Nuclear medicine program progress report for quarter ending March 31, 1996

1996 
Biodistribution studies with the radioiodinated 3(R)- and 3(S)-BMIPP isomers in rats have shown that 3(R)-BMIPP has 20-25% higher heart uptake (15-180 min) than 3(S)-BMIPP, while uptake in other tissues examined is similar. To evaluate the possible differences in metabolic fate of the two isomers, a mixture of [I-125]-3(R)/[I-131]- 3(S)-BMIPP was administered to fasted female Fisher rats. Groups (n=3 rats per group) were sacrificed after 15, 60 and 180 min, and urine and feces collected from another group. Samples of blood, heart, liver, lungs, kidney, and urine were Folch-extracted. The distribution of I-125 and I-131 in the organic, aqueous, and pellet samples were determined. Organic samples were then analyzed by thin-layer chromatography (TLC) and high performance liquid chromatography (HPLC). The relative distribution of I-125/I-131 in the lipid, aqueous, and pellet samples was similar for both isomers. Distribution of I-125/I-131 in the various components of the lipid extracts observed by TLC was similar, with principal incorporation into the free fatty acid (FFA) and triglyceride (TG) pools. HPLC analyses (Cl8) of the FFA fraction showed similar I-125/I-131 profiles, corresponding to BMIPP, and the {alpha}-methyl-C,4 (PIPA) and C12, Cl0 and C6 carbon chain-length catabolites. By TLC, urine I-125/I-131 chromatographed with hippuric acid. HPLC analyses (Cl 8) of acid-hydrolyzed urine gave a single I-125/I-131 component with the same RRT as 2-({beta}-iodophenyl)acetic acid, the final {alpha}/{beta}-oxidative BMIPP catabolite. Unexpectedly, HPLC of lipids from base hydrolyzed TG from the heart tissue, showed I-125/I-125 co-chromatographing with short-chain fatty acids, with only levels in BMIPP. These unexpected results demonstrate that the 3(R)-BMIPP and 3(S)-BMIPP isomers are metabolized similarly in rat tissues, and that the higher myocardial extraction observed for the 3(R)-BMIPP may reflect differences in the relative membrane transport of the two isomers.
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