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Biomedical subjects

F Bressolle

Publications and source records attributed to F Bressolle.

At least 37 records · Page 2Linked to original sources

Determination of perfluorodecalin and perfluoro-N-methylcyclohexylpiperidine in rat blood by gas chromatography-mass spectrometry.

A gas chromatography-mass spectrometry method (SIM mode) was developed for the determination of perfluorodecalin (cis and trans isomers, 50% each) (FDC), and perfluoromethylcyclohexylpiperidine (3 isomers) (FMCP) in rat blood. The chromatographic separation was performed by injection in the split mode using a CP-select 624 CB capillary column. Analysis was performed by electronic impact ionization. The ions m/z 293 and m/z 181 were selected to quantify FDC and FMCP due to their abundance and to their specificity, respectively. The ion m/z 295 was selected to monitor internal standard. Before extraction, blood samples were stored at -30 degrees C for at least 24 h in order to break the emulsion. The sample preparation procedure involved sample clean-up by liquid-liquid extraction. The bis(F-butyl)ethene was used as the internal standard. For each perfluorochemical compound multiple peaks were observed. The observed retention times were 1.78 and 1.87 min for FDC, and 2.28, 2.34, 2.48 and 2.56 min for FMCP. For each compound, two calibration curves were used; assays showed good linearity in the range 0.0195-0.78 and 0.78-7.8 mg/ml for FDC, and 0.00975-0.39 and 0.39-3.9 mg/ml for FMCP. Recoveries were 90 and 82% for the two compounds, respectively with a coefficient of variation <8%. Precision ranged from 0.07 to 15.6%, and accuracy was between 89.5 and 111.4%. The limits of quantification were 13 and 9 microg/ml for FDC and FMCP, respectively. This method has been used to determine the pharmacokinetic profile of these two perfluorochemical compounds in blood following administration of 1.3 g of FDC and 0.65 g of FMCP per kg body weight, in emulsion form, in rat.

Animals↗

High-performance liquid chromatographic assay for minocycline in human plasma and parotid saliva.

A sensitive and specific high-performance liquid chromatographic (HPLC) method with UV detection was developed for the determination of minocycline in human plasma and parotid saliva samples. Samples were extracted using an Oasis HLB cartridge and were injected into a C8 Nucleosil column. The HPLC eluent contained acetonitrile-methanol-distilled water-0.1% trifluoroacetic acid (25:2:72.9:0.1, v/v). Demeclocycline was used as internal standard. The assay showed linearity in the tested range of 0.1-25 microg/ml. The limit of quantitation was 100 ng/ml. Recovery from plasma or parotid saliva averaged 95%. Precision expressed as %CV was in the range 0.2-17% (limit of quantitation). Accuracy ranged from 93 to 111%. In the two matrices studied at 20 and 4 degrees C, rapid degradation of the drug occurred. Frozen at -30 degrees C, this drug was stable for at least 2 months, the percent recovery averaged 90%. The method's ability to quantify minocycline with precision, accuracy and sensitivity makes it useful in pharmacokinetic studies.

Chromatography, High Pressure Liquid↗

Pk-fit: a pharmacokinetic/pharmacodynamic and statistical data analysis software.

This paper presents a new software, Pk-fit, to fit nonlinear models to kinetic and dynamic data. Directly connected to the spreadsheet, a statistical software component manager is available. In the data manager, Pk-fit includes the noncompartmental analysis module, the compartmental analysis module, the nonlinear kinetic process module, the drug absorption module, the pharmacodynamic data modeling module, the simultaneous fitting module, and the user-defined library module. In this paper, we present a detailed comparison of the kinetic analysis using Pk-fit and common software packages, PCNONLIN, MODFIT, MKMODEL, NONMEM, and SIPHAR, based on the textbook published by Gabrielsson in 1992, "Compilation of Analyzed Data Sets for Pharmacokinetic Software Evaluation." The comparison of Pk-fit with the reference softwares revealed that the parameters and their dispersion found with Pk-fit are consistent with the ones estimated with the other programs. In conclusion, Pk-fit constituted a valid tool for pharmacokinetic/pharmacodynamic data analysis.

Data Interpretation, Statistical↗

Pharmacokinetics of enoxacin and its oxometabolite after multiple oral dosing and penetration into prostatic tissue.

The objective of this study was to determine the concentrations of enoxacin and its oxo-metabolite in human prostatic tissue after multiple oral doses (400 mg bd) in 13 patients. On the first day of treatment, elimination half-lives were 6.8 h for enoxacin and 7.1 h for its metabolite; they were increased on day 4 (10.3 and 13.2 h, respectively). The ratios of drug concentration in prostatic tissue and plasma averaged 2.2 for enoxacin and 1.4 for its metabolite. In conclusion, concentrations of enoxacin achieved within the prostatic tissue were higher than plasma concentrations suggesting that there was an active transport mechanism.

Administration, Oral↗

A phase I and pharmacokinetic study of melphalan using a 24-hour continuous infusion in patients with advanced malignancies.

The objectives of the present study were to determine the following: (a) the maximum tolerated dose (MTD) of melphalan using a 24-h continuous infusion; (b) the clinical toxicity; and (c) the pharmacokinetic characteristics of melphalan at each dose level. Twenty-one patients with refractory solid tumors were enrolled in the study. Melphalan, packaged in 3% sodium chloride, was administered i.v. over a 24-h period. Patients were assigned to one of three escalating dose levels of melphalan: (a) 20 mg/m2 (n = 5); (b) 30 mg/m2 (n = 7); and (c) 40 mg/m2 (n = 6). Each patient underwent pharmacokinetic evaluation during the first cycle of treatment. Melphalan concentrations in plasma were determined by high-performance liquid chromatography. Toxicity was evaluated after each course of chemotherapy. All of the patients were assessable for toxicity and pharmacokinetics, and 20 patients were assessable for response analysis. A total of 50 courses of melphalan was studied. The MTD was 30 mg/m2. The dose-limiting toxicity was neutropenia and thrombocytopenia. Hematotoxicity was reversible (nadir, 14-15 days; recovery, 3.5 and 12.5 days for 30 and 40 mg/m2, respectively), cumulative, and related to the administered dose and to the history of previous therapy. There were six episodes of neutropenic sepsis. Individual pharmacokinetic parameters were estimated using a Bayesian approach and linear elimination kinetics. Data were compatible with a one-compartment model. Relationships have been found between the area under the plasma concentration-time curve and doses and between Css and doses. Moreover, clearance, t1/2 elimination, and volume of distribution did not change statistically with dose, which suggests linear kinetics. Two partial responses were observed in patients with ovarian carcinoma or adenocarcinoma of unknown primary origin, and another patient had stabilization disease. In conclusion, melphalan MTD was determined to be 30 mg/m2 when administered as a 24-h infusion. Hematological toxicity was the dose-limiting toxicity. The most important nonhematological toxicity encountered was nausea and vomiting. The recommended dose for Phase II studies was 30 mg/m2.

Adolescent↗

Pharmacokinetics of sodium tungstate in rat and dog: a population approach.

Sodium tungstate has been found to correct hyperglycemia in insulin- and noninsulin-dependent models of diabetes when administered in drinking fluid with a low degree of toxicity; thus, it provides a potential treatment for diabetes. In the present report, pharmacokinetic studies with sodium tungstate were carried out in the Sprague-Dawley rat and beagle dog. This drug was administered either i.v. (8.97 mg/kg in rat; 25 and 50 mg/kg in dog) or orally in the form of solution (35.9 and 107.7 mg/kg in rat; 25 and 50 mg/kg in dog). Tungsten was quantified using an inductively coupled plasma method. Pharmacokinetic parameters were estimated using a population approach. Sodium tungstate followed first order kinetics, and plasma concentration-versus-time data were adequately described by a two-compartment model. In rat, bioavailability was high (92%), whereas it was lower in dog (approximately 65%). The total volume of distribution expressed by unit of body weight was much higher when the animal was smaller (0.46 l/kg in rat versus 0.23 l/kg in dog). The total body clearance normalized by weight, 0.19 l/h/kg in rat versus 0.043 l/h/kg in dog, changed as for the volume of distribution. The elimination half-life was two times higher in dog (approximately 4 h) than in rat (approximately 1.7 h). In the range of 35.9 to 107.7 mg/kg after oral administration in rat and 25 to 50 mg/kg after oral and i.v. administration in dog, tungsten plasma concentrations increased in proportion to dose.

Administration, Oral↗

Bayesian estimate of vinorelbine pharmacokinetic parameters in elderly patients with advanced metastatic cancer.

The objective of the present study was to determine the pharmacokinetic profile of vinorelbine in patients 65 years or older with metastatic cancer in progression. Twelve patients were enrolled in this study. Vinorelbine was administered by a 10-min continuous infusion at a dose of 20-30 mg/m2 through a central venous catheter. Chemotherapy was repeated weekly. A total of 46 courses of vinorelbine was studied. Each patient underwent pharmacokinetic evaluation during the first cycle of treatment. Toxicity evaluation was carried out before each course of chemotherapy. Plasma vinorelbine determinations were performed by high-performance liquid chromatography with spectrofluorometric detection. A Bayesian estimation of individual pharmacokinetic parameters was carried out using the nonlinear mixed-effect modeling approach as implemented in the NONMEM computer program. An open three-compartment pharmacokinetic model with a zero order input rate was used to describe the kinetics of vinorelbine. Area under the plasma-concentration time curve (AUC) normalized to a 30 mg/m2 administered dose averaged 0.89 mg/liter x h (coefficient of variation = 23.7%). The total plasma clearance averaged 0.93 liter/h/kg (0.61-1.83 liter/h/kg; coefficient of variation = 38.6%). The elimination half-life was 38.1 +/- 5.8 h. A high correlation was found between patient age and total clearance (r = -0.8; P < 0.001). The main hematological toxicity observed was anemia in 11 patients. Neutropenia occurred in 50% of patients. Significant correlations were found between AUC and the decrease in the hemoglobin level (r = 0.60) and between AUC and the decrease in the neutrophil count (r = 0.66). Thrombocytopenia was observed in only one patient. In conclusion, the age-related decrease in clearance found in this study supports the design of a Phase I study of vinorelbine in patients older than 65 years or perhaps 70 years.

Age Factors↗

Folic acid alters methotrexate availability in patients with rheumatoid arthritis.

OBJECTIVE: To evaluate the effects of repeated doses of folic acid on the pharmacokinetics of methotrexate (MTX) in patients with rheumatoid arthritis. METHODS: We studied 20 patients (ages 30-78 years) who received MTX intramuscularly (10 mm/week). MTX was administered alone or after treatment with folic acid (5 mg tablet once daily) for 13 days. Plasma samples were collected 2 and 8 h after dose intake. MTX concentrations in plasma and ultrafiltrate samples were measured by fluorescence polarization immunoassay. A Bayesian approach was used to determine individual MTX pharmacokinetic variables to minimize the number of samples collected. RESULTS: Folic acid supplementation led to reduced plasma MTX levels 2 and 8 h after MTX administration and reduced area under the plasma MTX concentration versus time curve (AUC) (about 20%; p < 0.02). Total clearance of MTX and Vd were higher when patients were also receiving folic acid than when they were taking MTX alone (p < 0.02). The plasma protein binding of MTX remains unchanged. CONCLUSION: The lower plasma MTX concentrations in patients taking folic acid supplements could be interpreted as increased cellular uptake of MTX; the folic acid supplements would promote the sequestering of MTX intracellularly. The decrease of MTX concentrations leads to reduced AUC; it is also possible that there are reduced AUC combined with increased intracellular folate levels. These results reopen the question of whether folic acid should be used immediately in all patients when MTX is begun.

Adult↗

Assay method for the perfluorooctyl bromide (perflubron) in rat blood by gas chromatography-mass spectrometry.

This paper describes a GC-MS method (SIM mode) for the analysis of perfluorooctyl bromide (perflubron, I) in rat blood. The chromatographic separation was performed by injection in the split mode using a CP-select 624 CB capillary column. Following destruction of the emulsion by addition of ethanol, the analytical procedure involves a liquid-liquid extraction with 1,1,2-trichlorotrifluoroethane. The bis(F-butyl)ethene (II) was used as internal standard. Observed retention times were 3.22 min for I and 2.32 min for II. Two calibration curves were used; linear detection responses were obtained for concentrations ranging from 0.009 to 0.9 mg/ml and from 0.9 to 13.5 mg/ml. The extraction efficiency averaged 50% for I and 93% for II. Precision ranged from 0.7 to 14%, and accuracy was between 91 and 109%. The limit of quantification was 9 microg/ml. The method validation results indicate that the performance characteristics of the method fulfilled the requirements for assay method for use in pharmacokinetic studies.

Animals↗

Methyl-beta-cyclodextrin and doxorubicin pharmacokinetics and tissue concentrations following bolus injection of these drugs alone or together in the rabbit.

The purpose of this work was to determine the pharmacokinetics and the tissue concentrations of methyl-beta-cyclodextrin (MEBCD) and doxorubicin (DOX) in rabbits following administration of MEBCD and DOX, alone or in combination. MEBCD (200 mg/kg) and DOX (1 mg/kg) were intravenously injected to white New Zealand rabbits and blood samples were obtained over a 48-h period after administration. After this period, administration was repeated and animals were killed 1, 2 or 4 h after injection. Heart, liver and kidney were then removed. MEBCD and DOX analysis in plasma and tissues was performed using two HPLC methods with fluorimetric detection. MEBCD pharmacokinetic profile was consistent with a two-compartment model (t1/2 alpha: 30 min; t1/2 beta: 7 h). Co-administration with DOX did not modify the main pharmacokinetic parameters of MEBCD. However, C5 min, t1/2 alpha, t1/2 beta and AUCinfinity were decreased by the co-administration of DOX with MEBCD compared to DOX alone. Assays of excised tissues showed that DOX enhanced the cardiac, renal and hepatic concentrations of MEBCD. On the other hand, MEBCD did not alter the cardiac distribution of DOX, while renal and hepatic distribution profiles were modified. In this study, the pharmacokinetic parameters of MEBCD injected intravenously were determined for the first time. DOX did not enhance MEBCD pharmacokinetic profile but MEBCD reduced the distribution half-life of DOX. Tissue determination showed that MEBCD did not enhanced the cardiac accumulation of DOX, which is auspicious for further in vivo experiments using the co-administration of DOX and MEBCD.

Animals↗

High-performance liquid chromatographic method for the determination of atracurium and laudanosine in human plasma. Application to pharmacokinetics.

A high-performance liquid chromatographic method coupled with fluorimetric detection has been developed for the determination of atracurium and its major metabolite, laudanosine, in human plasma. The detection is performed at 240 nm for excitation and 320 nm for emission. Verapamil was used as the internal standard. The proposed technique, involving the direct precipitation of plasma proteins is reproducible, selective and sensitive. Linear detector responses were observed for the calibration curve standards in the range of 40 to 2000 ng/ml. Precision, expressed as C.V., was in the range 1 to 14%. The limit of quantification for both atracurium and laudanosine was 40 ng/ml. The method has been validated and stability tests under various conditions have been performed. This method has been used to determine the pharmacokinetic profile of atracurium and laudanosine in patients with acute respiratory distress syndrome.

Atracurium↗

Circadian rhythm of 5-fluorouracil population pharmacokinetics in patients with metastatic colorectal cancer.

PURPOSE: The purpose of this work was to estimate the population pharmacokinetic parameters of 5-fluorouracil (5-FU) in patients with advanced colorectal cancer using circadian change kinetics. METHODS: Eighty-five patients (32 females, 53 males) were enrolled onto this study. All patients received folinic acid (200 mg/m(2)) by intravenous infusion over 2 h followed by a 5-FU loading dose (400 mg/m(2)) and then continuous infusion (600 mg/m(2)) for 22 h. This whole regimen was repeated on day 2 and was given on a 14-day cycle. Plasma 5-FU determinations were performed by high-performance liquid chromatography with ultraviolet absorbance detection. Pharmacokinetic analyses were performed using the NONMEM computer program through the Visual-NM graphical interface. An open one-compartment pharmacokinetic model with zero-order input rate was used to describe the kinetics of 5-FU; moreover, circadian time-dependent changes in 5-FU concentrations were taken into account in the model. The circadian model was defined as the sum of two cyclic components; the amplitude of the first cyclic component (over 24 h) was about 30% of the average clearance and the amplitude of the second cyclic component (over 12 h) was about 50% of the amplitude of the first component. The acrophase (peak) times of the first and the second periodic component were 04 h 12 m and 00 h 25 m, respectively. The potential sources of variability on the population parameters (65 patients) were investigated using patient's sex, body area, age, body weight, height, liver enzymes and serum creatinine as covariables. RESULTS: Only the estimated clearance circadian changes were different for the two sexes. The population parameter estimates of mean clearance (CL(mean)) and initial volume of distribution (V), were as follows: the male subgroup showed a CL(mean) value twice larger (125 l/h) than the value observed in the female subgroup (65 l/h), and V = 21 l. A validation group of 20 additional patients was used to evaluate the predictive performances of the population parameters. The individual pharmacokinetic parameters were computed by means of a Bayesian fitting procedure. From the resulting individualized parameter values, concentrations of 5-FU in the plasma were calculated. To evaluate the performance of the Bayesian estimation, the experimental concentrations were compared with the predicted ones. CONCLUSION: In conclusion, a chronomodulated delivery schedule of 5-FU should be performed, using a perfusion rate inversely proportional to the circadian variations of clearance in order to maintain stable 5-FU plasma levels. Such a treatment schedule may result in increased effectiveness of the treatment and decreased occurrence of drug-associated side-effects. The present study develops a complete procedure to efficiently estimate 5-FU clearance in order to optimize dosage regimens in individual patients.

Aged↗

Plasma and salivary pharmacokinetics of 5-fluorouracil (5-FU) in patients with metastatic colorectal cancer receiving 5-FU bolus plus continuous infusion with high-dose folinic acid.

The comparative saliva/plasma pharmacokinetics of 5-fluorouracil (5-FU) were investigated in 21 patients with metastatic colorectal cancer receiving high-dose folinic acid (LV (leucovorin) 200 mg/m2) followed by 5-FU bolus (400 mg/m2) and continuous infusion (600, 750, 900 or 1200 mg/m2) on days 1 and 2. Quantitation of unchanged drug was assessed by a highly specific high-performance liquid chromatographic method. Large patient-to-patient variations in plasma and saliva 5-FU concentrations were observed. Saliva pharmacokinetics could be described using a bi-exponential pattern. The half-life of the rapid phase averaged 8.0 min, and was of the same order of magnitude as the 5-FU elimination half-life determined from plasma data. The half-life of the terminal part of the curve averaged 8 h; such decrease in salivary concentrations could be due to changes in salivary gland function caused by 5-FU, which results in reduced salivary flow rate. Between individual 5-FU concentrations in parotid saliva and plasma a statistically significant straight line could be fitted with a coefficient of correlation of 0.675. Moreover, the risk of developing 5-FU-related mucositis was significantly linked to 5-FU salivary exposure. Diarrhoea was the most frequent toxicity encountered during the trial.

Adult↗

Influence of the schedule of exposure on the cytotoxic effect of melphalan on human 8226 and A2780 cells.

Melphalan was investigated for antitumoral activity using two schedules of exposure (solid versus sequential exposure) in two human cancer cell lines (8226 and A2780). Sequential exposure of melphalan was more effective than solid exposure at the same total dose. The IC50 values averaged 8.2 (solid exposure) and 0.16 microgram/ml (sequential exposure) for 8226 cells (myeloma), and 7.5 (solid) and 0.53 microgram/ml (sequential) for A2780 cells (ovarian carcinoma). Intracellular melphalan accumulation, determined by high-performance liquid chromatography, showed that the area under the intracellular concentration of melphalan versus time curve (between 0 and 30 h) was significantly higher after sequential doses (9.4 micrograms/ml x h) than after solid dose (6.6 micrograms/ml x h). Moreover, intracellular/extracellular concentration ratios indicated that melphalan uptake followed a passive transport system. The increase of both duration of exposure (11 h after solid exposure versus 20 h after sequential doses) and intracellular concentrations 5-6 h after the beginning of the experiment (approximately 3 times higher after sequential doses) indicate sequential administration of melphalan could be more effective than solid exposure.

Adenocarcinoma↗

Arsenic speciation in humans and food products: a review.

Although acute intoxication has become rare, arsenic (As) is still a dangerous pollution agent for industrial workers and people living in the vicinity of emission sources. In humans, only inorganic As is toxic; organic forms present in large amounts in the environment are nontoxic. It is therefore important to be able to differentiate one group from the other using appropriate speciation methods. The authors review the present knowledge of the distribution of As in humans and food products. The three steps of the speciation methods (sample preparation, species separation, and detection) are described. For liquid samples, a clean-up step (C18 cartridge extraction, dilution, or freezing) is necessary to eliminate proteins and salts from the matrix. For solid organic samples, the first step consists of the digestion of tissues followed by solvent extraction sometimes coupled with a C18 extraction. The separation of As species is accomplished by different high-performance liquid chromatography (HPLC) methods (ion-exchange, ion-pairing, and micellar liquid chromatography). The detection methods are compatible with HPLC and are able to detect As species in the microgram-per-liter range. Inductively coupled plasma (ICP) atomic emission spectrometry is more frequently used, but suffers from interference by organic solvents in the mobile phases. Atomic absorption spectrometry methods give sensitivities of the same order. ICP-mass spectrometry has the advantage of specificity and can be 100- to 1000-fold more sensitive than previous methods.

Arsenic↗

Effects of erythropoietin administration in training athletes and possible indirect detection in doping control.

PURPOSE: This study investigated the effects of repeated subcutaneous injection of rHuEpo (50 IU x kg(-1)) in athletes and proposes a method based on the measurement in blood samples of the sTfR/serum protein ratio to determine if the observed values of this marker are related to rHuEpo abuse. METHODS: Serum erythropoietin concentrations, and hematological and biochemical parameters were evaluated, during treatment and for 25 d posttreatment in nine training athletes. Moreover, the effect of rHuEpo administrations on the maximum oxygen uptake (VO2max) and ventilatory threshold (VT) of these athletes was also studied. Threshold values for sTfr and the sTfr/serum protein ratio were determined from 233 subjects (185 athletes, 15 athletes training at moderately high altitude, and 33 subjects living at >3000 m). RESULTS: Significant changes in reticulocytes, hemoglobin (Hb) concentration, hematocrit (Hct), sTfr, and sTfr/serum proteins were observed during and after rHuEpo treatment. The maximal heart rate of 177 beats x min(-1) at the beginning of the study was significantly higher than the value of 168 beats x min(-1) after 26 d of rHuEpo administration. Compared with the values measured at baseline, the VT measured after rHuEpo administration occurred at a statistically significant high level of oxygen uptake. CONCLUSIONS: When oxygen uptake measured at the VT was expressed as a percentage of V02 max, the values obtained were also significantly higher. The increased values of Tfr and sTfr/serum proteins, respectively, above 10 microg x mL(-1) and 153, indicated the probable intake of rHuEpo.

Adult↗

Clozapine and metabolite concentrations during treatment of patients with chronic schizophrenia.

Results presented in this article are focused on the variability in pharmacokinetics. The purpose of this study was (1) to investigate intra- and interindividual variabilities of pharmacokinetic parameters of clozapine and its two main metabolites in plasma after multiple oral administration in 8 chronic schizophrenic patients (Study 1) and (2) to gain more information regarding plasma concentrations of these drugs after multiple doses in a group of 25 treatment-responsive patients (Study 2). Patients were treated with clozapine in fixed daily doses (given every 8-12 hours) between 200 and 900 mg. Plasma drug concentrations were determined by high-performance liquid chromatography. The mean volume of distribution and the total plasma clearance of clozapine, uncorrected for bioavailability, were 7 L/kg and 40.5 L/h, respectively. The terminal elimination half-lives averaged 10.5 hours for clozapine, 19.2 hours for norclozapine, and 8.6 hours for the N-oxide metabolite. Significant relationships were observed between clozapine and norclozapine (or clozapine N-oxide) plasma concentrations. Large inter- and intrapatient variations in pharmacokinetics were observed. Clozapine was generally well tolerated by the patients, with sedation, hypersialorrhea, and tiredness as the most common side effects encountered.

Adult↗