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Biomedical subjects

G Olive

Publications and source records attributed to G Olive.

At least 55 records · Page 3Linked to original sources

Pharmacokinetics of diphemanil methylsulphate in healthy subjects.

The pharmacokinetic parameters of oral diphemanil methylsulphate have been evaluated in six healthy male volunteers. Absorption of the drug was slow (tmax = 2 to 4 h), the mean half-life was 8.35 h, and the amount of the drug recovered in urine within 48 h ranged from 0.6 to 7.4% of the administered dose. The results suggest low bioavailability, assuming that the drug is poorly metabolized.

Administration, Oral↗

Passage of S(+) and R(-) gamma-vinyl-GABA across the human isolated perfused placenta.

1. The maternal to foetal transfers of S(+)- and R(-)-gamma-vinyl-GABA (VGB) across the human isolated perfused placenta were low and comparable with those of acidic alpha-amino acids. 2. The placental uptake of the active S(+)-isomer from the maternal circulation exceeded that of the R(-)-isomer and this was reflected by a corresponding difference in placental tissue concentrations. 3. During perfusion with recirculation of the foetal medium, the two enantiomers were present at a similar concentration and did not concentrate in foetal perfusate, indicating that the excess amount of S(+)-VGB cleared from the maternal circulation was not accessible to the foetal perfusate. Furthermore, stable concentrations of both isomers in the foetal perfusate suggested a lack of placental metabolism. 4. Possible explanations of these findings include the operation of a stereoselective sodium-dependent-GABA placental uptake system on the maternal side, similar to that observed in neuronal tissue, or stereoselective binding to a placental GABA transaminase.

Aminocaproates↗

Could saliva stand for plasma in theophylline monitoring in asthmatic children? Still a controversial problem.

Theophylline determination in saliva was proposed several years ago as a convenient and non-invasive alternative to monitoring plasma in children and adults. Published data demonstrated that theophylline saliva concentration linearly correlates plasma concentration. However, the variability found in interindividual serum/saliva ratios and the wide scattering among the data points precluded the clinical use of saliva for theophylline monitoring. The purpose of this study was to compare different standardized methods for obtaining stimulated saliva intending to reduce the variability in plasma/saliva ratios and to determine the most reliable one. A group of 150 ambulatory chronic asthmatic 4.5 to 20.83 (10 +/- 3.7; M +/- SD) year-old patients receiving theophylline 6.85 +/- 1.88 mg/kg every 12 h as slow release preparations for 4 to 100 days was studied. One ml venous blood and salivary specimens were simultaneously collected 5.15 +/- 0.36 h after the morning maintenance dose. In a subgroup of 75 patients, saliva was collected using first a new device called salivette, immediately followed by the collection of an expectorated sample 30 s after citric acid crystals stimulation. In the other patients saliva was collected using citric acid containing salivette. Theophylline concentration was determined using HPLC. For all types of saliva collection, salivary and plasma theophylline concentrations correlated significantly. However whichever method was used, based on the -2 to +2 SD interval, a large range of plasma theophylline was predicted from a single salivary theophylline concentration. Despite a further standardization of the sampling of saliva, saliva theophylline could not accurately predict plasma concentration.

Adult↗

Vigabatrin. Clinical pharmacokinetics.

Vigabatrin is a structural analogue of the inhibitory neurotransmitter gamma-aminobutyric acid (GABA). It is supplied as a racemic mixture, with the S(+) enantiomer possessing pharmacological activity. [R,S]-Vigabatrin plasma concentrations can be estimated using high-performance liquid chromatographic methods. Only gas chromatography-mass spectrometry methods allow quantification of the S(+) and R(-) enantiomers. Vigabatrin was rapidly absorbed reaching peak concentrations within 1 to 2h. Area under plasma concentration-time curves indicated dose-linear pharmacokinetics. There was no effect of food on the absorption of vigabatrin. The absorption characteristics of the enantiomers were similar to those of the [R,S]-vigabatrin. No chiral inversion was detected after administration of the pure S(+) enantiomer. Vigabatrin is not protein bound. The apparent volume of distribution of [R,S]-vigabatrin was approximately 0.8 L/kg. Despite the lack of protein binding, cerebrospinal concentrations of the [R,S]-vigabatrin were only 10% of the plasma concentration 6h after a single oral dose. The half-life of [R,S]-vigabatrin was between 5.3 and 7.4h, the half-life of the enantiomers were 7.5 and 8.1h for the S(+) and the R(-) forms, respectively. The major route of elimination was renal excretion; urinary recovery of the [R,S]-vigabatrin was close to 70%. Pharmacokinetic studies in epileptic children did not show any significant effect of maturation on the disposition of the S(+) enantiomer: the half-life and the renal clearance were similar to adult values. Data suggest a lower bioavailability in children. In adults with epilepsy, the half-life of the [R,S]-vigabatrin ranged from 4.2 and 5.6h, similar to that measured in healthy adults. In elderly nonepileptic volunteers the pharmacokinetics of the enantiomers of vigabatrin showed delayed absorption, a major increase in peak concentration and a prolonged half-life. These changes were attributed to decreased renal clearance of vigabatrin. A nonlinear relationship between renal clearance and creatinine clearance was suggested. Vigabatrin caused a 20% fall in plasma phenytoin concentrations, the mechanism of which has not been elucidated. There were no other interactions with most concurrently administered anticonvulsants. The usual dosage of vigabatrin as add-on treatment in adults is 2 to 4g daily. Higher dosages up to 80 mg/kg daily were required in children. A dosage adjustment was recommended in any patient with decreased renal clearance. Although anticonvulsant effects were clearly related to dosage, monitoring of plasma concentrations of vigabatrin as a guide to dosage is unlikely to be of as much value as with other antiepileptic drugs. The action of the drug long outlasts its presence in plasma.

Administration, Oral↗

[Pharmacokinetics and pharmacodynamics of a new 80 mg oral delayed-action isosorbide dinitrate preparation].

A new galenic form of isosorbide dinitrate (consisting of a hydrophilic matrix which allows very slow release of the active drug) was studied from the pharmacokinetic and pharmacodynamic view points in 11 patients with stable angina pectoris under betablocker therapy. After testing their sensitivity to nitrates with a sublingual trinitrin test causing a fall greater than or equal to 20 mmHg in systolic and greater than or equal to 10 mmHg in diastolic blood pressure, the patients were given a single tablet of Risordan LP 80 daily for 7 days. The equilibrium plasma concentrations of isosorbide dinitrate and its mononitrate metabolites (2-isosorbide mononitrate and 5-isosorbide mononitrate) over 24 hours were measured on the 6th treatment day. A method of measuring these nitrate derivatives has been developed and validated. The concentrations measured enabled the study of the pharmacokinetics of this new form, showing an average minimal concentration of 5-isosorbide mononitrate (principal metabolite) of 85 +/- 41 micrograms/l and an amplitude of fluctuation over the 24 hours period of 296 +/- 102 micrograms/l. From the pharmacodynamic point of view, the evaluation of the sensitivity to a single dose of 0.75 mg of trinitrin 24 hours after the first dose of Risordan LP 80, just before the second dose and 24 hours after the seventh dose, showed a significant difference (average decrease of 40 +/- 19 mmHg in systolic blood pressure) with respect to the values observed during the selection phase.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Nycthemeral changes in plasma concentrations of active nitrate derivatives. Comparison of a single dose of LP 60mg isosobide dinitrate and LP 20mg isosobide dinitrate administered 3 times daily].

The daily plasma level fluctuation is critical in the prevention of tolerance during long-term nitrate therapy. Two dosage regimens of sustained-release isosorbide dinitrate (ISDN) (60 mg tablet once daily vs 20 mg three times daily) were compared at steady state. Comparative bioavailability data of the two forms after single administration in 12 healthy subjects enabled calculation of the steady state blood levels of ISDN, IS-2MN and IS-5MN by simultation of the two regimens. Both achieved the required trough concentration to restore sensitivity to nitrates (100 micrograms/l for IS-5MN), but greater plasma level increases were observed (greater than 200 micrograms/l for IS-5MN), with 60 mg once daily. A parallel, randomised, double-blind, double placebo study involved 126 patients with stable angina, concomitantly receiving beta-blockers and/or calcium inhibitors. Ergometric parameters 4 hours after drug administration and clinical symptoms were compared at inclusion under 20 mg three times daily, and after a 4 week treatment with either dosage. Compared with 20 mg three times daily, the once daily regimen: improved equally the symptoms and ergometric parameters of stable angina in combination therapy; had a similar side-effect profile; enhanced the sensitivity to nitrate 4 hours after administration with regard to the hypotensive effect; the latter may clinically reflect the pharmacokinetic differences between the two regimens. Sixty milligrammes sustained release ISDN once daily may thus avoid nitrate tolerance and improve patient compliance.

Circadian Rhythm↗

Pharmacokinetics of midazolam in children: comparative study of intranasal and intravenous administration.

Twelve children 1-5 y old were randomly assigned to receive midazolam 0.2 mg.kg-1 either by the intravenous (IV) or intranasal (IN) routes. After IN administration the rapid onset of absorption was observed (tmax 12 min). After both routes of administration the half-life was similar (2.2 h IN and 2.4 h IV). After IN administration the apparent plasma clearance and volume of distribution were about twice as high as after IV administration. The results are consistent with an estimated mean bioavailability of 55%.

Administration, Intranasal↗

Pharmacokinetics of tiaprofenic acid in children after a single oral dose.

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 = 2.12 h, Cmax = 8.78 mg.l-1, AUC(0----8 h) 33.9 mg.h.l-1, AUC = 39.3 mg.h.l-1, t1/2 = 2.35 h, Vt = 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.

Administration, Oral↗

Caffeine acetylator phenotyping during maturation in infants.

Caffeine acetylator phenotype was studied during maturation in 54 8- to 447-d-old children hospitalized for minor disease (group A) and in five 3- to 630-d-old children with Pierre Robin syndrome (group B). In group A, the children received 2.5 mg/kg caffeine orally once between birth and 15 mo. Group B patients were chronically treated with caffeine (2.3 to 15.8 mg/kg/d) for prevention of apneas, and the acetylator phenotype was serially determined. Phenotyping was performed on a spot urine sample collected 2-6 h after drug administration. Caffeine metabolites [5-acetylamino-6-formylamino-3-methyl uracil (AFMU), 1-methylxanthine, 1-methyluric acid, 1,7-methyluric acid, and 1,7-methylxanthine] were measured using HPLC. Acetylator phenotype was determined on the basis of AFMU/1-methylxanthine (ratio 1) and AFMU/AFMU + 1,7-methyluric acid + 1-methylxanthine + 1,7- methylxanthine + 1,7-methyluric acid (ratio 2) molar ratios. In group A, all children were slow acetylators before 83 d of age (ratio 1 less than 0.4; ratio 2 less than 0.08), whereas older children included slow and fast acetylators. The acetylation molar ratios differed significantly between age groups and increased with age. The cumulative percentage of fast acetylators increased with age but the plateau was not yet reached at 15 mo. In three children, the phenotyping was repeated after 15 mo: the second determination was consistent with the first one. In group B, all children appeared as slow acetylators on the first phenotyping. Four of them appeared subsequently as fast acetylators; one remained a slow acetylator until 11 mo.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylation↗

A simple non-invasive procedure for the investigation of cytochrome P-450 IIIA dependent enzymes in humans.

Urinary 6 beta-hydroxycortisol (6 beta OHF) is a specific marker of the induction of the cytochrome P-450 IIIA. Often, the production of 6 beta OHF is expressed from 24-h urine collection as the ratio 6 beta OHF/17-hydroxycorticosteroids or even better 6 beta OHF/free cortisol in order to adjust for minor day to day variation in adrenal cortisol production. A 24-h urine collection is a non-invasive method applicable to clinical studies in adult man, but more difficult to realize in newborn and infants. Therefore, we have tested the validity of a single urine sampling for the determination of the 6 beta OHF/free cortisol ratio as a clinical test to estimate cytochrome P-450 IIIA enzyme activity. Urinary 6 beta OHF and free cortisol have been measured in 19 healthy volunteers by high performance liquid chromatography methods using the same extraction procedure. A good correlation was found between 6 beta OHF/free cortisol ratio in morning urine samples and in 24h-collections (r = 0.899). Thus, a morning spot urine sampling is a simple procedure that may be helpful for investigations on cytochrome P-450 IIIA enzyme activity in humans, particularly in newborn and in children.

Adult↗

[Transcutaneous transport of trinitrin in children after application of nitroglycerin patches].

Plasma levels of nitroglycerin were measured 13 to 24 hours after the application of nitroglycerin stamps in 7 children aged from 1 month to 7 years and suffering from heart failure. The plasma levels varied considerably from one patient to another, confirming that the bioavailability of transdermal nitroglycerin is extremely variable in children. Only 3 patients had a nitraemia higher than 1 ng/ml, a figure compatible with a haemodynamic effect of the drug. No side-effect associated with the nitroglycerin stamps was observed. The dosage we use (a quarter of a stamp for 5 kg bodyweight) seems to be adequate at the beginning of treatment, to be progressively increased according to the way the drug is tolerated.

Administration, Cutaneous↗

Pharmacokinetics of oral cyclosporin A in diabetic children and adolescents.

Cyclosporin A (CsA) pharmacokinetics was studied in 19 diabetic children (mean age: 10.6 y). They were divided into prepubertal (I) and pubertal (II) groups according to plasma oestradiol or testosterone concentrations. The kinetic study was performed after a 72 h wash out period and a single oral dose of 7.5 mg/kg CsA. CsA in blood was measured by HPLC. The kinetic parameters: Cmax, tmax, t 1/2, AUC, CL/f, Vz/f and tss were calculated. No significant difference was found between the two groups. A significant negative correlation was found between Vz and both total cholesterol (r = -0.46), VLDL + LDL - cholesterol (r = -0.49) and VLDL + LDL - phospholipids (r = -0.58). CsA kinetics at steady-state were simulated by superimposition of single dose kinetics derived from each single dose. Measured steady-state blood concentrations were correlated (r = 0.80) with the values predicted by the simulation. The results suggest that CsA adjustment dosage of the CsA may be performed after a single oral dose using blood levels measured by HPLC. This procedure requires validation in further studies.

Administration, Oral↗

Intravenous lidocaine in the treatment of convulsions in the neonatal period: monitoring plasma levels.

Thirteen newborn infants (five premature, eight full term) with severe seizures and not responding to phenobarbital and diazepam received a lidocaine (LD) infusion. The schedule was 4 mg/kg/h on the 1st day, 3 mg/kg/h on the 2nd day, 2 mg/kg/h on the 3rd day, and 1 mg/kg/h on the 4th day. The LD plasma levels were measured every 24 h just before decreasing the dose. The control of seizures was achieved in 11 of 13 patients, with plasma LD concentration ranging from 2.8 to 10.5 mg/L. The LD concentration was linearly correlated with the dose in each group. In the premature group, LD clearance was always smaller than in the full-term group. Although no side effects were observed on heart rate and blood pressure, it is suggested that the dose of LD be adjusted to maintain the LD concentrations between 3-6 mg/L.

Diazepam↗

Moclobemide excretion in human breast milk.

1. Six lactating white women, aged 24-36 years, received a single oral dose of 300 mg moclobemide, between 09.00 h and 11.00 h, 3 to 5 days after the delivery of a full term neonate. 2. Complete milk collections were obtained before, 3, 6, 9, 12 and 24 h after drug administration by means of a breast pump. Venous blood samples were drawn before, and 0.5, 1, 3, 4.5, 6, 9, 12, 24 h post-dosing. 3. Moclobemide, and its major metabolite (Ro 12-8095) were measured in milk and plasma samples using h.p.l.c. The active metabolite (Ro 12-5637) could only be detected in plasma. 4. Moclobemide and its metabolites were not detectable in 24 h plasma samples. Cmax, tmax and t1/2 for moclobemide were (mean +/- s.d.) 2.70 +/- 1.24 mg l-1, 2.03 +/- 1.19 h and 2.26 +/- 0.26 h, respectively. 5. The concentrations of moclobemide and Ro 12-8095 in milk were highest at 3 h after drug administration and the drug and metabolite were not detectable after 12 h. Ro 12-5637 was not detected in any milk sample. The percentages of the dose excreted as moclobemide and Ro 12-8095 were (mean +/- s.d.) 0.057 +/- 0.020% and 0.031 +/- 0.011%, respectively. An average 3.5 kg breast-fed neonate would therefore be exposed to only a 0.05 mg kg-1 moclobemide dose (approximately 1% of the maternal dose on the mg kg-1 basis). The low amount of moclobemide excreted into breast milk is unlikely to be hazardous to suckling infants.

Adult↗

Pharmacokinetics of the individual enantiomers of vigabatrin (gamma-vinyl GABA) in epileptic children.

1. The pharmacokinetics of the enantiomers of vigabatrin were investigated after oral administration of a single 50 mg kg-1 dose of the racemate to two groups of six epileptic children (I: 5 months-2 years, II: 4-14 years). 2. The mean (+/- s.d.) values of maximum plasma concentration and area under the plasma concentration-time curve of the R(-) enantiomer were significantly higher than those of S(+) vigabatrin in both groups: R(-) Cmax: 21 +/- 6.6 (I)-41.3 +/- 13.9 (II) vs S(+) Cmax: 13.9 +/- 4.5 (I)-23.8 +/- 12.2 (II) mg l-1; R(-) AUC: 106 +/- 28.5 (I)-147 +/- 34 (II) vs S(+) AUC: 90.9 +/- 27.9 (I)-117 +/- 26 (II) mg l-1 h. In group I, the half-life of the R(-) isomer was significantly shorter than that of the S(+) isomer; in group II, the half-lives were comparable. 3. For the R(-) enantiomer the area under the curve, and the elimination half-life increased linearly with age. 4. During chronic administration (50 mg kg-1 vigabatrin racemate twice a day for 4 days), the morning trough plasma drug concentrations did not increase.

Adolescent↗

Effect of hypophysectomy on caffeine elimination in rats.

Two groups of 8-week-old Sprague-Dawley male rats were used: 8 hypophysectomized (H[-]), operated on day 0, treated by daily sc tetracosactid (ACTHs: 10 micrograms), and thyroxine (T4:5 micrograms/100 g); 7 sham-operated, treated by sc saline solution. ACTHs, T4, saline solution were administered on days 7-16. The animals received po caffeine (CAF) 4 mg/kg as citrate salt on day 15. Ten blood samples were drawn from the tail. Plasma CAF concentrations were determined by HPLC. CAF apparent clearance and apparent volume of distribution were lower in H(-) rats than in controls: 0.281 +/- 0.072 vs 0.455 +/- 0.165 l/kg/h (-38%; P less than 0.05) and 0.520 +/- 0.239 vs 1.28 +/- 0.266 l/kg (-59%; P less than 0.01) respectively. CAF half-life was lower in H(-) rats than in controls: 1.33 +/- 0.621 vs 2.12 +/- 0.676 h (-37%; P less than 0.01). CAF is a drug with a low hepatic extraction ratio and low plasma protein binding. CAF clearance is therefore primarily dependent on intrinsic clearance, which depends on the activity of the enzymes involved in CAF metabolism. These data suggest that hepatic CAF metabolism is reduced in H(-) rats treated by SC ACTHs and T4. The decrease in CAF apparent volume of distribution is probably related to dehydration, as suggested by increase in urine flow and hematocrit. The CAF half-life was probably low because the volume of distribution was proportionally more decreased than the clearance. Our results suggest that the pituitary gland plays a role in the regulation of hepatic CAF metabolizing enzymes.

Adrenocorticotropic Hormone↗

Nitrofurantoin excretion in human milk.

Six lactating white healthy women (26-36 years old, weighing 45-58 kg) were treated with 50 mg nitrofurantoin tablets, a urinary antiseptic. They received either 50 mg (group I; n = 3) or 100 mg (group II; n = 3) 3 times a day (09.00, 16.00, 19.00 h) for 24 h, 2-5 days after the delivery of a full-term neonate. The study was performed on the 4th dose at 09.00 h just before breakfast. Milk samples were collected before, 3 and 6 h after the nitrofurantoin administration with an Egnell SMB breast pump. The complete milk samples were collected from each breast, and pooled. 5 ml venous blood samples were drawn before, 1, 2, 3 and 6 h after nitrofurantoin administration. Plasma and milk nitrofurantoin concentrations were measured by HPLC. Apparent elimination half-life and apparent plasma clearance were the same in both groups, 0.8 +/- 0.09 h and 27.6 +/- 5.57 l/h, respectively. Nitrofurantoin was not detectable in the milk just before the 4th administration. The amount excreted in the milk within 6 h after nitrofurantoin administration was 22-57 micrograms (I) and 61-284 micrograms (II) which represents 0.05-0.11% (I) and 0.06-0.28 (II) of the nitrofurantoin dose. The nitrofurantoin concentration ratio of the breast milk to the plasma collected at 3 h was 2.2 +/- 1.2 (I) and 2.3 +/- 1.6 (II). These results show that nitrofurantoin excretion in human milk is low: below 0.12 (I) and 0.29% (II). It suggested that breast-fed newborn infants from mothers treated with nitrofurantoin would be exposed to small amounts of drug.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗