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用于高效后期应用的可切换且具有化学选择性的芳烃氢化反应。

Switchable and Chemoselective Arene Hydrogenation for Efficient Late Stage Applications.

作者信息

Zhang Fuhao, Sasmal Himadri Sekhar, Rana Debanjan, Glorius Frank

机构信息

Organisch-Chemisches Institut, Universität Münster, Corrensstraße 36, 48149 Münster, Germany.

出版信息

J Am Chem Soc. 2024 Jul 10;146(27):18682-18688. doi: 10.1021/jacs.4c05883. Epub 2024 Jun 27.

Abstract

The incorporation of three-dimensional structures into drug molecules has demonstrated significant improvements in clinical success. Late-stage saturation of drug molecules provides a direct pathway for this transformation. However, achieving selective and controllable reduction of aromatic rings remains challenging, particularly when multiple aromatic rings coexist. Herein, we present the switchable and chemoselective hydrogenation of benzene and pyridine rings. The utility of the protocol has been comprehensively investigated in diversified substrates with the assistance of a fragment-screening technique. This approach provides convenient access to a diverse array of cyclohexane and piperidine compounds, prevalent in various bioactive molecules and drugs. Furthermore, it discloses promising avenues for applications in the late-stage switchable saturation of drugs, facilitating an increase in the fraction of sp-carbons which holds the potential to enhance the medicinal properties of drugs.

摘要

将三维结构引入药物分子已在临床成功率方面显示出显著提高。药物分子的后期饱和为这种转变提供了直接途径。然而,实现芳环的选择性和可控还原仍然具有挑战性,特别是当多个芳环共存时。在此,我们展示了苯环和吡啶环的可切换和化学选择性氢化。在片段筛选技术的辅助下,该方案的实用性已在多种底物中得到全面研究。这种方法为获得各种环己烷和哌啶化合物提供了便利途径,这些化合物在各种生物活性分子和药物中普遍存在。此外,它还揭示了在药物后期可切换饱和中的应用前景,有助于增加sp碳的比例,这有可能增强药物的药用特性。

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