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细胞毒性11-烯基茚并异喹啉拓扑异构酶I抑制剂及茚并异喹啉-喜树碱杂合物的设计、合成与生物学评价

Design, synthesis, and biological evaluation of cytotoxic 11-alkenylindenoisoquinoline topoisomerase I inhibitors and indenoisoquinoline-camptothecin hybrids.

作者信息

Fox Brian M, Xiao Xiangshu, Antony Smitha, Kohlhagen Glenda, Pommier Yves, Staker Bart L, Stewart Lance, Cushman Mark

机构信息

Department of Medicinal Chemistry and Molecular Pharmacology, School of Pharmacy and Pharmacal Sciences, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

J Med Chem. 2003 Jul 17;46(15):3275-82. doi: 10.1021/jm0300476.

Abstract

The indenoisoquinolines are a novel class of topoisomerase I (top1) inhibitors that are cytotoxic in cancer cell cultures and are therefore under development as potential anticancer agents. As inhibitors of the DNA religation reaction occurring after DNA cleavage by the enzyme, they are classified as top1 poisons, similar to the camptothecins. Two strategies were employed in order to further develop the structure-activity relationships of the indenoisoquinolines and enhance their therapeutic potential. The first strategy involved the synthesis of indenoisoquinoline-camptothecin hybrid molecules to take advantage of a proposed structural analogy between the indenoisoquinolines and camptothecin. The desired hybrids were synthesized by reaction of halogenated phthalides with a dihydropyrroloquinoline. The second strategy involved the attachment of various alkenyl substituents to the C-11 position of the indenoisoquinolines, which were assumed to project into the DNA minor groove. The required C-11-substituted indenoisoquinolines were synthesized by McMurry reactions of 11-ketoindenoisoquinolines with aldehydes, and the geometries of the resulting alkenes were established by nuclear Overhauser effect difference NMR spectroscopy. All of the new indenoisoquinolines were examined for cytotoxicity in human cancer cell cultures as well as for activity vs top1. Although the indenoisoquinoline-camptothecin hybrid molecules proved to be less cytotoxic and displayed less activity against top1, an analogue incorporating a 3'-aminoalkenyl substituent at the C-11 position of the indenoisoquinoline system was significantly more potent than the prototype indenoisoquinoline in both assays. These results indicate that C-11 aminoalkyl substituents that are assumed to project into the minor groove enhance the cytotoxicity and top1 inhibitory activity of the parent indenoisoquinoline system.

摘要

茚并异喹啉是一类新型的拓扑异构酶I(top1)抑制剂,在癌细胞培养中具有细胞毒性,因此作为潜在的抗癌药物正在研发中。作为该酶切割DNA后发生的DNA重新连接反应的抑制剂,它们被归类为top1毒物,类似于喜树碱。为了进一步研究茚并异喹啉的构效关系并增强其治疗潜力,采用了两种策略。第一种策略是合成茚并异喹啉 - 喜树碱杂合分子,以利用茚并异喹啉和喜树碱之间推测的结构相似性。所需的杂合体通过卤代邻苯二甲酸酯与二氢吡咯并喹啉反应合成。第二种策略是将各种烯基取代基连接到茚并异喹啉的C-11位,假定这些取代基会伸入DNA小沟。所需的C-11取代的茚并异喹啉通过11-酮基茚并异喹啉与醛的麦克默里反应合成,所得烯烃的几何构型通过核Overhauser效应差核磁共振光谱确定。所有新的茚并异喹啉都在人类癌细胞培养中检测了细胞毒性以及对top1的活性。尽管茚并异喹啉 - 喜树碱杂合分子被证明细胞毒性较小且对top1的活性较低,但在茚并异喹啉体系的C-11位引入3'-氨基烯基取代基的类似物在这两种测定中均比原型茚并异喹啉活性显著更高。这些结果表明,假定伸入小沟的C-11氨基烷基取代基增强了母体茚并异喹啉体系的细胞毒性和top1抑制活性。

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