Department of Nuclear Medicine & PET Centre, Aarhus University Hospital, Aarhus, Denmark.
Translational Neuropsychiatry Unit, Aarhus University, Aarhus, Denmark.
J Cereb Blood Flow Metab. 2021 Jun;41(6):1301-1312. doi: 10.1177/0271678X20954928. Epub 2020 Sep 22.
The positron emission tomography (PET) tracer [F]GE-179 binds to the phencyclidine (PCP) site in the open -methyl-D-aspartate receptor ion channel (NMDAR-IC). To demonstrate that PET can visualise increased [F]GE-179 uptake by active NMDAR-ICs and that this can be blocked by the PCP antagonist S-ketamine, 15 rats had an electrode unilaterally implanted in their ventral hippocampus. Seven rats had no stimulation, five received pulsed 400 µA supra-threshold 60 Hz stimulation alone, and three received intravenous S-ketamine injection prior to stimulation. Six other rats were not implanted. Each rat had a 90 min [F]GE-179 PET scan. Stimulated rats had simultaneous depth-EEG recordings of induced seizure activity. [F]GE-179 uptake (volume of distribution, V) was compared between hemispheres and between groups. Electrical stimulation induced a significant increase in [F]GE-179 uptake at the electrode site compared to the contralateral hippocampus (mean 22% increase in V, =0.0014) and to non-stimulated comparator groups. Rats injected with S-ketamine prior to stimulation maintained non-stimulated levels of [F]GE-179 uptake during stimulation. In conclusion, PET visualisation of focal [F]GE-179 uptake during electrically activated NMDAR-ICs and the demonstration of specificity for PCP sites by blockade with S-ketamine support the in vivo utility of [F]GE-179 PET as a use-dependent marker of NMDAR-IC activation.
正电子发射断层扫描(PET)示踪剂 [F]GE-179 与开放的 -甲基-D-天冬氨酸受体离子通道(NMDAR-IC)中的苯环利定(PCP)位点结合。为了证明 PET 可以可视化活性 NMDAR-IC 中增加的 [F]GE-179 摄取,并且这可以被 PCP 拮抗剂 S-酮替芬阻断,15 只大鼠在其腹侧海马区单侧植入电极。7 只大鼠没有接受刺激,5 只大鼠仅接受脉冲 400µA 超阈值 60Hz 刺激,3 只大鼠在刺激前接受静脉注射 S-酮替芬。另外 6 只大鼠未植入。每只大鼠都进行了 90 分钟的 [F]GE-179 PET 扫描。受刺激的大鼠同时进行诱导性癫痫发作活动的深度 EEG 记录。比较了半球之间和组之间的 [F]GE-179 摄取(分布容积,V)。与对侧海马区(V 平均增加 22%,=0.0014)和未受刺激的对照组相比,电刺激在电极部位诱导了 [F]GE-179 摄取的显著增加。在刺激前注射 S-酮替芬的大鼠在刺激期间保持 [F]GE-179 摄取的未受刺激水平。总之,通过 S-酮替芬阻断来特异性针对 PCP 位点,电激活 NMDAR-IC 期间局部 [F]GE-179 摄取的 PET 可视化支持 [F]GE-179 PET 作为 NMDAR-IC 激活的使用依赖性标记物的体内实用性。