation of the binding site for cefotaxime was estimated to occur at about 30 micrograms/ml in plasma, whereas saturation for ceftriaxone was seen at lower concentrations.

Animals↗