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A Cometti

Publications and source records attributed to A Cometti.

7 recordsLinked to original sources

Pharmacokinetics of individual components of teicoplanin in man.

Teicoplanin is a new antibiotic consisting of closely related glycopeptides. Following an iv bolus of 400 mg teicoplanin, the pharmacokinetics of the individual components A3-1, A2-1, A2-2, A2-3, A2-4, and A2-5 was studied in five healthy volunteers by HPLC. For each subject, plasma and urine data of the individual components were simultaneously fitted by a triexponential disposition model. No significant differences were observed between the components of the A2 group in the initial volume of distribution, 0.05-0.06 L/kg, and the half-life of the second disposition phase, 2.5-3.0 hr. Significant differences were found in the volume of distribution at steady state (Vss 0.42-0.92 L/kg), the half-lives of the first (0.18-0.26 hr) and the third (48.1-66.8 hr) disposition phases, the total clearance (CL 5.4-19.3 ml/hr per kg), the renal clearance (CLR 2.8-16.1 ml/hr per kg), and the percentage of the administered dose excreted in urine (Ae 53-85%). A highly significant correlation was found between the lipophilicity of the individual components increasing from A2-1 to A2-5, and the values of the kinetic parameters. As the lipophilicity increases the fraction unbound in plasma, Vss, CL, CLR, and Ae decrease, whereas the unbound steady state volume of distribution and the unbound nonrenal clearance increase. A modest degree of accumulation of each teicoplanin component in plasma is predicted to occur at steady state following repeated administration of teicoplanin given daily, with accumulation slightly higher for the more lipophilic components A2-4 and A2-5.

Adult↗

Isolation and structure determination of the main related substances of teicoplanin, a glycopeptide antibiotic.

Teicoplanin is a complex formed by five closely related glycopeptides and by a small amount of a hydrolysis product. Minor quantities of related substances are also present. Two of them (named RS-1 and RS-2) were isolated and purified starting from the tailing fractions of a teicoplanin batch. Preparative reversed-phase liquid chromatography on large low-pressure and medium high-pressure scales, concentration, desalting, and freeze-drying steps were applied. 300 mg of RS-1 and 900 mg of RS-2 were obtained in a purity grade (about 90%) sufficient for structural investigation. Starting from considerations on the HPLC retentivity and on biosynthesis, the structures were assigned on the basis of 1H-N.M.R. spectra and homonuclear CO-SY 2D experiments, FAB-MS spectrometry, and GC-MS of the esters of the fatty acids obtained by hydrolysis. RS-1 and RS-2 are teicoplanins having 10-methyl-undecanoic acid and n-dodecanoic acid, respectively as fatty acid chains. No major difference in the in vitro activity of these teicoplanins emerged in comparison with teicoplanin complex.

Chromatography, Affinity↗

Determination of teicoplanin in human plasma and urine by affinity and reversed-phase high-performance liquid chromatography.

A sensitive, highly selective and simple high-performance liquid chromatographic method for the determination of teicoplanin, a novel glycopeptide antibiotic, composed of six components, in human plasma and urine is described. After an isolation step by affinity chromatography, the antibiotic substances were chromatographed on a Nucleosil C18 column with phosphate buffer-acetonitrile according to a gradient profile. All the components were detected by their UV absorption at 240 nm. The concentration of teicoplanin was determined by using the external standard procedure. This method was applied to the sum of the six major components as well as to each of them separately. The linearity of the method was checked between 0.5 and 50 micrograms/ml for plasma and between 2 and 50 micrograms/ml for urine. The limit of detection was 0.1 microgram/ml for both biological fluids. The coefficients of variation of the between-day assays did not exceed 8.6 and 8.9% in plasma and urine, respectively. The application of the method to a pharmacokinetic study of teicoplanin after a single intravenous therapeutic dose in a patient is reported. This rapid technique also appears to be suitable for drug monitoring.

Anti-Bacterial Agents↗