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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis, cytotoxicity, DNA interaction and topoisomerase II inhibition properties of tetrahydropyrrolo(3,4-a)carbazole-1,3-dione and tetrahydropyrido-(3,2-b)pyrrolo(3,4-g)indole-1,3-dione derivatives.
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Synthesis, cytotoxicity, DNA interaction and topoisomerase II inhibition properties of tetrahydropyrrolo(3,4-a)carbazole-1,3-dione and tetrahydropyrido-(3,2-b)pyrrolo(3,4-g)indole-1,3-dione derivatives.

机译:四氢吡咯并(3,4-a)咔唑-1,3-二酮和四氢吡啶并-(3,2-b)吡咯并(3,4-g)吲哚-1,3的合成,细胞毒性,DNA相互作用和拓扑异构酶II抑制特性-二酮衍生物。

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摘要

Three tetrahydropyrrolo[3,4-a]carbazole-1,3-diones (6--8) and two tetrahydropyrido[3,2-b]pyrrolo[3,4-g]indole-1,3-diones (11--12) have been synthesized. Their interaction with DNA was probed by absorption and thermal melting studies. Compounds 8 and 12 both equipped with a hydroxyethyl-aminoethyl side-chain demonstrated higher affinities for poly(dA-dT)(2) than compounds 6, 7 and 11 bearing a dimethylaminoethyl side-chain. Circular and electric linear dichroism measurements showed that all five drugs behave as typical DNA intercalating agents. A plasmid cleavage assay was used to evaluate the capacity of the drugs to inhibit human topoisomerase II. Compounds 8 and 12 which bind strongly to DNA were found to stabilize DNA-topoisomerase II covalent complexes but their topoisomerase II inhibitory properties do not correlate with their cytotoxic potential. Compounds 6 and 7 are essentially inactive whereas compounds 8, 11 and 12 exhibit a high toxicity to P388 murine leukemia cells and provoke a marked accumulation in the G2/M phase of the cell cycle. These compounds form a new class of DNA-targeted antitumor agents.
机译:三个三氢吡咯并[3,4-a]咔唑-1,3-二酮(6--8)和两个四氢吡咯并[3,2-b]吡咯并[3,4-g]吲哚-1,3-二酮(11- -12)已合成。通过吸收和热熔研究研究了它们与DNA的相互作用。均具有羟乙基-氨基乙基侧链的化合物8和12对聚(dA-dT)(2)的亲和力比具有二甲基氨基乙基侧链的化合物6、7和11更高。圆形和电动线性二色性测量表明,所有五种药物的行为均与典型的DNA嵌入剂相同。使用质粒切割测定法评估药物抑制人拓扑异构酶II的能力。发现与DNA牢固结合的化合物8和12可稳定DNA-拓扑异构酶II共价复合物,但它们的拓扑异构酶II抑制特性与其细胞毒性潜力无关。化合物6和7基本上是无活性的,而化合物8、11和12对P388鼠白血病细胞表现出高毒性,并在细胞周期的G2 / M期引起明显的积累。这些化合物形成了一类新的靶向DNA的抗肿瘤药物。

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