PubMed Health⌕ Search

Biomedical subjects

I L Honigberg

Publications and source records attributed to I L Honigberg.

At least 19 recordsLinked to original sources

Multivariate analysis of capillary electrophoresis separation conditions for Z-E isomers of clomiphene.

Plackett-Burman (P-B) experimental design has been used to optimize the factors affecting separation of Z and E isomers of clomiphene (zuclomiphene and enclomiphene respectively) using capillary electrophoresis. The P-B design was used to simultaneously investigate the following five factors: buffer ionic strength, buffer pH, heptakis (2,3,6-tri-o-methyl) beta-cyclodextrin (TMCD) concentration, methanol concentration and injection time, each at three levels. In addition to these, a dummy variable was added to estimate the variability of the system. Effects on resolution and analysis time were calculated. Based on the information gained from the P-B design, the following set of conditions was chosen: 100 mM phosphate buffer pH 2.3, 5 mM TMCD, 5% methanol, and 1.7 s hydrodynamic injection time. These conditions gave well-resolved peaks for zuclomiphene and enclomiphene.

Clomiphene↗

Normal phase LC-MS determination of retinoic acid degradation products.

The degradation products formed when 13-cis retinoic acid (13-cis RA) and all-trans RA were exposed to fluorescent light and air were investigated. These retinoids are known to undergo Z-E isomerization (due to the existence of four unsaturated double bonds) and oxidation when exposed to light and air. Analysis by LC was carried out on a 25 cm x 4.6 mm Zorbax Rx-SIL (5 microns) with a mobile phase (1.4 ml min-1) of heptane-THF-acetic acid (96.5:3.5:0.015) and an in-line UV (365 nm) detector. The LC eluate was coupled through a Vestec universal interface to a Finnigan 4023 mass spectrometer. EI-mass spectra were obtained at 77 eV from m/z 200 to 350 with multiplier voltage of 1200 V. Solid samples of 13-cis RA and all-trans RA exposed to light and air and also solutions of these retinoids in the mobile phase exposed to the same conditions were used for the analysis. Tentative identities of the degradation products from the mass spectra suggest the isomerization of the retinoids (Z-E isomerism) and the formation of the 5,6-epoxides of these isomers. Identities of the 5,6-epoxides were confirmed with chromatographic and mass spectral data from synthetic samples of the epoxides. Isomerization occurred more readily in solution than in the solid form and the 13-cis RA isomer oxidized more readily than the all-trans isomer.

Chromatography, Liquid↗

Separation of 13-cis and all-trans retinoic acid and their photodegradation products using capillary zone electrophoresis and micellar electrokinetic chromatography (MEC).

Two retinoic acid isomers; 13-cis retinoic acid and all-trans retinoic acid and their photodegradation products were resolved with capillary electrophoresis (CE) (UV detector, 345 nm) using three different mobile phases: method 1--an acetonitrile modified borate buffer (pH 8.5); method 2--borate buffer (pH 8.5) modified with acetonitrile and alpha-cyclodextrin; and method 3--borate buffer (pH 8.5) modified with SDS (MEC). Concentration of acetonitrile in the buffer was varied from 10 to 50% in method 1 and resolutions of 0-1.9 were obtained for the two retinoic acid isomers. Similarly in method 2, concentration of alpha-cyclodextrin in the buffer (with 10% acetonitrile) was varied from 0 to 40 mM, giving resolutions of 0-3.8. In method 3, concentration of SDS in the buffer was varied from 5 to 60 mM resulting in resolutions of 1.3-4.1. Optimum separation conditions for the three methods were applied to the separation of photodegradation products of the two retinoids after exposure to fluorescent light for 36 h. A buffer modified with 45% acetonitrile and the same buffer modified with 10 mM SDS gave incompletely resolved electropherograms with a 72 cm x 50 microns capillary (50 cm to the detector). A buffer containing 20 mM alpha-cyclodextrin 10% acetonitrile gave completely resolved peaks for each isomer. The buffer containing 10 mM SDS gave completely resolved peaks for the photodegradation products when a 122 cm x 50 microns capillary (100 cm to detector) was used.

Chromatography↗

Association of beta-agonists with corresponding beta 2- and beta 1-adrenergic pentapeptide sequences.

Synthesized beta 1- and beta 2-pentapeptide sequences corresponding to published adrenoceptor transmembrane activation site subtypes were investigated in vitro for selectivity in association for drug ligands of known selectivity. Both nuclear magnetic resonance spectroscopy and molecular mechanics demonstrated that structural differences among the corresponding pentapeptide activation-site sequences can explain agonist selectivity. Results suggest the agonists bind across the activation site loop on the second transmembrane alpha-helix by dipole/dipole interactions between a ligand and the peptide. Since electrostatic interactions within the membrane may determine the rate of intercellular ion flux, agonist association across the activation site sequence could thereby decrease electrostatic resistance to positive ion flux into the cell. Interactions between the peptides and the ligands may provide insight into the structures and mechanisms involved in association of ligands for the identical sequences on the beta-adrenoreceptors.

Adrenergic beta-Agonists↗

Nuclear magnetic resonance (NMR) spectroscopic investigation of interaction energies of ephedrine stereoisomers in noncrystalline solids and its correlation with thermodynamic data.

Equations relating the interaction energies of each of the binary mixtures of ephedrine from linear combinations of the energies of the individual isomers are presented. The interaction energies in the noncrystalline solid mixtures measured from NMR chemical shift data using cross-polarization magic angle spinning nuclear magnetic resonance 13C cross-polarization magic angle spinning nuclear magnetic resonance (13CP/MAS NMR) spectroscopy correlate strongly with interaction energy from thermodynamic data. The summation of changes in relative frequencies for structurally equivalent carbons is used as a measure of differences in electron shielding on mixing. The relative direction of polarization of individual stereoisomers is found to affect association in noncrystalline binary mixtures of solids. NMR chemical shift data of solids may be useful in confirming spectroscopically the interactions of stereoisomers observed thermodynamically.

Carbon Isotopes↗

Chromatographic separation and photoelectrochemical detection of sodium nitroprusside and its degradative and metabolic products.

Ion-pair chromatography has been used for the separation of nitroprusside ion and its photochemical hydrolytic and metabolic products. Organic modifier and pH were adjusted for maximum separation of the ions. Methanol was selected as the organic modifier in a pH range 5-8 and tetrabutylammonium perchlorate was used as the ion-pairing reagent. Ions were detected with a photoelectrochemical detector as described by Krull. A modification of this procedure was used to detect nitroprusside ion in spiked serum samples.

Chromatography↗

Stable-isotope methodology in the bioavailability study of 17 alpha-methyltestosterone using gas chromatography-mass spectrometry.

The application of a stable-isotope coadministration technique for estimating the relative bioavailability of 17 alpha-methyltestosterone is described. Eight healthy male subjects were administered orally a single 10-mg 17 alpha-methyltestosterone tablet together with a 10-mg 17 alpha-methyltestosterone-d3 solution. The serum concentrations of 17 alpha-methyltestosterone and 17 alpha-methyltestosterone-d3 were determined by gas chromatography-mass spectrometry with selected ion monitoring using 17 alpha-methyltestosterone-d6 as an internal standard. The extent of absorption from the tablet formulation was comparable to that from the oral solution. The stable-isotope methodology was compared with the conventional cross-over method for evaluating the bioavailability of 17 alpha-methyltestosterone.

Absorption↗

An in vivo single- and multiple-dose study of several marketed brands of conventional and controlled-release theophylline.

In a single-dose study, 18 healthy adult males consumed each of six dosage forms of theophylline. A conventional-release tablet, a syrup, and four competing brands of controlled-release theophylline were studied. Serial serum samples were obtained and analyzed via high pressure liquid chromatography (HPLC). After achieving steady state, 15 healthy adult males consumed each of five dosage forms of theophylline in a multiple-dose study. Serial blood samples were obtained between 0 and 72 hours and subjected to analysis with HPLC. The results indicated that the controlled-release products were not bioequivalent, although they achieved longer time-to-peak values than did the immediate-release syrup and the conventional-release tablet. A single sustained-release product was uniquely different on most pharmacokinetic parameters when compared with the remaining three controlled-release products. In general, the dosage form variation exceeded the individual subject variation on the single-dose study, but the opposite was true for the multiple-dose study.

Adult↗

Pharmacokinetics and bioavailability of hydromorphone following intravenous and oral administration to human subjects.

In a relatively small pilot study, the half-life of elimination of hydromorphone in six subjects was 2.64 +/- 0.88 hours and the drug had a high volume of distribution, 1.22 l./kg. In addition, the drug was rapidly but incompletely absorbed after oral administration. An equation to predict the plasma concentration of hydromorphone on oral administration was developed from the data of these six subjects.

Administration, Oral↗

Plasma levels of clobazam after 10-, 20-, and 40-mg tablet doses in healthy subjects.

It is evident that substantial intersubject and intrasubject varition in the bioavailability of clobazam exists following ingestion of 10, 20 and 40 mg doses in these 12 volunteers. Peak concentrations and area under the plasma level-time curve were directly proportional to the dose of clobazam and the mean plasma half-life of clobazam was about 18 hours regardless of dose administered. The t1/2 value was less than that previously reported, as the current results allow differentiation of parent drug from metabolites. This 18 hr t1/2 compares favorably with the half-life of other benzodiazepines.

Adolescent↗

Radioimmunoassay of hydromorphone and hydrocodone in human plasma.

A radioimmunoassay for hydromorphone in human plasma was developed using a commercially available morphine-6-antiserum and tritiated dihydromorphine. In the assay, free and bound drug are separated using dextran-coated charcoal. The method quantitates hydromorphone in the 2.5-20-ng/ml range with minimum sensitivity at 1.0 ng/ml. Within-run precision for hydromorphone as shown by the standard error of the estimate of the linear regression equation is +/- 1.01 ng/ml. Between-run precision data for hydromorphone at the 2,5-, 10-, and 20-ng/ml levels gave percent relative standard deviations of 22.35, 10.96, and 8.55%, respectively. A plasma concentration-time curve from a subject administered a single oral dose of hydromorphone demonstrates the usefulness of the assay in monitoring drug levels in a bioavailability study. The method also is applicable to the analysis of hydrocodone in human plasma in the 10-80-ng/ml range with minimum sensitivity at 3.0 ng/ml. Within-run precision for hydrocodone as shown by the standard error of the estimate of the linear regression equation is +/- 1.06 ng/ml. Between-run precision data at the 15-, 30, and 60-ng/ml levels gave percent relative standard deviations of 12.48, 7.67, and 6.03%, respectively.

Codeine↗

Liquid chromatography in pharmaceutical analysis XI: determination of muscle relaxant--analgesic mixture using reversed-phase and ion-pair techniques.

High pressure liquid chromatography using reversed-phase and/or ion-pair techniques was used to optimize resolution of aspirin-containing muscle relaxant mixtures as well as other therapeutic agents commonly found in muscle relaxant-analgesic mixtures. The compounds were chromatographed on an octadecylsilane column using methanol--water solvent systems, some of which contained tetrabutylammonium cation as counterion. Mixtures of methocarbamol--aspirin and chlorzoxazone--acetaminophen were selected to demonstrate separation and quantification. The methocarbamol--aspirin mixture was chromatographed with methanol--water (40:60, pH 6.8) containing 0.01 M tetrabutylammonium cation at a flow rate of 2.0 ml/min. The chlorzoxazone--acetaminophen mixture was chromatographed with methanol--water (50:50) at a 2.0 ml/min flow rate. The separation and quantitation of each mixture were achieved in approximately 8 min with accuracy in the 2--3% range.

Acetaminophen↗

Liquid chromatography in pharmaceutical analysis X: Determination of chlorzoxazone and hydroxy metabolite in plasma.

A method for the high-pressure liquid chromatographic determination of chlorzoxazone and its hydroxy metabolite in human plasma samples is presented. The separation of the compounds is achieved on an octadecylsilane column with a mobile phase of absolute methanol-distilled water (40:60) at a flow rate of 2.0 ml/min (3100 psig). The chromatographic separation is achieved within 10 min. The overall analysis time is about 45 min, which includes extraction of the drug and metabolite from plasma followed by high-pressure liquid chromatographic separation and quantification. The accuracy of the procedure is in the 1-5% range.

Benzoxazoles↗

Fluorometric determination of clobazam, a 1,5-benzodiazepine, in human plasma.

A fluorometric procedure for clobazam, a 1,5-benzodiazepine, based on a fluorophore formed upon irradiation of the drug using short wavelength UV light (254 nm) for 35 min is presented. Fluorescence is linear over a 100-6400-ng/ml range using excitation and emission wavelengths of 350 and 400 nm, respectively. Application of the method to the determination of clobazam in spiked human plasma samples revealed that the drug can be determined at nanogram per milliliter levels with an accuracy of 1-5%. The procedure is specific for clobazam in samples containing its major plasma metabolite, N-desmethylclobazam, and also in samples containing 1,4-benzodiazepines and other selected drugs. A plasma level-time profile after oral administration of a single 40-mg dose of clobazam to a healthy adult male is also illustrated.

Adult↗