Inverse agonist histamine H3 receptor PET tracers labelled with carbon-11 or fluorine-18.

Terence G Hamill, Nagaaki Sato, Makoto Jitsuoka, Shigeru Tokita, Sandra Sanabria, Waisi Eng, Christine Ryan, Stephen Krause, Norihiro Takenaga, Shil Patel, Zhizhen Zeng, David Williams, Cyrille Sur, Richard Hargreaves, H Donald Burns
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引用次数: 39

Abstract

Two histamine H3 receptor (H3R) inverse agonist PET tracers have been synthesized and characterized in preclinical studies. Each tracer has high affinity for the histamine H3 receptor, has suitable lipophilicity, and neither is a substrate for the P-glycoprotein efflux pump. A common phenolic precursor was used to synthesize each tracer with high specific activity and radiochemical purity by an alkylation reaction using either [(11)C]MeI or [(18)F]FCD(2)Br. Autoradiographic studies in rhesus monkey and human brain slices showed that each tracer had a widespread distribution with high binding densities in frontal cortex, globus pallidus and striatum, and lower uptake in cerebellum. The specificity of this expression pattern was demonstrated by the blockade of the autoradiographic signal by either the H3R agonist R-alpha-methylhistamine or a histamine H3R inverse agonist. In vivo PET imaging studies in rhesus monkey showed rapid uptake of each tracer into the brain with the same distribution seen in the autoradiographic studies. Each tracer could be blocked by pretreatment with a histamine H3R inverse agonist giving a good specific signal. Comparison of the in vitro metabolism of each compound showed slower metabolism in human liver microsomes than in rhesus monkey liver microsomes, with each compound having a similar clearance rate in humans. The in vivo metabolism of 1b in rhesus monkey showed that at 60 min, approximately 35% of the circulating counts were due to the parent. These tracers are very promising candidates as clinical PET tracers to both study the histamine H3R system and measure receptor occupancy of H3R therapeutic compounds.

用碳-11或氟-18标记的组胺H3受体PET示踪剂。
两种组胺H3受体(H3R)逆激动剂PET示踪剂已经合成并在临床前研究中进行了表征。两种示踪剂均对组胺H3受体具有高亲和力,具有合适的亲脂性,均不是p -糖蛋白外排泵的底物。用一种常见的酚类前驱体[(11)C]MeI或[(18)F]FCD(2)Br进行烷基化反应,合成了具有高比活性和高放射化学纯度的示踪剂。对恒河猴和人脑切片的放射自显影研究表明,每种示踪剂在额叶皮质、苍白球和纹状体中分布广泛,结合密度高,小脑摄取较低。H3R激动剂r - α -甲基组胺或组胺H3R逆激动剂阻断放射自显像信号,证明了这种表达模式的特异性。恒河猴体内PET成像研究显示,每一种示踪剂都能迅速进入大脑,其分布与放射自显像研究中所见的分布相同。每个示踪剂都可以通过预处理组胺H3R逆激动剂阻断,并提供良好的特异性信号。体外代谢比较表明,人肝微粒体比恒河猴肝微粒体代谢慢,但在人体内的清除率相似。在恒河猴体内代谢表明,在60 min时,大约35%的循环计数来自亲本。这些示踪剂非常有希望作为临床PET示踪剂来研究组胺H3R系统和测量H3R治疗化合物的受体占用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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