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Metabolism of no-carrier-added 2-[18F]fluoro-L-tyrosine in rats

机译:无载体添加的2- [18F]氟-L-酪氨酸在大鼠中的代谢

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Background Several fluorine-18 labelled fluoroamino acids have been evaluated as tracers for the quantitative assessment of cerebral protein synthesis in vivo by positron emission tomography (PET). Among these, 2-[18F]fluoro-L-tyrosine (2-[18F]Tyr) has been studied in mice at a low specific activity. Its incorporation into proteins is fast and metabolism via other pathways is limited. The present in vivo study was carried out in normal awake rats using no-carrier-added 2-[18F]Tyr. Under normal physiological conditions, we have studied the incorporation into proteins and the metabolism of the tracer in different brain areas. Methods No-carrier-added 2-[18F]Tyr was administered to awake rats equipped with chronic arterial and venous catheters. The time course of the plasma activity was studied by arterial blood sampling. The biodistribution of the activity in the main organs was studied at the end of the experiment. The distribution of radioactive species in plasma and brain regions was studied by acidic precipitation of the proteins and HPLC analysis of the supernatant. Results The absolute uptake of radioactivity in brain regions was homogenous. In awake rats, no-carrier-added 2-[18F]Tyr exhibits a fast and almost quantitative incorporation into the proteins fractions of cerebellum and cortex. In striatum, this incorporation into proteins and the unchanged fraction of the tracer detected by HPLC could be lower than in other brain regions. Conclusion This study confirms the potential of 2-[18F]fluoro-L-tyrosine as a tracer for the assessment of the rate of protein synthesis by positron emission tomography. The observed metabolism suggests a need for a correction for the appearance of metabolites, at least in plasma.
机译:背景技术几种氟18标记的氟氨基酸已被评估为示踪剂,用于通过正电子发射断层扫描(PET)定量评估体内脑蛋白的合成。其中,对2-[ 18 F]氟-L-酪氨酸(2-[ 18 F] Tyr)进行了研究,其比活度较低。它迅速掺入蛋白质,并且通过其他途径的代谢受到限制。目前的体内研究是在正常的清醒大鼠中使用无载体的2-[ 18 F] Tyr进行的。在正常的生理条件下,我们研究了在不同大脑区域中蛋白质的结合以及示踪剂的代谢。方法对未清醒的装有慢性动静脉导管的大鼠进行无载体2-[ 18 F] Tyr给药。通过动脉血取样研究血浆活性的时间过程。在实验结束时研究了主要器官中活性的生物分布。通过蛋白质的酸性沉淀和上清液的HPLC分析研究了血浆和脑区域中放射性物质的分布。结果脑区域放射性的绝对摄取是均匀的。在清醒的大鼠中,未添加载体的2-[ 18 F] Tyr表现出快速且几乎定量地结合到小脑和皮质的蛋白质组分中。在纹状体中,这种结合到蛋白质中的含量以及通过HPLC检测到的示踪剂的未改变部分可能低于其他脑区域。结论本研究证实了2-[ 18 F]氟-L-酪氨酸作为示踪剂通过正电子发射断层显像技术评估蛋白质合成速率的潜力。观察到的新陈代谢表明至少在血浆中需要校正代谢物的出现。

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