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5-氮杂胞嘧啶阿拉伯糖苷的合成与抗肿瘤活性

Synthesis and antitumor activity of 5-azacytosine arabinoside.

作者信息

Beisler J A, Abbasi M M, Driscoll J S

出版信息

J Med Chem. 1979 Oct;22(10):1230-4. doi: 10.1021/jm00196a015.

Abstract

5-Azacytosine arabinoside (ara-AC) can be considered a combination of structural elements derived from the antitumor nucleosides cytosine arabinoside (ara-C) and 5-azacytidine (5-AC). The synthesis of ara-AC, for which standard methods were inadequate, was accomplished using the stable dihydro derivative as a synthetic intermediate. A novel dehydrogenation of the latter through the application of a trimethylsilylation-oxidation procedure gave ara-AC in good yield. Using murine L1210 leukemia as a test system, ara-AC was evaluated for antitumor properties in parallel determinations with 5-AC and ara-C. Although higher dose levels were necessary, ara-AC demonstrated a reproducibly greater efficacy in the L1210 system (% ILS = 144-148) than that shown by 5-AC (% ILS = 126-124) or ara-C (% ILS=127-121 ). Moreover, initial data suggest that ara-AC exhibits less host toxicity than either 5-AC or ARA-C. Although ara-AC can equally be considered an analogue of either 5-AC or ara-C, preliminary results indicate that ara-AC is chemically similar to 5-AC but biologically more closely related to ara-C.

摘要

5-氮杂胞苷阿拉伯糖苷(ara-AC)可被视为源自抗肿瘤核苷阿糖胞苷(ara-C)和5-氮杂胞苷(5-AC)的结构元素的组合。由于标准方法不足以合成ara-AC,因此使用稳定的二氢衍生物作为合成中间体完成了其合成。通过应用三甲基硅烷化-氧化程序对后者进行的新型脱氢反应以良好的产率得到了ara-AC。以小鼠L1210白血病作为测试系统,将ara-AC与5-AC和ara-C进行平行测定以评估其抗肿瘤特性。尽管需要更高的剂量水平,但ara-AC在L1210系统中(%ILS = 144-148)显示出比5-AC(%ILS = 126-124)或ara-C(%ILS = 127-121)可重复的更高疗效。此外,初步数据表明ara-AC表现出比5-AC或ARA-C更低的宿主毒性。尽管ara-AC同样可被视为5-AC或ara-C的类似物,但初步结果表明ara-AC在化学上与5-AC相似,但在生物学上与ara-C更密切相关。

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