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Synthesis of 3-fluoro-6-S-(2-S-pyridyl) nucleosides as potential lead cytostatic agents

机译:合成3-氟-6-S-(2-S-吡啶基)核苷作为潜在的细胞增殖抑制剂

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摘要

The 3-deoxy-3-fluoro-6-S-(2-S-pyridyl)-6-thio-β-D-glucopyranosyl nucleoside analogs 7 were prepared via two facile synthetic routes. Their precursors, 3-fluoro-6-thio-glucopyranosyl nucleosides 5a-e, were obtained by the sequence of deacetylation of 3-deoxy-3-fluoro-β-D-glucopyranosyl nucleosides 2a-e, selective tosylation of the primary OH of 3 and finally treatment with potassium thioacetate. The desired thiolpyridine protected analogs 7a-c,f,g were obtained by the sequence of deacetylation of 5a-c followed by thiopyridinylation and/or condensation of the corresponding heterocyclic bases with the newly synthesized peracetylated 6-S-(2-S-pyridyl) sugar precursor 13, which was obtained via a novel synthetic route from glycosyl donor 12. None of the compounds 6 and 7 showed antiviral activity, but the 5-fluorouracil derivative 7c and particularly the uracil derivative 7b were endowed with an interesting and selective cytostatic action against a variety of murine and human tumor cell cultures.
机译:通过两种简便的合成途径制备了3-脱氧-3-氟-6-S-(2-S-吡啶基)-6-硫代-β-D-吡喃葡萄糖基核苷类似物7。它们的前体3-氟-6-硫代吡喃葡萄糖基核苷5a-e是通过对3-deoxy-3-氟-β-D-吡喃葡萄糖基核苷2a-e进行脱乙酰化的顺序,对甲苯磺酸的主要OH进行选择性甲苯磺酸化而获得的3,最后用硫代乙酸钾处理。通过5a-c的脱乙酰化,随后的硫代吡啶基化和/或相应的杂环碱基与新合成的全乙酰化的6-S-(2-S-吡啶基)缩合的序列,获得所需的硫代吡啶保护的类似物7a-c,f,g。 )糖前体13,其是通过新颖的合成方法从糖基供体12获得的。化合物6和7均未显示出抗病毒活性,但是5-氟尿嘧啶衍生物7c,尤其是尿嘧啶衍生物7b具有令人感兴趣的选择性细胞抑制作用对抗多种鼠类和人类肿瘤细胞培养物的作用。

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