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首页> 外文期刊>Chemistry: A European journal >Aromatic Nitrogen Mustard-Based Prodrugs: Activity, Selectivity, and the Mechanism of DNA Cross-Linking
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Aromatic Nitrogen Mustard-Based Prodrugs: Activity, Selectivity, and the Mechanism of DNA Cross-Linking

机译:基于氮芥子气的前药:活性,选择性和DNA交联的机制。

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Three novel H_2O_2-activated aromatic nitrogen mustard prodrugs (6–8) are reported. These compounds contain a DNA alkylating agent connected to a H_2O_2-responsive trigger by different electron-withdrawing linkers so that they are inactive towards DNA but can be triggered by H_2O_2 to release active species. The activity and selectivity of these compounds towards DNA were investigated by measuring DNA interstrand cross-link (ICL) formation in the presence or absence of H_2O_2. An electron-withdrawing linker unit, such as a quaternary ammonia salt (6), a carboxyamide (7), and a carbonate group (8), is sufficient to deactivate the aromatic nitrogen mustard resulting in less than 1.5% cross-linking formation. However, H_2O_2 can restore the activity of the effectors by converting a withdrawing group to a donating group, therefore increasing the cross-linking efficiency(>20%). The stability and reaction sites of the ICL products were determined, which revealed that alkylation induced by 7 and 8 not only occurred at the purine sites but also at the pyrimidine site. For the first time, we isolated and characterized the monomer adducts formed between the canonical nucleosides and the aromatic nitrogen mustard (15) which supported that nitrogen mustards reacted with dG, dA, and dC. The activation mechanism was studied by NMR spectroscopic analysis. An in vitro cytotoxicity assay demonstrated that compound 7 with a carboxyamide linker dramatically inhibited the growth of various cancer cells with a GI50 of less than 1 mm, whereas compound 6 with a charged linker did not show any obvious toxicity in all cell lines tested. These data indicated that a neutral carboxyamide linker is preferable for developing nitrogen mustard prodrugs. Our results showed that 7 is a potent anticancer prodrug that can serve as a model compound for further development. We believe these novel aromatic nitrogen mustards will inspire further and effective applications.
机译:报道了三种新颖的H_2O_2活化的芳香氮芥子气前药(6-8)。这些化合物包含通过不同的吸电子接头与H_2O_2响应的触发器相连的DNA烷基化剂,因此它们对DNA无活性,但可以由H_2O_2触发以释放活性物质。通过在有或没有H_2O_2的条件下测量DNA链间交联(ICL)的形成来研究这些化合物对DNA的活性和选择性。吸电子连接单元,例如季铵盐(6),羧酰胺(7)和碳酸酯基团(8),足以使芳族氮芥芥失活,导致形成的交联少于1.5%。但是,H_2O_2可以通过将撤离基团转变为供体基团来恢复效应子的活性,从而提高了交联效率(> 20%)。确定了ICL产物的稳定性和反应位点,这表明由7和8诱导的烷基化不仅发生在嘌呤位点,而且在嘧啶位点。首次,我们分离并鉴定了在规范核苷和芳香氮芥子(15)之间形成的单体加合物,这支持了氮芥与dG,dA和dC反应。通过NMR光谱分析研究了活化机理。体外细胞毒性试验表明,具有羧酰胺接头的化合物7显着抑制了GI50小于1mm的各种癌细胞的生长,而具有带电接头的化合物6在所有测试的细胞系中均未显示任何明显的毒性。这些数据表明,中性的羧酰胺连接基对于开发氮芥子前药是优选的。我们的结果表明7是有效的抗癌前药,可以用作进一步开发的模型化合物。我们相信这些新颖的芳香氮芥末将激发更多和有效的应用。

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