Suppr超能文献

N-(5-氟-2-苯氧基苯基)-N-(2-[(18)F]氟甲氧基-d(2)-5-甲氧基苄基)乙酰胺的合成与评价:一种用于外周苯二氮䓬受体的氘取代放射性配体

Synthesis and evaluation of N-(5-fluoro-2-phenoxyphenyl)-N-(2-[(18)F]fluoromethoxy-d(2)-5-methoxybenzyl)acetamide: a deuterium-substituted radioligand for peripheral benzodiazepine receptor.

作者信息

Zhang Ming-Rong, Maeda Jun, Ito Takehito, Okauchi Takashi, Ogawa Masanao, Noguchi Junko, Suhara Tetsuya, Halldin Christer, Suzuki Kazutoshi

机构信息

Department of Medical Imaging, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.

出版信息

Bioorg Med Chem. 2005 Mar 1;13(5):1811-8. doi: 10.1016/j.bmc.2004.11.058.

Abstract

N-(5-Fluoro-2-phenoxyphenyl)-N-(2-[(18)F]fluoromethoxy-d(2)-5-methoxybenzyl)acetamide ([(18)F]2) is a potent ligand (IC(50): 1.71 nM) for peripheral benzodiazepine receptor (PBR). However, in vivo evaluation on rodents and primates showed that this ligand was unstable and rapidly metabolized to [(18)F]F(-) by defluorination of the [(18)F]fluoromethyl moiety. In this study, we designed a deuterium-substituted analogue, N-(5-fluoro-2-phenoxyphenyl)-N-(2-[(18)F]fluoromethoxy-d(2)-5-methoxybenzyl)acetamide ([(18)F]5) as a radioligand for PBR to reduce the in vivo metabolic rate of the non-deuterated [(18)F]2. The design principle was based on the hypothesis that the deuterium substitution may reduce the rate of defluorination initiated by cleavage of the C-H bond without altering the binding affinity for PBR. The non-radioactive 5 was prepared by reacting diiodomethane-d(2) (CD(2)I(2), 6) with a phenol precursor 7, followed by treatment with tetrabutylammonium fluoride. The ligand [(18)F]5 was synthesized by the alkylation of 7 with [(18)F]fluoromethyl iodide-d(2) ([(18)F]FCD(2)I, [(18)F]9). Compound 5 displayed a similar in vitro affinity to PBR (IC(50): 1.90 nM) with 2. In vivo evaluation demonstrated that [(18)F]5 was metabolized by defluorination to [(18)F]F(-) as a main radioactive component, but its metabolic rate was slower than that of [(18)F]2 in the brain of mice. The deuterium substitution decreased the radioactivity level of [(18)F]5 in the bone of mouse, augmented by the percentage of specific binding to PBR in the rat brain determined by ex vivo autoradiography. However, the PET image of [(18)F]5 for monkey brain showed high radioactivity in the brain and skull, suggesting a possible species difference between rodents and primates.

摘要

N-(5-氟-2-苯氧基苯基)-N-(2-[(18)F]氟甲氧基-d(2)-5-甲氧基苄基)乙酰胺([(18)F]2)是外周苯二氮䓬受体(PBR)的一种强效配体(IC(50):1.71 nM)。然而,对啮齿动物和灵长类动物的体内评估表明,这种配体不稳定,会通过[(18)F]氟甲基部分的脱氟迅速代谢为[(18)F]F(-)。在本研究中,我们设计了一种氘取代类似物,N-(5-氟-2-苯氧基苯基)-N-(2-[(18)F]氟甲氧基-d(2)-5-甲氧基苄基)乙酰胺([(18)F]5)作为PBR的放射性配体,以降低未氘代的[(18)F]2的体内代谢率。设计原则基于这样的假设,即氘取代可能会降低由C-H键断裂引发的脱氟速率,而不会改变对PBR的结合亲和力。非放射性的5是通过使二碘甲烷-d(2)(CD(2)I(2),6)与酚前体7反应,然后用四丁基氟化铵处理来制备的。配体[(18)F]5是通过7与[(18)F]氟甲基碘-d(2)([(18)F]FCD(2)I,[(18)F]9)的烷基化反应合成的。化合物5在体外对PBR的亲和力与2相似(IC(50):1.90 nM)。体内评估表明,[(18)F]5通过脱氟代谢为[(18)F]F(-)作为主要放射性成分,但其代谢率在小鼠脑中比[(18)F]2慢。氘取代降低了[(18)F]5在小鼠骨骼中的放射性水平,通过离体放射自显影测定,增加了[(18)F]5在大鼠脑中与PBR特异性结合的百分比。然而,[(18)F]5对猴脑的PET图像显示脑和颅骨中有高放射性,这表明啮齿动物和灵长类动物之间可能存在种属差异。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验