“…The mass spectrum of this component showed molecular ions at m/e 168 and 170 in the correct ratio for one chlorine atom. This information was consistent for 1 -chloro-1-phenyl-2-propanone (8). In contrast to the above results, acid hydrolysis of 1 and 2 afforded no oxidative rearrangement carbonyl products.…”
“…The mass spectrum of this component showed molecular ions at m/e 168 and 170 in the correct ratio for one chlorine atom. This information was consistent for 1 -chloro-1-phenyl-2-propanone (8). In contrast to the above results, acid hydrolysis of 1 and 2 afforded no oxidative rearrangement carbonyl products.…”
“…It was possible to carry 14 out the reactions in the original [ C]chlorobenzene ampoules if a small amount of solvent was permitted for the transfer of the appropriate 2,2-dichloro-l-(chlorophenyl)ethanol to the ampoule. Ultrasonic mixing of the reactants significantly improved the yields of the DDD products, even though the scale of the reaction was only 1/100 of that earlier reported (4). It was however necessary to perform the reactions in this semi-micro scale, since a high specific activity is required in,the biological work planned to be done with these DDD isomers.…”
SUMMARYA 3H+-release method has been developed for the assay of P-hydroxylation of the adrenolytic drug mitotane. P-3H-rnitotane was synthesized by the reduction of 142-chlorophenyl)-l-(4-chlorophenyl)-2,2,2-trichloroethane by an aluminium-HgZC12 couple in the presence of 3Hz0. For P-hydroxylation of mitotane, the jH+-release assay is more efficient and sensitive than a method utilizing 14C-mitotane and chromatographic separation of metabolites by HPLC. The 3H+-release assay has been used to evaluate the ability of adrenal tumors to metabolize mitotane via the Phydroxylation route.
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