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各种6-去甲基丝裂霉素和6-去甲基-6-卤代丝裂霉素的合成及其抗肿瘤活性

Synthesis and antitumor activity of various 6-demethylmitomycins and 6-demethyl-6-halomitomycins.

作者信息

Arai H, Ashizawa T, Gomi K, Kono M, Saito H, Kasai M

机构信息

Pharmaceutical Research Laboratories, Kyowa Hakko Kogyo Company, Ltd., Shizuoka, Japan.

出版信息

J Med Chem. 1995 Aug 4;38(16):3025-33. doi: 10.1021/jm00016a005.

Abstract

A series of 6-demethylmitomycins and 6-demethyl-6-halomitomycins having various mitomycin skeletons were synthesized, taking into account the electronic effect toward the quinone moiety and the partition coefficients. Treatment of enones 15 and 16 with selenenamide or N-halosuccinimide-Et2NH afforded the 6-demethyl intermediates 17, 18, and 21-24 via the tandem Michael addition/retro-Mannich reaction sequence. Subsequent conversions into the mitomycin skeletons resulted in the formation of the desired derivatives 7a-c, 8a-c, 11a-c, and 12a,b. These mitomycin derivatives including 3a-c and 4a-c were evaluated for their anticellular activity against HeLa S3 cells and antitumor activity against Sarcoma 180 in mice. The anticellular activity of 1 and 3a-c depends on the substituent at the C-6 position and the order of increasing activity is H < CH3 < Br < Cl. A similar tendency was observed in their antitumor potency (ED50). The activities of 9 and 11a-c also follow a pattern similar to that of 1 and 3a-c. Compounds 4b,c, 8b,c, and 12b having both a halogen at the C-6 position and a methoxy group at the C-7 position did not show the activities because of the instability of the compounds. Interestingly, a correlation between the anticellular activity (IC50) and the partition coefficients (log kappa') determined by HPLC was observed within the compounds studied except the unstable compounds, while their antitumor activity (ED50 or T/C) did not correlate with the quinone reduction potential (E1/2). These results would indicate the importance of the C-6 substituents and the mitomycin skeletons for exhibiting both anticellular and antitumor activities.

摘要

考虑到对醌部分的电子效应和分配系数,合成了一系列具有各种丝裂霉素骨架的6-去甲基丝裂霉素和6-去甲基-6-卤代丝裂霉素。用硒代酰胺或N-卤代琥珀酰亚胺-Et2NH处理烯酮15和16,通过串联迈克尔加成/逆曼尼希反应序列得到6-去甲基中间体17、18和21-24。随后转化为丝裂霉素骨架导致形成所需的衍生物7a-c、8a-c、11a-c和12a,b。对包括3a-c和4a-c在内的这些丝裂霉素衍生物进行了抗HeLa S3细胞活性和对小鼠肉瘤180的抗肿瘤活性评估。1和3a-c的抗细胞活性取决于C-6位的取代基,活性增加的顺序为H < CH3 < Br < Cl。在它们的抗肿瘤效力(ED50)中也观察到类似的趋势。9和11a-c的活性也遵循与1和3a-c类似的模式。在C-6位具有卤素且在C-7位具有甲氧基的化合物4b,c、8b,c和12b由于化合物的不稳定性而未显示出活性。有趣的是,在所研究的化合物(不稳定化合物除外)中观察到抗细胞活性(IC50)与通过HPLC测定的分配系数(log kappa')之间的相关性,而它们的抗肿瘤活性(ED50或T/C)与醌还原电位(E1/2)不相关。这些结果表明C-6取代基和丝裂霉素骨架对于表现出抗细胞和抗肿瘤活性的重要性。

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