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2-氨基和 2-卤代噻唑衍生物的合成作为高亲和力代谢型谷氨酸受体亚型 5 配体和潜在的用于体内成像的放射性配体。

Syntheses of 2-amino and 2-halothiazole derivatives as high-affinity metabotropic glutamate receptor subtype 5 ligands and potential radioligands for in vivo imaging.

机构信息

Molecular Imaging Branch, National Institute of Mental Health, National Institutes of Health, Building 10, Room B3C346A, 10 Center Drive, Bethesda, MD 20892-1003, USA.

出版信息

J Med Chem. 2011 Feb 10;54(3):901-8. doi: 10.1021/jm101430m. Epub 2011 Jan 5.

Abstract

The structure of the potent selective mGlu(5) ligand, SP203 (1, 3-fluoro-5-[[2-(fluoromethyl)thiazol-4-yl]ethynyl]benzonitrile), was modified by replacing the 2-fluoromethyl substituent with an amino or halo substituent and by variation of substituents in the distal aromatic ring to provide a series of new high-affinity mGlu(5) ligands. In this series, among the most potent ligands obtained, the 2-chloro-thiazoles 7a and 7b and the 2-fluorothiazole 10b showed subnanomolar mGlu(5) affinity. 10b also displayed >10000-fold selectivity over all other metabotropic receptor subtypes plus a wide range of other receptors and binding sites. The 2-fluorothiazoles 10a and 10b were labeled using [(18)F]fluoride ion (t(1/2) = 109.7 min) in moderately high radiochemical yield to provide potential radioligands that may resist troublesome radiodefluorination during the imaging of brain mGlu(5) with position emission tomography. The iodo compound 9b has nanomolar affinity for mGlu(5) and may also serve as a lead to a potential (123)I-labeled ligand for imaging brain mGlu(5) with single photon emission computed tomography.

摘要

强效选择性 mGlu(5) 配体 SP203(1,3-氟-5-[[2-(氟甲基)噻唑-4-基]乙炔基]苯甲腈)的结构通过用氨基或卤代取代 2-氟甲基取代基以及变化远端芳环中的取代基进行修饰,提供了一系列新的高亲和力 mGlu(5) 配体。在该系列中,在所获得的最有效配体中,2-氯噻唑 7a 和 7b 和 2-氟噻唑 10b 表现出亚纳摩尔 mGlu(5) 亲和力。10b 还表现出对所有其他代谢型受体亚型以及广泛的其他受体和结合位点的 >10000 倍选择性。使用 [(18)F]氟化物离子(t(1/2) = 109.7 min)在中等高放射化学产率下标记 2-氟噻唑 10a 和 10b,提供了可能的放射性配体,这些配体可能在使用正电子发射断层扫描对脑 mGlu(5) 进行成像时抵抗麻烦的放射脱氟。碘化合物 9b 对 mGlu(5) 具有纳摩尔亲和力,也可能作为潜在的 (123)I 标记配体的先导,用于单光子发射计算机断层扫描对脑 mGlu(5) 进行成像。

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