A FEASIBILITY STUDY ON L-[1-CARBON-11]TYROSINE AND L-[METHYL-CARBON-11]METHIONINE TO ASSESS LIVER PROTEIN-SYNTHESIS BY PET

Citation
K. Ishiwata et al., A FEASIBILITY STUDY ON L-[1-CARBON-11]TYROSINE AND L-[METHYL-CARBON-11]METHIONINE TO ASSESS LIVER PROTEIN-SYNTHESIS BY PET, The Journal of nuclear medicine, 37(2), 1996, pp. 279-285
Citations number
25
Categorie Soggetti
Radiology,Nuclear Medicine & Medical Imaging
ISSN journal
01615505
Volume
37
Issue
2
Year of publication
1996
Pages
279 - 285
Database
ISI
SICI code
0161-5505(1996)37:2<279:AFSOLA>2.0.ZU;2-D
Abstract
We studied the potential of L-[1-C-11]tyrosine ([1-C-11]Tyr) and L-[me thyl-C-11]methionine ([Me-C-11]Met) as tracers for measuring protein s ynthesis rate (PSR) in the liver by PET and proposed their metabolic m odels. Methods: In the liver and plasma of control and cycloheximide-t reated mice injected with [1-C-14]Tyr and [Me-H-3]Met, incorporation o f the radioactivity into the acid-soluble fraction and chloroform/meth anol-extract (CM), RNA and protein fractions were measured. Data were compared with those from rat studies with C-11-labeled analogs and PET . Results: In mice, liver uptake of [Me-H-3]Met was over twice as larg e as that of [1-C-14]Tyr. Similar uptake patterns of the C-11-labeled analogs were found in rats by PET. In the mouse liver at 1 to 6 hr aft er injection, similar to 69%-73% of the C-14 was detected in the prote in fraction, whereas similar to 65%-70% of the H-3 was in the CM fract ion, which reflected phospholipid synthesis. In plasma, the percentage s of the protein fractions were similar to 73%-76% for C-14 and simila r to 36%-46% for H-3. Gel-filtration analysis suggested that 80% of th e C-14-labeled plasma proteins was albumin originating from the liver, which corresponds to approximately 25% of the total labeled proteins synthesized in the liver at 6 hr. When protein synthesis was inhibited by cycloheximide the liver uptake of the [1-C-14]Tyr and the protein- incorporation of C-14 in the liver and in plasma were decreased dose-d ependently. On the other hand, uptake of [Me-H-3]Met was significantly enhanced in the liver due to increased incorporation into the CM frac tion. Conclusion: [1-Carbon-11]Tyr can be used for measuring the PSR i n the liver by PET. Liver uptake of [Me-C-11]Met mainly reflects phosp holipid synthesis through the transmethylation process.