Department of Medical Physics, Harlow Primate Center, Waisman Laboratory for Brain Imaging and Behavior, University of Wisconsin-Madison, Madison, Wisconsin 53593, USA.
Synapse. 2011 Jul;65(7):592-600. doi: 10.1002/syn.20878. Epub 2010 Dec 8.
[F-18]Mefway was developed to provide an F-18 labeled positron emission tomography (PET) neuroligand with high affinity for the serotonin 5-HT(1A) receptor to improve the in vivo assessment of the 5-HT(1A) system. The goal of this work was to compare the in vivo kinetics of [F-18]mefway, [F-18]MPPF, and [C-11]WAY100635 in the rhesus monkey.
Each of four monkeys were given bolus injections of [F-18]mefway, [C-11]WAY100635, and [F-18]MPPF and scans were acquired with a microPET P4 scanner. Arterial blood was sampled to assay parent compound throughout the time course of the PET experiment. Time activity curves were extracted in the high 5-HT(1A) binding areas of the anterior cingulate cortex (ACG), mesial temporal cortex, raphe nuclei, and insula cortex. Time activity curves were also extracted in the cerebellum, which was used as a reference region. The in vivo kinetics of the radiotracers were compared based on the nondisplaceable distribution volume (V(ND) ) and binding potential (BP(ND) ).
At 30 min, the fraction of radioactivity in the plasma due to parent compound was 19%, 28%, and 29% and cleared from the arterial plasma at rates of 0.0031, 0.0078, and 0.0069 (min⁻¹) ([F-18]mefway, [F-18]MPPF, [C-11]WAY100635). The BP(ND) in the brain regions were mesial temporal cortex: 7.4 ± 0.6, 3.1 ± 0.4, 7.0 ± 1.2, ACG: 7.2 ± 1.2, 2.1 ± 0.2, 7.9 ± 1.2; raphe nuclei: 3.7 ± 0.6, 1.3 ± 0.3, 3.3 ± 0.7; and insula cortex: 4.2 ± 0.6, 1.2 ± 0.1, 4.7 ± 1.0 for [F-18]mefway, [F-18]MPPF, and [C-11]WAY100635 respectively.
In the rhesus monkey, [F-18]mefway has similar in vivo kinetics to [C-11]WAY100635 and yields greater than 2-fold higher BP(ND) than [F-18]MPPF. These properties make [F-18]mefway a promising radiotracer for 5-HT(1A) assay, providing higher counting statistics and a greater dynamic range in BP(ND).
[F-18]Mefway 的开发目的是提供一种具有高亲和力的 5-羟色胺 5-HT(1A)受体的 F-18 标记正电子发射断层扫描(PET)神经配体,以改善 5-HT(1A)系统的体内评估。这项工作的目的是比较[F-18]mefway、[F-18]MPPF 和 [C-11]WAY100635 在恒河猴体内的体内动力学。
每只猴子都接受 [F-18]mefway、[C-11]WAY100635 和 [F-18]MPPF 的静脉注射,并使用 microPET P4 扫描仪进行扫描。采集动脉血样,以在整个 PET 实验过程中检测母体化合物。在扣带回前部(ACG)、内侧颞叶皮质、中缝核和岛叶皮质等高 5-HT(1A)结合区提取时间活性曲线。也在小脑中提取时间活性曲线,小脑用作参考区域。基于不可置换分布容积(V(ND))和结合潜力(BP(ND)),比较放射性示踪剂的体内动力学。
在 30 分钟时,血浆中由于母体化合物而存在的放射性物质的分数分别为 19%、28%和 29%,并以 0.0031、0.0078 和 0.0069(min⁻¹)的速度从动脉血浆中清除([F-18]mefway、[F-18]MPPF、[C-11]WAY100635)。大脑区域的 BP(ND) 为内侧颞叶皮质:7.4±0.6、3.1±0.4、7.0±1.2、ACG:7.2±1.2、2.1±0.2、7.9±1.2;中缝核:3.7±0.6、1.3±0.3、3.3±0.7;岛叶皮质:4.2±0.6、1.2±0.1、4.7±1.0,分别用于 [F-18]mefway、[F-18]MPPF 和 [C-11]WAY100635。
在恒河猴中,[F-18]mefway 的体内动力学与 [C-11]WAY100635 相似,并且产生的 BP(ND) 比 [F-18]MPPF 高 2 倍以上。这些特性使 [F-18]mefway 成为 5-HT(1A)检测的有前途的放射性示踪剂,提供更高的计数统计数据和更大的 BP(ND)动态范围。