Division of Nuclear Medicine and Translational Imaging, Department of Medical Imaging, Faculty of Medicine, University of Debrecen, Debrecen, Hungary;
Division of Nuclear Medicine and Translational Imaging, Department of Medical Imaging, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.
In Vivo. 2024 Mar-Apr;38(2):587-597. doi: 10.21873/invivo.13477.
BACKGROUND/AIM: Since the use of anaesthetics has the drawback of altering radiotracer distribution, preclinical positron emission tomography (PET) imaging findings of anaesthetised animals must be carefully handled. This study aimed at assessing the cerebral [F]F-FDG uptake pattern in healthy Wistar rats under four different anaesthesia protocols using microPET/magnetic resonance imaging (MRI) examinations.
Post-injection of 15±1.2 MBq of [F]F-FDG, either while awake or during the isoflurane-induced incubation phase was applied. Prior to microPET/MRI imaging, one group of the rats was subjected to forane-only anaesthesia while the other group was anaesthetised with the co-administration of forane and dexmedetomidine/Dexdor Results: While as for the whole brain it was the addition of dexmedetomidine/Dexdor to the anaesthesia protocol that generated the differences between the radiotracer concentrations of the investigated groups, regarding the cortex, the [F]F-FDG accumulation was rather affected by the way of incubation. To ensure the most consistent and highest uptake, forane-induced anaesthesia coupled with an awake uptake condition seemed to be most suitable method of anaesthetisation for cerebral metabolic assessment. Diminished whole brain and cortical tracer accumulation detected upon dexmedetomidine/Dexdor administration highlights the significance of the mechanism of action of different anaesthetics on radiotracer pharmacokinetics.
Overall, the standardization of PET protocols is of utmost importance to avoid the confounding factors derived from anaesthesia.
背景/目的:由于麻醉剂的使用会改变示踪剂的分布,因此必须谨慎处理麻醉动物的临床前正电子发射断层扫描(PET)成像结果。本研究旨在使用 microPET/MRI 检查评估四种不同麻醉方案下健康 Wistar 大鼠的脑[F]F-FDG 摄取模式。
在注射 15±1.2 MBq [F]F-FDG 后,使动物保持清醒或在异氟烷诱导的孵育阶段应用。在进行 microPET/MRI 成像之前,一组大鼠仅接受福尔烷麻醉,而另一组则接受福尔烷和右美托咪定/右旋美托咪定(Dexdor)联合麻醉。
对于整个大脑,正是将右美托咪定/右旋美托咪定添加到麻醉方案中导致了研究组之间放射性示踪剂浓度的差异,而对于皮质,[F]F-FDG 的积累则主要受到孵育方式的影响。为了确保最一致和最高的摄取,福尔烷诱导的麻醉联合清醒摄取条件似乎是最适合脑代谢评估的麻醉方法。在右旋美托咪定/右旋美托咪定给药时检测到的整个大脑和皮质示踪剂摄取减少,突出了不同麻醉剂对示踪剂药代动力学作用机制的重要性。
总体而言,为避免麻醉带来的混杂因素,PET 方案的标准化至关重要。