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新型重氮丙啶基醌-吖啶共轭物的合成与生物学评价

Synthesis and biological evaluation of novel diaziridinylquinone-acridine conjugates.

作者信息

Di Francesco Angela M, Mayalarp Stephen P, Kim Susan, Butler John, Lee Moses

机构信息

Division of Pediatric Oncology, Catholic University, Rome, Italy.

出版信息

Anticancer Drugs. 2003 Sep;14(8):601-15. doi: 10.1097/00001813-200309000-00005.

Abstract

The synthesis and biological evaluation of a homologous series of conjugates (9-13) of 2,5-diaziridinylbenzoquinone (DZQ) and 9-carbonylacridine, a DNA intercalating moiety, via a polymethylene unit (n=2-6) are described. In addition, the non-acridine compound 14, analogous to compound 12, and the 5-methyl-DZQ derivatized conjugate 15, an analog of compound 10, were also prepared. Through a Comet assay, compounds 9-13 were shown to produce DNA interstrand cross-links at submicromolar concentrations, consistent with K562 leukemia cells accumulating in the G2/M stage in the cell cycle. The cytotoxicity of compounds 9-15 was examined using a MTT assay on several human cancer cell lines, including chronic myeloid leukemia K562, the non-small cell lung cancers H596 and H460, and colon carcinoma cells BE and HT29. H460 and HT29 are rich in DT-diaphorase (DTD), and H596 and BE cells have negligible amounts of functional DTD. Under continuous exposure of drugs, except to the non-aziridine compound 19b, the IC50 values of all other compounds were determined to be in the range of 0.3-11.3 nM. Compound 10, which has a propyl linker group, was subjected to in vivo studies. When BDF1 mice with established mouse mammary carcinoma were treated with compound 10 (2 mg/kg at day 1 and 5 mg/kg at day 7), a significant delay (9-10 days) in cancer growth was recorded when compared to untreated controls. Furthermore, administration of compound 10 to nu/nu BDF1 mice bearing human lung cancer H460 xenograft (1.5 mg/kg for 10 for five consecutive days from day 13 and 17) also showed a significant reduction in tumor growth compared to untreated controls. The half-life of compound 10 in the presence of five different peptidases (porcine esterase, carboxypeptidase A, B and Y, and pepsin) was determined to be between 30 and 60 h.

摘要

本文描述了通过亚甲基单元(n = 2 - 6)合成的一系列2,5 - 二氮杂环丁烷基苯醌(DZQ)与9 - 羰基吖啶(一种DNA嵌入部分)的共轭物(9 - 13)及其生物学评价。此外,还制备了与化合物12类似的非吖啶化合物14以及化合物10的类似物5 - 甲基 - DZQ衍生共轭物15。通过彗星试验表明,化合物9 - 13在亚微摩尔浓度下可产生DNA链间交联,这与K562白血病细胞在细胞周期的G2/M期积累一致。使用MTT试验在几种人类癌细胞系上检测了化合物9 - 15的细胞毒性,这些细胞系包括慢性粒细胞白血病K562、非小细胞肺癌H596和H460以及结肠癌细胞BE和HT29。H460和HT29富含DT - 黄递酶(DTD),而H596和BE细胞中功能性DTD的含量可忽略不计。在持续给药的情况下,除了非氮杂环丁烷化合物19b外,所有其他化合物的IC50值在0.3 - 11.3 nM范围内。对具有丙基连接基团的化合物10进行了体内研究。当用化合物10(第1天2 mg/kg,第7天5 mg/kg)治疗已建立小鼠乳腺癌的BDF1小鼠时,与未治疗的对照组相比,记录到癌症生长显著延迟(9 - 10天)。此外,对携带人肺癌H460异种移植瘤的裸鼠BDF1(从第13天到第17天连续5天每天1.5 mg/kg)给药化合物10,与未治疗的对照组相比,肿瘤生长也显著减少。测定了化合物10在五种不同肽酶(猪酯酶、羧肽酶A、B和Y以及胃蛋白酶)存在下的半衰期在30至60小时之间。

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