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用[(18)F]DOPP对非人灵长类动物进行脂肪酸酰胺水解酶的正电子发射断层显像(PET)。

PET imaging of fatty acid amide hydrolase with [(18)F]DOPP in nonhuman primates.

作者信息

Rotstein Benjamin H, Wey Hsiao-Ying, Shoup Timothy M, Wilson Alan A, Liang Steven H, Hooker Jacob M, Vasdev Neil

机构信息

Division of Nuclear Medicine and Molecular Imaging & Center for Advanced Medical Imaging Sciences, Massachusetts General Hospital , Boston, Massachusetts 02114, United States.

出版信息

Mol Pharm. 2014 Nov 3;11(11):3832-8. doi: 10.1021/mp500316h. Epub 2014 Jul 16.

Abstract

Fatty acid amide hydrolase (FAAH) regulates endocannabinoid signaling. [(11)C]CURB, an irreversibly binding FAAH inhibitor, has been developed for clinical research imaging with PET. However, no fluorine-18 labeled radiotracer for FAAH has yet advanced to human studies. [(18)F]DOPP ([(18)F]3-(4,5-dihydrooxazol-2-yl)phenyl (5-fluoropentyl)carbamate) has been identified as a promising (18)F-labeled analogue based on rodent studies. The goal of this work is to evaluate [(18)F]DOPP in nonhuman primates to support its clinical translation. High specific activity [(18)F]DOPP (5-6 Ci·μmol(-1)) was administered intravenously (iv) to three baboons (2M/1F, 3-4 years old). The distribution and pharmacokinetics were quantified following a 2 h dynamic imaging session using a simultaneous PET/MR scanner. Pretreatment with the FAAH-selective inhibitor, URB597, was carried out at 200 or 300 μg/kg iv, 10 min prior to [(18)F]DOPP administration. Rapid arterial blood sampling for the first 3 min was followed by interval sampling with metabolite analysis to provide a parent radiotracer plasma input function that indicated ∼95% baseline metabolism at 60 min and a reduced rate of metabolism after pretreatment with URB597. Regional distribution data were analyzed with 1-, 2-, and 3-tissue compartment models (TCMs), with and without irreversible trapping since [(18)F]DOPP covalently links to the active site of FAAH. Consistent with previous findings for [(11)C]CURB, the 2TCM with irreversible binding was found to provide the best fit for modeling the data in all regions. The composite parameter λk3 was therefore used to evaluate whole brain (WB) and regional binding of [(18)F]DOPP. Pretreatment studies showed inhibition of λk3 across all brain regions (WB baseline: 0.112 mL/cm(3)/min; 300 μg/kg URB597: 0.058 mL/cm(3)/min), suggesting that [(18)F]DOPP binding is specific for FAAH, consistent with previous rodent data.

摘要

脂肪酸酰胺水解酶(FAAH)调节内源性大麻素信号传导。[(11)C]CURB是一种不可逆结合的FAAH抑制剂,已被开发用于正电子发射断层扫描(PET)的临床研究成像。然而,尚未有用于FAAH的氟-18标记放射性示踪剂进入人体研究阶段。基于啮齿动物研究,[(18)F]DOPP([(18)F]3-(4,5-二氢恶唑-2-基)苯基(5-氟戊基)氨基甲酸酯)已被确定为一种有前景的氟-18标记类似物。这项工作的目标是在非人灵长类动物中评估[(18)F]DOPP,以支持其临床转化。将高比活度的[(18)F]DOPP(5-6 Ci·μmol⁻¹)静脉注射(iv)给三只狒狒(2只雄性/1只雌性,3-4岁)。使用同步PET/MR扫描仪进行2小时动态成像后,对分布和药代动力学进行定量分析。在注射[(18)F]DOPP前10分钟,以200或300μg/kg iv的剂量静脉注射FAAH选择性抑制剂URB597进行预处理。在前3分钟快速采集动脉血样,随后进行间隔采样并进行代谢物分析,以提供母体放射性示踪剂血浆输入函数,该函数表明在60分钟时约95%的基线代谢,并且在用URB597预处理后代谢速率降低。使用1、2和3组织隔室模型(TCM)分析区域分布数据,考虑有无不可逆捕获,因为[(18)F]DOPP与FAAH的活性位点共价连接。与之前关于[(11)C]CURB的研究结果一致,发现具有不可逆结合的2TCM最适合对所有区域的数据进行建模。因此,复合参数λk3用于评估[(18)F]DOPP在全脑(WB)和区域的结合。预处理研究表明,所有脑区的λk3均受到抑制(WB基线:0.112 mL/cm³/min;300μg/kg URB597:0.058 mL/cm³/min),这表明[(18)F]DOPP的结合对FAAH具有特异性,与之前的啮齿动物数据一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7975/4224570/b340de898213/mp-2014-00316h_0002.jpg

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