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通过(1-脱氮)嘌呤环的高效C-2硝化反应制备新型(1-脱氮)嘌呤衍生物。

New (1-deaza)purine derivatives via efficient C-2 nitration of the (1-deaza)purine ring.

作者信息

Wanner M J, Rodenko B, Koch M, Koomen G J

机构信息

Bioorganic Chemistry, Institute of Molecular Chemistry, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2004 Oct;23(8-9):1313-20. doi: 10.1081/NCN-200027566.

Abstract

Nitration of substituted (1-deaza)purines using a mixture of tetrabutylammonium nitrate (TBAN) and trifluoracetic acid anhydride (TFAA) was applied to prepare nitrosubstituted (1-deaza)purines at low temperature. The nitro group influences the system twofold: 1) it activates other substituents towards nucleophilic aromatic substitution and 2) it can be substituted itself leading to a variety of di-substituted (1-deaza)purines, also via solid phase syntheses. Several of the molecules obtained were studied for their antiprotozoal activity and for interactions with the different human adenosine receptors.

摘要

使用硝酸四丁铵(TBAN)和三氟乙酸酐(TFAA)的混合物对取代的(1-脱氮)嘌呤进行硝化,用于在低温下制备亚硝基取代的(1-脱氮)嘌呤。硝基对该体系有双重影响:1)它使其他取代基对亲核芳香取代反应更具活性;2)它自身也可被取代,从而通过固相合成法得到多种二取代的(1-脱氮)嘌呤。对所得到的几种分子进行了抗原生动物活性以及与不同人类腺苷受体相互作用的研究。

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