Research Imaging Centre, Centre for Addiction and Mental Health, 250 College St., Toronto, ON M5T 1R8, Canada.
Bioorg Med Chem. 2013 Jul 15;21(14):4351-7. doi: 10.1016/j.bmc.2013.04.077. Epub 2013 May 7.
Fatty acid amide hydrolase (FAAH), the enzyme responsible for terminating signaling by the endocannabinoid anandamide, plays an important role in the endocannabinoid system, and FAAH inhibitors are attractive drugs for pain, addiction, and neurological disorders. The synthesis, radiosynthesis, and evaluation, in vitro and ex vivo in rat, of an (18)F-radiotracer designed to image FAAH using positron emission tomography (PET) is described. Fluorine-18 labelled 3-(4,5-dihydrooxazol-2-yl)phenyl (5-fluoropentyl)carbamate, [(18)F]5, was synthesized at high specific activity in a one-pot three step reaction using a commercial module with a radiochemical yield of 17-22% (from [(18)F]fluoride). In vitro assay using rat brain homogenates showed that 5 inhibited FAAH in a time-dependent manner, with an IC50 value of 0.82nM after a preincubation of 60min. Ex vivo biodistribution studies and ex vivo autoradiography in rat brain demonstrated that [(18)F]5 had high brain penetration with standard uptake values of up to 4.6 and had a regional distribution which correlated with reported regional FAAH enzyme activity. Specificity of binding to FAAH with [(18)F]5 was high (>90%) as demonstrated by pharmacological challenges with potent and selective FAAH inhibitors and was irreversible as demonstrated by radioactivity measurements on homogenized brain tissue extracts. We infer from these results that [(18)F]5 is a highly promising candidate radiotracer with which to image FAAH in human subjects using PET and clinical studies are proceeding.
脂肪酸酰胺水解酶(FAAH)是负责终止内源性大麻素大麻素信号的酶,在内源性大麻素系统中发挥着重要作用,FAAH 抑制剂是治疗疼痛、成瘾和神经疾病的有吸引力的药物。本文描述了一种用于正电子发射断层扫描(PET)成像 FAAH 的(18)F 放射性示踪剂的合成、放射性合成、体外和大鼠体内评估。使用商业模块以 17-22%的放射性化学产率(来自(18)F 氟化物)在一锅三步反应中以高比活度合成了氟-18 标记的 3-(4,5-二氢恶唑-2-基)苯基(5-氟戊基)氨基甲酸酯,[(18)F]5。使用大鼠脑匀浆进行的体外测定表明,5 以时间依赖性方式抑制 FAAH,在 60min 的预孵育后 IC50 值为 0.82nM。在大鼠脑中进行的离体生物分布研究和离体放射自显影表明,[(18)F]5 具有较高的脑穿透性,标准摄取值高达 4.6,其分布与报道的区域 FAAH 酶活性相关。[(18)F]5 与 FAAH 结合的特异性很高(>90%),如用强效和选择性 FAAH 抑制剂进行药理学挑战所证明,并且如通过对匀浆脑组织提取物进行放射性测量所证明的那样是不可逆的。从这些结果中我们推断,[(18)F]5 是一种很有前途的候选放射性示踪剂,可用于使用 PET 对人类 FAAH 进行成像,并且正在进行临床研究。