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从 Alkanna cappadocica(垂序商陆)中提取的细胞毒性萘醌类化合物。

Cytotoxic naphthoquinones from Alkanna cappadocica ( perpendicular).

机构信息

Department of Bioengineering, Faculty of Engineering, Ege University, 35100 Bornova-Izmir, Turkey.

出版信息

J Nat Prod. 2010 May 28;73(5):860-4. doi: 10.1021/np900778j.

Abstract

In a continuing program to discover new anticancer agents from plants, especially naphthoquinones from the Alkanna genus, Alkanna cappadocica was investigated. Bioassay-guided fractionation of a dichloromethane/methanol (1:1) extract of the roots led to the isolation of four new and four known naphthoquinones. The known compounds are 11-deoxyalkannin (1), beta,beta-dimethylacrylalkannin (2), 11-O-acetylalkannin (3), and alkannin (4). The new compounds 5-O-methyl-11-deoxyalkannin (5), 8-O-methyl-11-deoxyalkannin (6), 5-O-methyl-11-O-acetylalkannin (7), and 5-O-methyl-beta,beta-dimethylacrylalkannin (8) were characterized by spectroscopic analyses (LC-ESIMS, 1D and 2D NMR). Cytotoxicity of the isolated compounds was evaluated versus 12 human cancer cell lines, HT-29, MDA-MB-231, PC-3, AU565, Hep G2, LNCaP, MCF7, HeLa, SK-BR-3, DU 145, Saos-2, and Hep 3B together with two normal cell lines, VERO and 3T3, by using the MTT assay. Compound 7 showed remarkable cytotoxicity with IC(50) values between 0.09 and 14.07 muM. It was more potent than the other compounds in six out of 12 cancer cell lines and the positive controls doxorubicin and etoposide. The mono-O-methylated alkannin derivatives and their cytotoxicities are reported for the first time.

摘要

在从植物中发现新的抗癌剂,特别是来自醉茄属的萘醌的持续研究计划中,研究了醉茄。对根的二氯甲烷/甲醇(1:1)提取物进行生物测定指导的分段,导致分离出四个新的和四个已知的萘醌。已知化合物为 11-脱氧醉茄素(1),β,β-二甲基丙烯酰基醉茄素(2),11-O-乙酰基醉茄素(3)和醉茄素(4)。新化合物 5-O-甲基-11-脱氧醉茄素(5),8-O-甲基-11-脱氧醉茄素(6),5-O-甲基-11-O-乙酰基醉茄素(7)和 5-O-甲基-β,β-二甲基丙烯酰基醉茄素(8)通过光谱分析(LC-ESIMS,1D 和 2D NMR)进行了表征。用 MTT 测定法评估了分离化合物对 12 个人类癌细胞系 HT-29、MDA-MB-231、PC-3、AU565、Hep G2、LNCaP、MCF7、HeLa、SK-BR-3、DU 145、Saos-2 和 Hep 3B 以及两个正常细胞系 VERO 和 3T3 的细胞毒性。化合物 7 表现出显著的细胞毒性,IC 50 值在 0.09 和 14.07 μM 之间。它在 12 个癌细胞系中的 6 个和阳性对照阿霉素和依托泊苷中比其他化合物更有效。单-O-甲基化的醉茄素衍生物及其细胞毒性为首次报道。

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