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新型正电子发射断层显像(PET)显像剂[11C]AFE是一种具有快速脑摄取动力学的选择性5-羟色胺转运体配体。

The new PET imaging agent [11C]AFE is a selective serotonin transporter ligand with fast brain uptake kinetics.

作者信息

Zhu Zhihong, Guo Ningning, Narendran Raj, Erritzoe David, Ekelund Jesper, Hwang Dah-Ren, Bae Sung-A, Laruelle Marc, Huang Yiyun

机构信息

Department of Psychiatry, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.

出版信息

Nucl Med Biol. 2004 Nov;31(8):983-94. doi: 10.1016/j.nucmedbio.2004.07.003.

Abstract

A new positron emission tomography (PET) radioligand for the serotonin transporter (SERT), [(11)C]2-[2-[[(dimethylamino)methyl]phenyl]thio]-5-(2-fluoroethyl)phenylamine ([(11)C]AFE, 12), was synthesized and evaluated in vivo in rats and baboons. [(11)C]AFE (12) was prepared from its monomethylamino precursor 11 by reaction with high specific activity [(11)C]methyl triflate. Radiochemical yield was 32+/-17% based on [(11)C]methyl triflate (n=6) and specific activity was 1670+/-864 Ci/mmol at end of synthesis (EOS, n=6). Binding assays indicated that AFE displays high affinity for SERT (K(i)=1.80 nM for hSERT) and lower affinity for norepinephrine transporter (K(i)=946 nM for hNET) or dopamine transporter (K(i)>10,000 nM for hDAT). In addition, AFE displays negligible binding affinities for other serotonin and dopamine receptors, indicating an excellent binding selectivity in vitro. Biodistribution studies in rats indicated that [(11)C]AFE enters the brain readily and localizes in regions known to contain high concentrations of SERT, such as the thalamus, hypothalamus, frontal cortex and striatum. Moreover, such binding in SERT-rich brain regions is reduced significantly by pretreatment with either citalopram or the cold compound itself, but not by nisoxetine or GBR 12935, thus demonstrating that [(11)C]AFE binding in the rat brain is saturable, specific and selective for the SERT. Imaging experiments in baboons indicated that the uptake pattern of [(11)C]AFE is consistent with the known distribution of SERT in the baboon brain, with high levels of radioactivity detected in the midbrain and thalamus, moderate levels in the hippocampus and striatum and low levels in the cortical regions. The uptake kinetics of [(11)C]AFE in the baboon brain is rapid, with activity in the midbrain and thalamus peaking at 15-40 min postinjection. Pretreatment of the baboon with citalopram (4 mg/kg) 20 min before radioactivity injection reduced the binding of [(11)C]AFE in all SERT-containing brain regions to the level in the cerebellum. Kinetic analysis revealed that in all brain regions examined, [(11)C]AFE specific-to-nonspecific partition coefficients (V(3)'') are similar to those of [(11)C]McN5652 and [(11)C]2-[2-[[(dimethylamino)methyl]phenyl]thio]-5-fluorophenylamine ([(11)C]AFA), but lower than those of [(11)C]2-[2-[[(dimethylamino)methyl]phenyl]thio]-5-fluoromethylphenylamine ([(11)C]AFM) or [(11)C]DASB. In summary, [(11)C]AFE appears to be a PET radioligand with fast brain uptake kinetics and can be used for the visualization and quantification of SERT in vivo.

摘要

一种用于血清素转运体(SERT)的新型正电子发射断层扫描(PET)放射性配体,即[(11)C]2-[2-[[(二甲氨基)甲基]苯基]硫代]-5-(2-氟乙基)苯胺([(11)C]AFE, 12),已被合成并在大鼠和狒狒体内进行了评估。[(11)C]AFE (12)由其单甲氨基前体11与高比活度的[(11)C]甲基三氟甲磺酸酯反应制备而成。基于[(11)C]甲基三氟甲磺酸酯,放射化学产率为32±17%(n = 6),合成结束时(EOS,n = 6)的比活度为1670±864 Ci/mmol。结合实验表明,AFE对SERT具有高亲和力(对人SERT的K(i)=1.80 nM),对去甲肾上腺素转运体(对人NET的K(i)=946 nM)或多巴胺转运体(对人DAT的K(i)>10,000 nM)的亲和力较低。此外,AFE对其他血清素和多巴胺受体的结合亲和力可忽略不计,表明其在体外具有出色的结合选择性。大鼠体内分布研究表明,[(11)C]AFE能迅速进入大脑,并定位于已知含有高浓度SERT的区域,如丘脑、下丘脑、额叶皮质和纹状体。此外,用西酞普兰或冷化合物本身预处理可显著降低富含SERT的脑区中的这种结合,但用尼索西汀或GBR 12935预处理则无此效果,从而证明[(11)C]AFE在大鼠脑中的结合是可饱和的、特异性的且对SERT具有选择性。狒狒成像实验表明,[(11)C]AFE的摄取模式与狒狒脑中已知的SERT分布一致,中脑和丘脑中检测到高水平放射性,海马体和纹状体中为中等水平,皮质区域中为低水平。[(11)C]AFE在狒狒脑中的摄取动力学很快,中脑和丘脑的活性在注射后15 - 40分钟达到峰值。在放射性注射前20分钟用西酞普兰(4 mg/kg)预处理狒狒,可将[(11)C]AFE在所有含SERT的脑区中的结合降低至小脑水平。动力学分析表明,在所有检测的脑区中,[(11)C]AFE的特异性与非特异性分配系数(V(3)'')与[(11)C]McN5652和[(11)C]2-[2-[[(二甲氨基)甲基]苯基]硫代]-5-氟苯胺([(11)C]AFA)相似,但低于[(11)C]2-[2-[[(二甲氨基)甲基]苯基]硫代]-5-氟甲基苯胺([(11)C]AFM)或[(11)C]DASB。总之,[(11)C]AFE似乎是一种脑摄取动力学快速的PET放射性配体,可用于体内SERT的可视化和定量分析。

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