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One-Step Synthetic Access to Isosteric and Potent Anticancer Nitrogen Heterocycles with the Benzo[c]phenanthridine Scaffold

机译:与苯并[c]菲啶骨架的一步合成合成等位和有效的抗癌氮杂环。

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摘要

A versatile one-step two-component cyclization to build new tetracyclic nitrogen heterocycles is described. Ortho-methylhetarenecarbonitrile components were condensed with aldehydes to access a large library of differently substituted ring systems. The heterocyclic core can be easily modified by variation of the position of the endocyclic nitrogen atom in the o-methylhetarenecarbonitrile substrate. The manner of the nucleophilic attack that leads to the condensation can be triggered by different electron-density distribution in the molecule induced by the position of the nitrogen atom. Taking this into account, there is an electronic preference that leads to either pyridophenanthrolines or the corresponding pyridoazacarbazoles as the main products. We demonstrate the high antitumor potential of some of our synthesized heterocycles, which is strongly dependent on the substitution pattern introduced through the aldehyde component. The position and number of endocyclic nitrogen atoms play an important role regarding cytotoxicity of the studied compounds.
机译:描述了一种通用的一步式两组分环化反应,可构建新的四环氮杂环。将邻甲基戊烯腈化合物与醛缩合,以进入一个大的不同取代的环系统库。通过改变邻甲基戊烯腈的底物中环内氮原子的位置,可以容易地修饰杂环核。导致缩合的亲核攻击的方式可以由氮原子的位置引起的分子中不同的电子密度分布来触发。考虑到这一点,存在电子偏好,其导致以吡啶并菲咯啉或相应的吡啶并氮杂咔唑为主要产物。我们证明了某些合成杂环具有很高的抗肿瘤潜力,这在很大程度上取决于通过醛组分引入的取代模式。内环氮原子的位置和数量在所研究化合物的细胞毒性方面起着重要作用。

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