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6-氯异喹啉-5,8-二酮和吡啶并[3,4-b]吩嗪-5,12-二酮的合成及其细胞毒性和DNA拓扑异构酶II抑制活性的评价。

Synthesis of 6-chloroisoquinoline-5,8-diones and pyrido[3,4-b]phenazine-5,12-diones and evaluation of their cytotoxicity and DNA topoisomerase II inhibitory activity.

作者信息

Kim Jin Sung, Rhee Hee-Kyung, Park Hyen Joo, Lee In-Kyoung, Lee Sang Kook, Suh Myung-Eun, Lee Hwa Jeong, Ryu Chung-Kyu, Choo Hea-Young Park

机构信息

School of Pharmacy, Ewha Womans University, Seoul 120-750, South Korea.

出版信息

Bioorg Med Chem. 2007 Jan 1;15(1):451-7. doi: 10.1016/j.bmc.2006.09.040. Epub 2006 Oct 10.

Abstract

The substituted chloroisoquinolinediones and pyrido[3,4-b]phenazinediones were synthesized, and the cytotoxic activity and topoisomerase II inhibitory activity of the prepared compounds were evaluated. Chloroisoquinolinediones have been prepared by the reported method employing 6,7-dichloroisoquinoline-5,8-dione. The cyclization to pyrido[3,4-b]phenazinediones was achieved by adding the aqueous sodium azide solution to the dimethylformamide solution of corresponding chloroisoquinoline-5,8-dione. The cytotoxicity of the synthesized compounds was evaluated by a SRB (Sulforhodamine B) assay against various cancer cell lines such as A549 (human lung cancer cell line), SNU-638 (human stomach cancer cell), Col2 (human colon cancer cell line), HT1080 (human fibrosarcoma cell line), and HL-60 (human leukemia cell line). Almost all the synthesized pyrido[3,4-b]phenazinediones showed greater cytotoxic potential than ellipticine (IC(50)=1.82-5.97 microM). In general, the cytotoxicity of the pyrido[3,4-b]phenazinediones was higher than that of the corresponding chloroisoquinolinediones. The caco-2 cell permeability of selected compounds was 0.62 x 10(-6)-35.3 x 10(-6)cm/s. The difference in cytotoxic activity among tested compounds was correlated with the difference in permeability to some degree. To further investigate the cytotoxic mechanism, the topoisomerase II inhibitory activity of the synthesized compounds was estimated by a plasmid cleavage assay. Most of compounds showed the topoisomerase II inhibitory activity (28-100%) at 200 microM. IC(50) values for the most active compound 6a were 0.082 microM. However, the compounds were inactive for DNA relaxation by topoisomerase I at 200 microM.

摘要

合成了取代的氯异喹啉二酮和吡啶并[3,4 - b]菲啶二酮,并对所制备化合物的细胞毒性活性和拓扑异构酶II抑制活性进行了评估。氯异喹啉二酮已通过使用6,7 - 二氯异喹啉 - 5,8 - 二酮的报道方法制备。通过将叠氮化钠水溶液加入相应氯异喹啉 - 5,8 - 二酮的二甲基甲酰胺溶液中实现向吡啶并[3,4 - b]菲啶二酮的环化。通过SRB(磺酰罗丹明B)测定法针对各种癌细胞系评估合成化合物的细胞毒性,这些癌细胞系如A549(人肺癌细胞系)、SNU - 638(人胃癌细胞)、Col2(人结肠癌细胞系)、HT1080(人纤维肉瘤细胞系)和HL - 60(人白血病细胞系)。几乎所有合成的吡啶并[3,4 - b]菲啶二酮都显示出比椭圆玫瑰树碱(IC(50)=1.82 - 5.97 microM)更高的细胞毒性潜力。一般来说,吡啶并[3,4 - b]菲啶二酮的细胞毒性高于相应的氯异喹啉二酮。所选化合物的caco - 2细胞渗透率为0.62×10(-6) - 35.3×10(-6)cm/s。测试化合物之间细胞毒性活性的差异在一定程度上与渗透率的差异相关。为了进一步研究细胞毒性机制,通过质粒切割测定法估计合成化合物的拓扑异构酶II抑制活性。大多数化合物在200 microM时显示出拓扑异构酶II抑制活性(28 - 100%)。最具活性的化合物6a的IC(50)值为0.082 microM。然而,这些化合物在200 microM时对拓扑异构酶I介导的DNA松弛无活性。

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