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Biomedical subjects

H Albin

Publications and source records attributed to H Albin.

At least 55 records · Page 3Linked to original sources

[Does glycemic level influence the pharmacokinetics of an antibiotic (cefoperazone)?].

Hyperglycemia may modify pharmacokinetics of some antibiotics as shown in the literature. We studied the influence of glycaemic levels on pharmacokinetics properties of cefoperazone in 12 type 1 insulin dependent diabetic patients. Hyperglycaemia was obtained by a reduction of one quarter of their usual insulin dosage and normoglycaemia by an artificial pancreas (Biostator GCIIS). Cefoperazone had a high protein affinity and a high biliary elimination. Pharmacokinetic study was performed during a 8 hour period following one gram intravenous bolus. We did not found any influence of glycaemic level (normoglycaemia or hyperglycaemia) on the pharmacokinetic parameters of cefoperazone.

Blood Glucose↗

[Pharmacokinetics of chlormezanone in healthy volunteers].

The kinetics of chlormezanone were determined after oral administration of single (400 mg) and multiple doses (400 mg/day during 8 days) in eight young healthy male subjects. Plasma levels determination had been carried out by HPLC. After single dose administration, Cmax concentrations 4.62 +/- 0.75 mg/l were obtained (Tmax) 2.18 +/- 1.49 h after drug intake. Area under plasma concentrations time curve was 224.93 +/- 27.79 mg.h/l and terminal half-life 40.50 +/- 4.19 h. On chronic regimen, chlormezanone accumulates in the body: trough plasma concentrations are significantly increased from Day 7 (2.97 +/- 0.45 mg/l) to Day 9 (5.41 +/- 0.90 mg/l) and reach the steady state faster than it can be expected from half-life (40 hours) and dosing interval (24 hours). Elimination is faster (T1/2 beta = 37.14 +/- 3.18 h) after chronic regimen. Area under curve during dosing interval at steady state (164.19 +/- 21.70 mg.h/l) is significantly lower than the area under curve between zero and infinity in the single dose sequence (224.93 +/- 27.79 mg.h/l). These results agree with probable induction effect of chlormezanone on its own metabolism.

Adult↗

[Delayed-action theophylline versus placebo on the ventilatory function of stable asthmatic patients. Study in relation to circadian rhythm].

The aim of this study was to measure the results of a long-acting theophylline (Planphylline) on the flow rates of stable asthmatic patients while taking into account the spontaneous circadian variations of the ventilatory function. 27 patients were involved in this randomized, double-blind, cross-over trial; they received 10 mg/kg/day in two doses at 8.30 a.m. and 8.30 p.m or the placebo. The product was administered over two 4-day periods separated by a 3-day wash-out period. The theophylline concentration and bronchial flows (FEV1; MMEFR 25-75) were measured at 8 a.m., 10.30 a.m., noon, and 3 p.m. on days 1 and 4 of each period; 11 patients measured their hourly PEFR from 8 a.m to 10 p.m those same days. The results can be analysed for 19 patients, including the 11 who measured their PEFR. The first day of treatment (D1), the theophylline concentration rose regularly without going above 10 micrograms/ml. On the fourth day of treatment (D4), the mean maximum concentration was above 10 micrograms/ml and the 8 a.m rate was superior to 8 micrograms/ml for 14 patients out of 19. The bronchodilating effect of Planphylline is significant for all bronchial flow rates (FEV1 less than 0.01; MMEFR 25-75 less than 0.05; PEFR less than 0.01, n = 11). On D1, the FEV1 becomes normal. On D4, the MMEFR 25-75 is still only partially improved, in spite of the theophylline concentration obtained. Because of the spontaneous diurnal improvement of bronchial rates, only the 8 a.m, 10.30 a.m. and 3 p.m. FEV1 obtained with Planphylline are statistically different from those obtained with placebo.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗