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合成麦角酸二乙酰胺的策略:通过 α-芳基化、借氢烷基化和 C-H 插入反应合成麦角灵。

Synthetic Strategies toward Lysergic Acid Diethylamide: Ergoline Synthesis via α-Arylation, Borrowing Hydrogen Alkylation, and C-H Insertion.

机构信息

Department of Chemistry, University of California, Davis, Davis, California 95616, United States.

Institute for Psychedelics and Neurotherapeutics, University of California, Davis, Davis, California 95616, United States.

出版信息

J Org Chem. 2023 Oct 6;88(19):13712-13719. doi: 10.1021/acs.joc.3c01363. Epub 2023 Sep 11.

Abstract

Lysergic acid diethylamide (LSD), a semisynthetic ergoline alkaloid analogue and hallucinogen, is a potent psychoplastogen with promising therapeutic potential. While a variety of synthetic strategies for accessing ergoline alkaloids have emerged, the complexity of the tetracyclic ring system results in distinct challenges in preparing analogues with novel substitution patterns. Methods of modulating the hallucinogenic activity of LSD by functionalization at previously inaccessible positions are of continued interest, and efficient syntheses of the ergoline scaffold are integral toward this purpose. Here, we report novel C-C bond forming strategies for preparing the ergoline tetracyclic core, focusing on the relatively unexplored strategy of bridging the B- and D-ring systems last. Following cross-coupling to first join the A- and D-rings, we explored a variety of methods for establishing the C-ring, including intramolecular α-arylation, borrowing hydrogen alkylation, and rhodium-catalyzed C-H insertion. Our results led to a seven-step formal synthesis of LSD and the first methods for readily introducing substitution on the C-ring. These strategies are efficient for forming ergoline-like tetracyclic compounds and analogues, though they each face unique challenges associated with elaboration to ergoline natural products. Taken together, these studies provide important insights that will guide future synthetic strategies toward ergolines.

摘要

麦角酸二乙基酰胺(LSD),一种半合成麦角生物碱类似物和致幻剂,是一种具有潜在治疗作用的强力精神药物。虽然已经出现了多种获得麦角生物碱的合成策略,但四环系统的复杂性导致在制备具有新颖取代模式的类似物时存在明显的挑战。通过在以前无法进入的位置进行官能化来调节 LSD 的致幻活性的方法一直是人们关注的焦点,而麦角灵支架的有效合成是实现这一目标的关键。在这里,我们报告了用于制备麦角灵四环核心的新的 C-C 键形成策略,重点关注最后桥接 B-和 D-环系统的相对未开发的策略。在首次连接 A-和 D-环的交叉偶联之后,我们探索了多种方法来建立 C-环,包括分子内α-芳基化、借氢烷基化和铑催化的 C-H 插入。我们的结果导致了 LSD 的七步正式合成以及在 C-环上易于引入取代基的第一种方法。这些策略对于形成麦角灵样四环化合物和类似物是有效的,但它们都面临着与麦角灵天然产物的精细化相关的独特挑战。总的来说,这些研究提供了重要的见解,将指导未来向麦角灵合成的策略。

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