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新型潜在 DNA 双嵌入剂的合成及细胞毒性:1,4-双{3-[N-(4-氯苯并[g]酞嗪-1-基)氨丙基]}哌嗪。

Synthesis and cytotoxic activity of a new potential DNA bisintercalator: 1,4-Bis{3-[N-(4-chlorobenzo[g]phthalazin-1-yl)aminopropyl]}piperazine.

机构信息

Instituto de Química Médica, Centro de Química Orgánica Manuel Lora-Tamayo, CSIC, c/Juan de la Cierva 3, E-28006 Madrid, Spain.

出版信息

Bioorg Med Chem. 2010 Jul 15;18(14):5301-9. doi: 10.1016/j.bmc.2010.05.053. Epub 2010 May 24.

DOI:10.1016/j.bmc.2010.05.053
PMID:20538470
Abstract

The synthesis of new 1,4-bisalkylamino (2-4) and 1-alkylamino-4-chloro (5-6) substituted benzo[g]phthalazines is reported. Compounds 2-4 and 6 were prepared both in the free and heteroaromatic ring protonated forms. Bifunctional 6 contains the 1,4-bisaminopropylpiperazine chain as a linker between the two heteroaromatic units, whereas 5 is its monofunctional analogue. The in vitro antitumour activity of the synthesized compounds has been tested against human colon, breast and lung carcinoma cells, and also against human glioblastoma cells. Results obtained show that all of them are active in all cases, but bifunctional 6.2HCl is remarkably effective against the four cell lines tested, exhibiting IC50 values in the range of 10(-7) M, similar to those found for doxorubicin. The bifunctional structure of 6.2HCl enhances activity with respect to the monofunctional related compounds 5 and 7, leading to the highest activity among all the compounds tested. Molecular modelling of 6 suggests that those results could be indicative of DNA bisintercalation, which should be specially favoured in the diprotonated form 6.2HCl, a compound suitable for being studied more in depth in further biological tests. Measure of the DNA thermal melting curves show that the linear rise in Tm for bifunctional 6.2HCl is nearly twice than that one obtained for monofunctional 5, and supports the DNA-binding hypothesis.

摘要

本文报道了新的 1,4-双烷基氨基(2-4)和 1-烷基氨基-4-氯(5-6)取代苯并[g]酞嗪的合成。化合物 2-4 和 6 既以游离形式也以杂芳环质子化形式制备。双功能 6 含有 1,4-双氨基丙基哌嗪链作为两个杂芳环单元之间的连接体,而 5 是其单功能类似物。合成化合物的体外抗肿瘤活性已针对人结肠、乳腺和肺癌细胞以及人神经胶质瘤细胞进行了测试。结果表明,所有化合物在所有情况下均具有活性,但双功能 6.2HCl 对四种测试细胞系的活性非常显著,IC50 值在 10(-7) M 范围内,与阿霉素相似。6.2HCl 的双功能结构增强了与单功能相关化合物 5 和 7 的活性,使其成为所有测试化合物中活性最高的化合物。6 的分子建模表明,这些结果可能表明 DNA 双嵌入,这在二质子化形式 6.2HCl 中应特别有利,该化合物适合在进一步的生物学测试中更深入地研究。DNA 热融解曲线的测量表明,双功能 6.2HCl 的 Tm 线性升高几乎是单功能 5 的两倍,支持 DNA 结合假说。

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