A gas chromatographic/mass spectrometric procedure has been developed for the quantitation in human plasma of the enantiomers of rimantadine and its three hydroxylated metabolites. The assay utilized derivatization of all analytes with the optically active reagent S-alpha-methyl-alpha-methoxy(pentafluorophenyl)acetic acid, selective ion monitoring, methane negative ion chemical ionization mass spectrometry and stable isotope dilution techniques. This method has been used to measure plasma concentrations of the enantiomers of rimantadine, m-hydroxyrimantadine and p-hydroxyrimantadine (equatorial and axial epimers) in the ranges 2.5-250, 2.5-50, 1.25-62.5 and 1.25-62.5 ng/mL, respectively, in six subjects given a single 200 mg dose of racemic rimantadine. Although there are no significant differences in the concentration-time profiles of R- and S-rimantadine, large stereospecific differences in the disposition of their metabolites are observed.
A gas chromatographic/mass spectrometric procedure has been developed for the quantification of a diltiazem analog, naltiazem, in human plasma. The assay utilizes an extraction at neutral pH with hexane:ethylene dichloride:methyl-t-butyl ether (70:20:10), selective ion monitoring, methane or ammonia positive chemical ionization mass spectrometry and stable isotope dilution. The method has been used to analyze plasma concentrations of naltiazem in clinical samples over a range of 2-200 ng ml-1, using 1 ml of plasma.
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