Nagatsugi F, Hokazono J, Sasaki S, Maeda M
Faculty of Pharmaceutical Sciences, Kyusau University, Fukuoka, Japan.
Biol Pharm Bull. 1996 Oct;19(10):1316-21. doi: 10.1248/bpb.19.1316.
The in vivo behavior of 20-[18F]fluoroarachidonic acid (18F-FAA) was investigated to evaluate its potential use as a radiotracer for studying the regional brain and heart lipid metabolism by positron emission tomography (PET). Tissue biodistribution studies in rats have revealed that 18F-FAA has a high uptake in the liver and lung, thus probably reflecting the metabolism, and is accompanied by both low in vivo defluorination and low blood levels. At 30 min postinjection, the uptake in the brain and heart reached values of 0.26 +/- 0.02 and 1.22 +/- 0.58% dose/g, respectively, with ratios to the blood radioactivity of 1.04 and 4.88, respectively. Lipid extraction at 30 min postinjection showed that 39% of the brain radioactivity was in the organic phase whereas the organic phase from heart tissue contained 73% of the total radioactivity. A TLC analysis demonstrated that 18F-FAA was mainly bound to phospholipids in the brain and heart tissue as expected. Based on the findings of this study, the utility of 18F-FAA as an in vivo tracer for cerebral phospholipid studies appears to be limited because of its relatively high radioactivity in the aqueous brain fraction. However, our findings do suggest that this agent might be useful as a tool for studies of cardiac phospholipid turnover, even though it demonstrated a poor heart-to-lung and heart-to-liver contrast.
研究了20-[18F]氟花生四烯酸(18F-FAA)的体内行为,以评估其作为放射性示踪剂通过正电子发射断层扫描(PET)研究局部脑和心脏脂质代谢的潜在用途。大鼠的组织生物分布研究表明,18F-FAA在肝脏和肺中摄取较高,因此可能反映了代谢情况,并且体内脱氟率低且血药浓度低。注射后30分钟,脑和心脏的摄取量分别达到0.26±0.02和1.22±0.58%剂量/克,与血液放射性的比值分别为1.04和4.88。注射后30分钟的脂质提取显示,脑放射性的39%存在于有机相中,而心脏组织的有机相中含有总放射性的73%。薄层色谱分析表明,正如预期的那样,18F-FAA主要与脑和心脏组织中的磷脂结合。基于本研究的结果,由于其在脑水相部分的放射性相对较高,18F-FAA作为脑磷脂研究的体内示踪剂的效用似乎有限。然而,我们的研究结果确实表明,尽管该试剂的心-肺和心-肝对比度较差,但它可能作为研究心脏磷脂周转的工具是有用的。