A Comparative Uptake Study of Multiplexed PET Tracers in Mice with Turpentine-Induced Inflammation

作者:Huang, Tingting; Wang, Hongliang; Tang, Ganghua*; Liang, Xiang; Nie, Dahong; Yi, Chang; Wu, Kening
来源:Molecules, 2012, 17(12): 13948-13959.
DOI:10.3390/molecules171213948

摘要

The potential value of multiplexed positron emission tomography (PET) tracers in mice with turpentine-induced inflammation was evaluated and compared with 2-[F-18]fluoro-2-deoxy-D-glucose ([F-18]FDG) for glucose metabolism imaging. These PET tracers included [F-18]fluoromethylcholine ([F-18]FCH) for choline metabolism imaging, (S-[C-11]methyl)-D-cysteine ([C-11]DMCYS) for amino acid metabolism imaging, [C-11]bis(zinc(II)-dipicolylamine) ([C-11]DPA-Zn2 ) for apoptosis imaging, 2-(4-N-[C-11]-methylaminophenyl)-6-hydroxybenzothiazole ([C-11]PIB) for beta amyloid binding imaging, and [F-18]fluoride (F-18(-)) for bone metabolism imaging. In mice with turpentine-induced inflammation mice, the biodistribution of all the tracers mentioned above at 5, 15, 30, 45, and 60 min postinjection was determined. Also, the time-course curves of the tracer uptake ratios for inflammatory thigh muscle (IM) to normal uninflammatory thigh muscle (NM), IM to blood (BL), IM to brain (BR), and IM to liver (LI) were acquired, respectively. Moreover, PET imaging with the tracers within 60 min postinjection on a clinical PET/CT scanner was also conducted. [F-18]FDG and F-18(-) showed relatively higher uptake ratios for IM to NM, IM to BL, IM to BR, and IM to LI than [F-18]FCH, [C-11]DPA-Zn2 , [C-11]DMCYS and [C-11]PIB, which were highly consistent with the results delineated in PET images. The results demonstrate that F-18(-) seems to be a potential PET tracer for inflammation imaging. [F-18]FCH and [C-11]DMCYS, with lower accumulation in inflammatory tissue than [F-18]FDG, are not good PET tracers for inflammation imaging. As a promising inflammatory tracer, the chemical structure of [C-11]DPA-Zn2 needs to be further optimized.