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C1'-支化无环核苷膦酸酯的多种合成方法。

Diverse synthetic approaches towards C1'-branched acyclic nucleoside phosphonates.

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo nám. 2, 160 00 Prague 6, Czech Republic.

出版信息

Org Biomol Chem. 2021 Aug 28;19(32):6958-6963. doi: 10.1039/d1ob00751c. Epub 2021 May 25.

Abstract

Acyclic nucleoside phosphonates (ANPs) represent a significant class of antiviral, anticancer, and antiprotozoal compounds. It is therefore highly desirable to have diverse synthetic routes leading towards these molecules. In the past, many structural modifications were explored, but surprisingly, the field of C1'-branched ANPs has been neglected with only a handful of articles reporting their synthesis. Herein we describe and compare five convenient approaches leading to key synthetic 6-chloropurine ANPs bearing the 9-phosphonomethoxyethyl (PME) moiety branched at the C1' position. These intermediates can be further vastly diversified into target C1'-branched ANPs bearing either natural or unnatural nucleobases. The importance of C1'-branched ANPs is emphasized by their analogy with C1'-substituted cyclic nucleotides (such as remdesivir, a broad-spectrum antiviral agent) and evaluation of their biological activity (e.g. antiviral, antineoplastic, and antiprotozoal) will be a tempting subject of further research.

摘要

无环核苷膦酸酯(ANPs)是一类重要的抗病毒、抗癌和抗原生动物化合物。因此,非常需要有多种合成途径来制备这些分子。过去,人们探索了许多结构修饰,但令人惊讶的是,C1'-支化 ANPs 领域被忽视了,只有少数几篇文章报道了它们的合成。本文描述并比较了五种方便的方法,可用于合成关键的 6-氯嘌呤 ANPs,这些化合物带有 9-膦甲氧乙基(PME)部分在 C1'位置支化。这些中间体可以进一步广泛地多样化为带有天然或非天然碱基的目标 C1'-支化 ANPs。C1'-支化 ANPs 的重要性在于它们与 C1'-取代的环核苷酸(如瑞德西韦,一种广谱抗病毒药物)类似,并且评估它们的生物活性(如抗病毒、抗癌和抗原生动物)将是进一步研究的诱人课题。

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