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通过手性环状磺酰胺前体的开环亲核 C-氰化反应合成 l-[4- C]天门冬酰胺。

Synthesis of l-[4- C]Asparagine by Ring-Opening Nucleophilic C-Cyanation Reaction of a Chiral Cyclic Sulfamidate Precursor.

机构信息

Biological, Environmental and Climate Sciences Department, Brookhaven National Laboratory, Upton, NY, 11973, USA.

Institut für Kernchemie, Johannes Gutenberg-Universität, 55128, Mainz, Germany.

出版信息

Chemistry. 2018 May 7;24(26):6848-6853. doi: 10.1002/chem.201801029. Epub 2018 Apr 19.

DOI:10.1002/chem.201801029
PMID:29504637
Abstract

The development of a convenient and rapid method to synthesize radiolabeled, enantiomerically pure amino acids (AAs) as potential positron emission tomography (PET) imaging agents for mapping various biochemical transformations in living organisms remains a challenge. This is especially true for the synthesis of carbon-11-labeled AAs given the short half-life of carbon-11 ( C, t =20.4 min). A facile synthetic pathway to prepare enantiomerically pure C-labeled l-asparagine was developed using a partially protected serine as a starting material with a four-step transformation providing a chiral five-membered cyclic sulfamidate as the radiolabeling precursor. Its structure and absolute configuration were confirmed by X-ray crystallography. Utilizing a [ C]cyanide nucleophilic ring opening reaction followed by selective acidic hydrolysis and deprotection, enantiomerically pure l-[4- C]asparagine was synthesized. Further optimization of reaction parameters, including base, metal ion source, solvent, acid component, reaction temperature and reaction time, a reliable two-step method for synthesizing l-[4- C]asparagine was presented: within a 45±3 min (n=5, from end-of-bombardment), the desired enantiomerically pure product was synthesized with the initial nucleophilic cyanation yield of 69±4 % (n=5) and overall two-step radiochemical yield of 53±2 % (n=5) based on starting [ C]HCN, and with radiochemical purity of 96±2 % (n=5).

摘要

开发一种方便、快速的方法来合成放射性标记的、对映纯的氨基酸 (AAs),作为潜在的正电子发射断层扫描 (PET) 成像剂,用于绘制活生物体中各种生化转化,仍然是一个挑战。对于合成碳-11 标记的 AAs 来说,这尤其如此,因为碳-11 的半衰期很短( C , t =20.4 min)。使用部分保护的丝氨酸作为起始原料,开发了一种简便的合成途径,通过四步转化制备对映纯的 C 标记 l-天冬酰胺,提供手性五元环磺酰胺作为放射性标记前体。其结构和绝对构型通过 X 射线晶体学得到证实。利用 [ C]氰化物亲核开环反应,然后进行选择性酸性水解和脱保护,合成了对映纯的 l-[4- C]天冬酰胺。通过进一步优化反应参数,包括碱、金属离子源、溶剂、酸成分、反应温度和反应时间,提出了一种可靠的两步法合成 l-[4- C]天冬酰胺:在 45±3 min 内(n=5,从结束照射开始),以 69±4 %(n=5)的初始亲核氰化收率和 53±2 %(n=5)的两步总放射化学收率(基于起始 [ C]HCN),并具有 96±2 %(n=5)的放射化学纯度,合成了所需的对映纯产物。

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