Ahamed Muneer, van Veghel Daisy, Ullmer Christoph, Van Laere Koen, Verbruggen Alfons, Bormans Guy M
Laboratory for Radiopharmacy, KU Leuven Leuven, Belgium.
Roche Pharma Research and Early Development, Roche Innovation Center Basel, F. Hoffmann-La Roche Ltd Basel, Switzerland.
Front Neurosci. 2016 Sep 22;10:431. doi: 10.3389/fnins.2016.00431. eCollection 2016.
The type 2 cannabinoid receptor (CB2) is a member of the endocannabinoid system and is known for its important role in (neuro)inflammation. A PET-imaging agent that allows visualization of CB2 expression may thus allow quantification of neuroinflammation. In this paper, we report the synthesis, radiosynthesis, biodistribution and evaluation of a carbon-11 ([C]MA2) and a fluorine-18 ([F]MA3) labeled analog of a highly potent -arylamide oxadiazole CB2 agonist (EC = 0.015 nM). MA2 and MA3 behaved as potent CB2 agonist (EC: 3 nM and 0.1 nM, respectively) and their binding affinity for CB2 was found to be 87 nM and 0.8 nM, respectively. Also MA3 (substituted with a fluoro ethyl group) was found to have higher binding affinity and EC values when compared to the originally reported trifluoromethyl analog . [C]MA2 and [F]MA3 were successfully synthesized with good radiochemical yield, high radiochemical purity and high specific activity. In mice, both tracers were efficiently cleared from blood and all major organs by the hepatobiliary pathway and importantly these compounds showed high brain uptake. In conclusion, [C]MA2 and [F]MA3 are shown to be high potent CB2 agonists with good brain uptake, these favorable characteristics makes them potential PET probes for imaging of brain CB2 receptors. However, in view of its higher affinity and selectivity, further detailed evaluation of MA3 as a PET tracer for CB2 is warranted.
2型大麻素受体(CB2)是内源性大麻素系统的成员,因其在(神经)炎症中的重要作用而闻名。一种能够可视化CB2表达的正电子发射断层扫描(PET)成像剂,因此可以对神经炎症进行定量分析。在本文中,我们报告了一种高效的芳酰胺恶二唑CB2激动剂(EC = 0.015 nM)的碳-11([C]MA2)和氟-18([F]MA3)标记类似物的合成、放射性合成、生物分布及评估。MA2和MA3表现为强效CB2激动剂(EC分别为3 nM和0.1 nM),发现它们对CB2的结合亲和力分别为87 nM和0.8 nM。与最初报道的三氟甲基类似物相比,还发现MA3(用氟乙基取代)具有更高的结合亲和力和EC值。[C]MA2和[F]MA3成功合成,具有良好的放射化学产率、高放射化学纯度和高比活度。在小鼠中,两种示踪剂均通过肝胆途径从血液和所有主要器官中有效清除,重要的是这些化合物显示出高脑摄取率。总之,[C]MA2和[F]MA3被证明是具有良好脑摄取率的高效CB2激动剂,这些有利特性使其成为用于脑CB2受体成像的潜在PET探针。然而,鉴于其更高的亲和力和选择性,有必要对MA3作为CB2的PET示踪剂进行进一步详细评估。