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脑内脂肪酸酰胺水解酶的正电子发射断层扫描显像:一种 11C 标记的 URB597 类似物的合成与生物学评价。

PET imaging of fatty acid amide hydrolase in the brain: synthesis and biological evaluation of an 11C-labelled URB597 analogue.

机构信息

Department of Radiopharmacy, Ghent University, Harelbekestraat 72, 9000 Ghent, Belgium.

出版信息

Nucl Med Biol. 2010 Jul;37(5):665-75. doi: 10.1016/j.nucmedbio.2010.03.009. Epub 2010 May 6.

Abstract

INTRODUCTION

Fatty acid amide hydrolase (FAAH) is part of the endocannabinoid system (ECS) and has been linked to the aetiology of several neurological and neuropsychiatric disorders. So far no useful PET or SPECT tracer for in vivo visualisation of FAAH has been reported. We synthesized and evaluated a carbon-11-labeled URB597 analogue, biphenyl-3-yl [(11)C]-4-methoxyphenylcarbamate or [(11)C]-1, as potential FAAH imaging agent.

METHODS

The inhibitory activity of 1 was determined in vitro using recombinant FAAH. Radiosynthesis of [(11)C]-1 was performed by methylation using [(11)C]-CH(3)I, followed by HPLC purification. Biological evaluation was done by biodistribution studies in wild-type and FAAH knock-out mice, and by ex vivo and in vivo metabolite analysis. The influence of URB597 pretreatment on the metabolisation profile was assessed.

RESULTS

[(11)C]-1 was obtained in good yields and high radiochemical purity. Biodistribution studies revealed high brain uptake in wild-type and FAAH knock-out mice, but no retention of radioactivity could be demonstrated. Metabolite analysis and URB597 pretreatment confirmed the non-FAAH-mediated metabolisation of [(11)C]-1. The inhibition mechanism was determined to be reversible. In addition, the inhibition of URB597 appeared slowly reversible.

CONCLUSIONS

Although [(11)C]-1 inhibits FAAH in vitro and displays high brain uptake, the inhibition mechanism seems to deviate from the proposed carbamylation mechanism. Consequently, it does not covalently bind to FAAH and will not be useful for mapping the enzyme in vivo. However, it represents a potential starting point for the development of in vivo FAAH imaging tools.

摘要

简介

脂肪酸酰胺水解酶(FAAH)是内源性大麻素系统(ECS)的一部分,与几种神经和神经精神疾病的发病机制有关。到目前为止,还没有报道用于 FAAH 体内可视化的有用的 PET 或 SPECT 示踪剂。我们合成并评估了一种碳-11 标记的 URB597 类似物,联苯-3-基[(11)C]-4-甲氧基苯基氨基甲酸酯或[(11)C]-1,作为潜在的 FAAH 成像剂。

方法

使用重组 FAAH 在体外测定 1 的抑制活性。[(11)C]-1 的放射性合成通过使用[(11)C]-CH(3)I 进行甲基化来完成,然后通过 HPLC 纯化。通过在野生型和 FAAH 敲除小鼠中的生物分布研究、通过离体和体内代谢产物分析进行生物评价。评估了 URB597 预处理对代谢产物谱的影响。

结果

[(11)C]-1 以良好的产率和高放射化学纯度获得。生物分布研究表明,在野生型和 FAAH 敲除小鼠中,大脑摄取量很高,但不能证明放射性的保留。代谢产物分析和 URB597 预处理证实了[(11)C]-1 的非 FAAH 介导的代谢。抑制机制被确定为可逆的。此外,URB597 的抑制似乎是缓慢可逆的。

结论

尽管[(11)C]-1 在体外抑制 FAAH,并且显示出高的脑摄取,但抑制机制似乎偏离了拟议的氨甲酰化机制。因此,它不会与 FAAH 共价结合,不会用于体内酶的成像。然而,它代表了开发体内 FAAH 成像工具的潜在起点。

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