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新型抗癌药物1,4-双(2'-氯乙基)-1,4-二氮杂双环-[2.2.1]庚烷二马来酸盐(达比斯马来酸盐)的DNA损伤及DNA结合的序列特异性

DNA damage and sequence specificity of DNA binding of the new anti-cancer agent 1,4-bis(2'-chloroethyl)-1,4-diazabicyclo-[2.2.1] heptane dimaleate (Dabis maleate).

作者信息

Broggini M, Hartley J A, Mattes W B, Ponti M, Kohn K W, D'Incalci M

机构信息

Laboratory of Cancer Chemotherapy, Istituto di Ricerche Farmacologiche Mario Negri, Milan, Italy.

出版信息

Br J Cancer. 1990 Feb;61(2):285-9. doi: 10.1038/bjc.1990.53.

Abstract

The DNA damage and the sequence specificity of guanine-N7 alkylation produced by the novel, positively charged, antineoplastic agent 1,4-bis(2'-chloroethyl)-1,4-diazabicyclo-[2.2.1] heptane dimaleate (Dabis maleate) and its uncharged tertiary amine analogue 1,4-bis(2'-chloroethyl)-1,4-diazacyclohexane (Dabis analogue) were investigated in L1210 cells and isolated DNA. Both compounds are cytotoxic in vitro causing an arrest of L1210 cells in G2/M phase of the cell cycle. In isolated DNA, Dabis maleate alkylates guanine at the N7-position with some differences in specificity compared to other alkylating agents (e.g. nitrogen mustard). Significant differences are also evident between Dabis maleate and Dabis analogue, suggesting that Dabis analogue is not the sole alkylating species of Dabis maleate. Using the alkaline elution technique a moderate number of DNA interstrand cross-links were detected in L1210 cells treated with both compounds, which were completely repaired within 24 h. Dabis maleate and Dabis analogue do not cause DNA single strand breaks or DNA protein cross-links at the doses at which DNA interstrand cross-links were detected.

摘要

研究了新型带正电荷的抗肿瘤药物顺丁烯二酸1,4 - 双(2'-氯乙基)-1,4 - 二氮杂双环-[2.2.1]庚烷(达比斯马来酸盐)及其不带电荷的叔胺类似物1,4 - 双(2'-氯乙基)-1,4 - 二氮杂环己烷(达比斯类似物)在L1210细胞和分离的DNA中产生的DNA损伤及鸟嘌呤-N7烷基化的序列特异性。这两种化合物在体外均具有细胞毒性,可使L1210细胞停滞在细胞周期的G2/M期。在分离的DNA中,达比斯马来酸盐使鸟嘌呤在N7位发生烷基化,与其他烷基化剂(如氮芥)相比,在特异性上存在一些差异。达比斯马来酸盐和达比斯类似物之间也存在明显差异,表明达比斯类似物不是达比斯马来酸盐的唯一烷基化物种。使用碱性洗脱技术,在用这两种化合物处理的L1210细胞中检测到适量的DNA链间交联,这些交联在24小时内完全修复。在检测到DNA链间交联的剂量下,达比斯马来酸盐和达比斯类似物不会导致DNA单链断裂或DNA - 蛋白质交联。

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