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新型 TSPO PET 成像配体[F]氟乙基替马西泮的全自动合成。

Fully Automated Synthesis of Novel TSPO PET Imaging Ligand [F]Fluoroethyltemazepam.

机构信息

IRCCS SDN, 80143 Napoli, Italy.

Department of Pharmacy, School of Medicine and Surgery, University of Naples Federico II, 80131 Naples, Italy.

出版信息

Molecules. 2021 Apr 19;26(8):2372. doi: 10.3390/molecules26082372.

Abstract

INTRODUCTION

Benzodiazepines, including temazepam are described as TSPO antagonists. In fact, TSPO was initially described as a peripheral benzodiazepine receptor (PBR) with a secondary binding site for diazepam. TSPO is a potential imaging target of neuroinflammation because there is an amplification of the expression of this receptor.

OBJECTIVES

Herein, we developed a novel fluorinated benzodiazepine ligand, [F]Fluoroethyltemazepam ([F]F-FETEM), for positron emission tomography (PET) imaging of translocator protein (18 kDa).

METHODS

[F]F-FETEM was radiolabelled with an automated synthesizer via a one-pot procedure. We conducted a [F]F-aliphatic nucleophilic substitution of a tosylated precursor followed by purification on C18 and Alumina N SPE cartridges. Quality control tests was also carried out.

RESULTS

We obtained 2.0-3.0% decay-uncorrected radiochemical activity yield (3.7% decay-corrected) within the whole synthesis time about 33 min. The radiochemical purity of [F]F-FETEM was over 90% by TLC analysis.

CONCLUSIONS

This automated procedure may be used as basis for future production of [F]F-FETEM for preclinical PET imaging studies.

摘要

简介

苯二氮䓬类药物,包括替马西泮,被描述为 TSPO 拮抗剂。事实上,TSPO 最初被描述为外周苯二氮䓬受体(PBR),具有与地西泮的次要结合位点。TSPO 是神经炎症的潜在成像靶点,因为该受体的表达会放大。

目的

在此,我们开发了一种新型氟化苯二氮䓬配体[F]氟乙基替马西泮([F]F-FETEM),用于正电子发射断层扫描(PET)成像转位蛋白(18 kDa)。

方法

[F]F-FETEM 通过自动化合成仪通过一锅法进行放射性标记。我们进行了 tosylated 前体的[F]F-脂肪亲核取代,然后通过 C18 和氧化铝 N SPE 柱进行纯化。还进行了质量控制测试。

结果

我们在整个合成时间约 33 分钟内获得了 2.0-3.0%未衰减校正的放射性化学产率(3.7%衰减校正)。TLC 分析表明[F]F-FETEM 的放射化学纯度超过 90%。

结论

该自动化程序可作为未来用于临床前 PET 成像研究的[F]F-FETEM 生产的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/511b/8073130/9315e1d5225c/molecules-26-02372-g001.jpg

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