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微波辅助铜介导嘧啶核苷的三氟甲基化反应。

Microwave Assisted Cu-Mediated Trifluoromethylation of Pyrimidine Nucleosides.

机构信息

Bioorganic Laboratory, Department of Chemistry, University of Delhi, Delhi, India.

Rasayan Inc., Encinitas, California.

出版信息

Curr Protoc. 2021 Dec;1(12):e328. doi: 10.1002/cpz1.328.

Abstract

Trifluoromethylated nucleosides, such as trifluridine, have widespread applications in pharmaceuticals as anticancer and antiviral agents. However, site-selective addition of a trifluoromethyl group onto a nucleobase typically requires either inconvenient multi-step synthesis or expensive trifluoromethylation reagents, or results in low yield. This article describes a simple, scalable, and high-yielding protocol for late-stage direct trifluoromethylation of pyrimidine nucleosides via a microwave-irradiated pathway. First, 5-iodo pyrimidine nucleosides undergo complete benzoylation to obtain N -benzoyl-3',5'-di-O-benzoyl-5-iodo-pyrimidine nucleosides as key precursors. Next, trifluoromethylation is carried out under both conventional and microwave heating using an inexpensive and commercially accessible Chen's reagent, i.e., methyl fluorosulfonyldifluoroacetate, to produce N -benzoyl-3',5'-di-Obenzoyl-5-trifluoromethyl-pyrimidine nucleosides. The microwave-assisted transformation accentuates its simplicity, mild reaction conditions, and dominance, providing a facile route to access trifluoromethylation. Finally, the envisioned 5-trifluoromethyl pyrimidine nucleosides are obtained by a routine debenzoylation procedure. This concludes a convenient three-step synthesis to obtain trifluridine and its 2'-modified analogs on a gram scale with consistently high yields, starting from their respective iodo-precursors, and requires only one chromatographic purification at the trifluoromethylation step. Furthermore, this operationally simple protocol can be utilized as a definitive methodology to produce various other trifluoromethylated therapeutics. © 2021 Wiley Periodicals LLC. Basic Protocol: Synthesis of 5-trifluoromethyl pyrimidine nucleosides 4a-c Alternate Protocol: Conventional trifluoromethylation: Synthesis of N3-benzoyl-3',5'-di-O-benzoyl-5-trifluoromethyl pyrimidine nucleosides (3a-c).

摘要

三氟甲基化核苷,如三氟尿苷,在医药领域作为抗癌和抗病毒药物有广泛的应用。然而,核苷碱基上的三氟甲基基团的选择性加成通常需要不方便的多步合成或昂贵的三氟甲基化试剂,或者导致产率低。本文描述了一种通过微波辐射途径对嘧啶核苷进行后期直接三氟甲基化的简单、可扩展和高产率的方案。首先,5-碘嘧啶核苷完全进行苯甲酰化,以获得 N-苯甲酰基-3',5'-二-O-苯甲酰基-5-碘嘧啶核苷作为关键前体。接下来,使用廉价且市售的 Chen 试剂,即甲基氟磺酰基二氟乙酸酯,在常规和微波加热下进行三氟甲基化,以生成 N-苯甲酰基-3',5'-二-O-苯甲酰基-5-三氟甲基嘧啶核苷。微波辅助转化强调了其简单性、温和的反应条件和优势,提供了一种简便的途径来进行三氟甲基化。最后,通过常规脱苯甲酰基程序获得预期的 5-三氟甲基嘧啶核苷。这完成了一个方便的三步合成,从各自的碘前体开始,以克为规模获得三氟尿苷及其 2'-修饰类似物,始终以高收率获得,并且仅在三氟甲基化步骤需要一次色谱纯化。此外,这种操作简单的方案可以用作产生各种其他三氟甲基化治疗剂的明确方法。

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