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无金属条件下的光解联反应合成药物中重要的联芳烃

Metal-Free Synthesis of Pharmaceutically Important Biaryls by Photosplicing.

机构信息

Department of Biomolecular Chemistry, Leibniz Institute for Natural Product Research and Infection Biology, HKI, Beutenbergstrasse 11a, 07745, Jena, Germany.

Transfer Group Antiinfectives, Leibniz Institute for Natural Product Research and Infection Biology (HKI), 07745, Jena, Germany.

出版信息

Angew Chem Int Ed Engl. 2018 Oct 26;57(44):14476-14481. doi: 10.1002/anie.201805961. Epub 2018 Aug 16.

Abstract

Many pharmaceuticals feature biaryl motifs that are crucial for their binding to the target. Yet, benchmark methods for selective cross-couplings rely on highly toxic heavy metal catalysts, which are unfavorable in the synthesis of pharmaceuticals. Metal-free coupling reactions, on the other hand, may require harsh conditions and lack selectivity. We report a novel, metal-free cross-coupling reaction that involves the tethering of two phenyl groups by a temporary, traceless sulfonamide linker that directs a photochemical aryl fusion into a single coupling product. The perfect regio- and chemoselectivity of the reaction could be rationalized by a cyclic intermediate, which fragments into the biaryl and volatile side products. Using a flow reactor, we synthesized numerous substituted biaryl building blocks for important therapeutics in high yields, such as antibiotics, antitumor, neuroprotective and cholesterol-lowering agents as well as antiarthritic non-steroidal antiinflammatory drugs (NSAIDs). The new method was successfully employed in a total synthesis of cannabinol, an important analgesic and antiemetic therapeutic. We also report a metal-free synthesis of key building blocks used for the preparation of sartans, antihypertensive agents that rank among the top blockbuster drugs worldwide. This safe and convenient protocol is a valuable alternative for the widely used metal-dependent aryl cross-coupling methods.

摘要

许多药物都具有双芳基基序,这对于它们与靶标的结合至关重要。然而,用于选择性交叉偶联的基准方法依赖于剧毒重金属催化剂,这在药物合成中是不利的。另一方面,无金属偶联反应可能需要苛刻的条件并且缺乏选择性。我们报告了一种新颖的无金属交叉偶联反应,涉及通过临时无痕迹磺酰胺连接体将两个苯基基团连接起来,该连接体将光化学芳基融合导向单个偶联产物。反应的完美区域和化学选择性可以通过环状中间体来合理化,该中间体会分解成双芳基和挥发性副产物。使用流动反应器,我们以高产率合成了许多用于重要治疗的取代的双芳基构建块,例如抗生素、抗肿瘤、神经保护和降胆固醇药物以及抗关节炎非甾体抗炎药 (NSAIDs)。该新方法成功地用于大麻醇的全合成,大麻醇是一种重要的镇痛药和止吐药治疗剂。我们还报告了一种用于制备沙坦的关键构建块的无金属合成方法,沙坦是全球排名前几的重磅炸弹药物之一。这种安全方便的方案是广泛使用的依赖金属的芳基交叉偶联方法的有价值的替代方法。

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