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首页> 外文期刊>Molecules >A Promising PET Tracer for Imaging of α7 Nicotinic Acetylcholine Receptors in the Brain: Design, Synthesis, and in Vivo Evaluation of a Dibenzothiophene-Based Radioligand
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A Promising PET Tracer for Imaging of α7 Nicotinic Acetylcholine Receptors in the Brain: Design, Synthesis, and in Vivo Evaluation of a Dibenzothiophene-Based Radioligand

机译:一种有前途的PET示踪剂,用于脑中α 7 烟碱乙酰胆碱受体的成像:基于二苯并噻吩的放射性配体的设计,合成和体内评估

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摘要

Changes in the expression of α7 nicotinic acetylcholine receptors (α7 nAChRs) in the human brain are widely assumed to be associated with neurological and neurooncological processes. Investigation of these receptors in vivo depends on the availability of imaging agents such as radioactively labelled ligands applicable in positron emission tomography (PET). We report on a series of new ligands for α7 nAChRs designed by the combination of dibenzothiophene dioxide as a novel hydrogen bond acceptor functionality with diazabicyclononane as an established cationic center. To assess the structure-activity relationship (SAR) of this new basic structure, we further modified the cationic center systematically by introduction of three different piperazine-based scaffolds. Based on in vitro binding affinity and selectivity, assessed by radioligand displacement studies at different rat and human nAChR subtypes and at the structurally related human 5-HT3 receptor, we selected the compound 7-(1,4-diazabicyclo[3.2.2]nonan-4-yl)-2-fluorodibenzo-[b,d]thiophene 5,5-dioxide (10a) for radiolabeling and further evaluation in vivo. Radiosynthesis of [18F]10a was optimized and transferred to an automated module. Dynamic PET imaging studies with [18F]10a in piglets and a monkey demonstrated high uptake of radioactivity in the brain, followed by washout and target-region specific accumulation under baseline conditions. Kinetic analysis of [18F]10a in pig was performed using a two-tissue compartment model with arterial-derived input function. Our initial evaluation revealed that the dibenzothiophene-based PET radioligand [18F]10a ([18F]DBT-10) has high potential to provide clinically relevant information about the expression and availability of α7 nAChR in the brain.
机译:人们普遍认为,人脑中α 7 烟碱型乙酰胆碱受体(α 7 nAChRs)的表达变化与神经和神经肿瘤过程有关。在体内对这些受体的研究取决于成像剂的可用性,例如可用于正电子发射断层扫描(PET)的放射性标记的配体。我们报告了一系列的α 7 nAChRs的新配体,这些配体由二苯并噻吩二氧化物作为一种新颖的氢键受体官能团与二氮杂双环壬烷作为已建立的阳离子中心设计而成。为了评估这种新的基本结构的构效关系(SAR),我们通过引入三种不同的哌嗪基支架进一步系统地修饰了阳离子中心。根据体外结合亲和力和选择性,通过放射性配体置换研究对不同大鼠和人类nAChR亚型以及与结构相关的人类5-HT 3 受体进行评估,我们选择了化合物7-(1,4 -二氮杂双环[3.2.2]壬基-4-基)-2-氟二苯并-[b,d]噻吩5,5-二氧化物(10a)用于放射性标记和体内进一步评估。优化了[ 18 F] 10a的放射合成,并将其转移到自动化模块中。在仔猪和猴子中用[ 18 F] 10a进行的动态PET成像研究表明,脑中放射性的摄取量很高,随后在基线条件下出现洗脱和目标区域特定的积累。猪中[ 18 F] 10a的动力学分析是使用具有动脉源性输入功能的两组织隔室模型进行的。我们的初步评估表明,基于二苯并噻吩的PET放射性配体[ 18 F] 10a([ 18 F] DBT-10)具有提供有关该表达的临床相关信息的巨​​大潜力脑中α 7 nAChR的合成和可用性

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