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手性有机催化合成 SynVesT-1,一种突触密度正电子发射断层成像剂。

Organocatalytic Asymmetric Synthesis of SynVesT-1, a Synaptic Density Positron Emission Tomography Imaging Agent.

机构信息

School of Chemistry, The Joseph Black Building, University of Glasgow, GlasgowG12 8QQ, U.K.

BHF-University Centre for Cardiovascular Science, University of Edinburgh, EdinburghEH16 4TJ, U.K.

出版信息

J Org Chem. 2022 Nov 4;87(21):14443-14451. doi: 10.1021/acs.joc.2c01895. Epub 2022 Oct 12.

Abstract

Heterocyclic nonacetamide ligands are used as positron emission tomography (PET) imaging agents of the synaptic vesicle glycoprotein 2A (SV2A), with potential applications in the diagnosis of various neuropsychiatric diseases. To date, the main synthetic strategy to access these optically active compounds has involved the racemic synthesis of a late-stage intermediate followed by the separation of the enantiomers. Here, we describe the use of iminium organocatalysis for the asymmetric synthesis of SynVesT-1, an important PET imaging agent of SV2A. The key step involved the conjugate addition of nitromethane with a cinnamaldehyde in the presence of the Jørgensen-Hayashi catalyst using the Merck dual acid cocatalyst system. Pinnick-type oxidation and esterification of the adduct was then followed by chemoselective nitro group reduction and cyclization using nickel borate. -Alkylation of the resulting lactam then completed the seven-step synthesis of SynVesT-1. This approach was amenable for the synthesis of an organotin analogue, which following copper(II)-mediated fluoro-destannylation allowed rapid access to [F]SynVesT-1.

摘要

杂环非乙酰胺配体被用作突触小泡糖蛋白 2A(SV2A)的正电子发射断层扫描(PET)成像剂,具有诊断各种神经精神疾病的潜在应用。迄今为止,获得这些光学活性化合物的主要合成策略涉及对映体拆分的后期中间体的外消旋合成。在这里,我们描述了亚胺有机催化在不对称合成 SynVesT-1 中的应用,SynVesT-1 是 SV2A 的一种重要的 PET 成像剂。关键步骤包括在 Jørgensen-Hayashi 催化剂存在下,使用默克双酸共催化剂体系,使硝基甲烷与肉桂醛进行共轭加成。然后对加合物进行 Pinnick 型氧化和酯化,再使用硼酸镍进行选择性硝基还原和环化。然后通过镍硼酸盐进行酰胺的 -烷基化,完成 SynVesT-1 的七步合成。这种方法适用于有机锡类似物的合成,在铜(II)介导的氟代脱锡后,可快速获得 [F]SynVesT-1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b6b/9639009/5b58f7f6f9a5/jo2c01895_0002.jpg

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