Biosynthesis of ergot alkaloids in Claviceps paspali. I. Incorporation of DL-4-dimethylallyltryptophan-14C.
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Biomedical subjects
Publications and source records attributed to S Agurell.
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Plasma concentrations of THC were measured by gas-liquid chromatography and mass spectrometry following three routes of administration and correlated with clinical effects. Plasma concentrations peaked at 3 minutes after intravenous injection and then sharply declined. The peak "high" occurred at 30 minutes while plasma concentrations were declining. This lag between plasma concentration and "high" continued during most of the span of the drug's effects. The situation was quite similar following smoking, except that peak plasma concentrations were lower. After oral administration of THC, absorption was slow, with peak concentration occurring at 1 to 2 hours. Plasma concentrations were much lower. Correlations between plasma concentrations of drug and "high" were significant but not impressive. The degree of "high" was quite variable in relation to the prevailing plasma concentration. Conjunctival injection was found so long as plasma concentration of THC could be measured. Pulse rate increases occurred at lower concentration after oral administration than after the other two routes. It is unlikely that a range of plasma concentrations can be reliably equated with impaired performance. The mode of administration will become important should THC or some homolog become a therapeutic agent.
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Potential metabolites of (-)-3,4-trans-tetrahydrocannabinol (THC) with a carboxylic acid function in the side chain were synthesized as their methyl esters in the delta1(6)-series. The chromatographic and mass-spectrometric properties of the five side-chain homologues were examined and utilized to facilitate the isolation and the identification of the corresponding monocarboxylic acid metabolites of delta1(6)-THC in the mouse, guinea pig, and rabbit formed after ip administration. The metabolites were identified by gas chromatography and mass fragmentography. In mouse liver delta1(6)-THC-7-oic acid and 3'',4'',5''-trisnor delta1(6)-THC-2''-oic acid were identified as metabolites. In guinea pig liver these acids occurred together with 4'',5''-bisnor-delta1(6)-THC-3''-oic acid and 5''-nor-delta1(6)-THC-4''-oic acid. Rabbit liver contained delta1(6)-THC-7-oic acid, 2'',3'',4'',5''-tetranor-delta1(6)-THC-1''-oic acid and 4'',5''-bisnor-delta1(6)-THC-3''-oic acid. Further, the structure of three dicarboxylic acid metabolites of delta1(6)-THC in rabbit kidney were determined by mass spectrometry and proton magnetic resonance spectroscopy.
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