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从淡紫松果菊中分离并鉴定细胞毒性聚乙炔类化合物和多烯类化合物的结构

Isolation and structure elucidation of cytotoxic polyacetylenes and polyenes from Echinacea pallida.

作者信息

Pellati Federica, Calò Samuele, Benvenuti Stefania, Adinolfi Barbara, Nieri Paola, Melegari Michele

机构信息

Department of Pharmaceutical Sciences, University of Modena and Reggio Emilia, Via G. Campi 183, 41100 Modena, Italy.

出版信息

Phytochemistry. 2006 Jul;67(13):1359-64. doi: 10.1016/j.phytochem.2006.05.006. Epub 2006 Jun 27.

Abstract

Bioassay-guided fractionation of n-hexane extracts of Echinacea pallida (Asteraceae) roots led to the isolation and structure elucidation of two polyacetylenes (1, 3) and three polyenes (2, 4, 5). Two are known hydroxylated compounds, namely 8-hydroxy-pentadeca-(9E)-ene-11,13-diyn-2-one (1) and 8-hydroxy-pentadeca-(9E,13Z)-dien-11-yn-2-one (2). Two dicarbonylic constituents, namely pentadeca-(9E)-ene-11,13-diyne-2,8-dione (3) and pentadeca-(9E,13Z)-dien-11-yne-2,8-dione (4), were isolated and characterized for the first time. Furthermore, the structure elucidation of pentadeca-(8Z,13Z)-dien-11-yn-2-one (5) is described. The structure of the compounds isolated was determined on the basis of UV, IR, NMR (including 1D and 2D NMR experiments, such as 1H-1H gCOSY, gHSQC-DEPT, gHMBC, gNOESY) and MS spectroscopic data. The cytotoxic activity of the isolated constituents against MIA PaCa-2 human pancreatic adenocarcinoma cells was evaluated in the concentration range 1-100 microg/ml. Results show that the hydroxylated compounds (1, 2) have low cytotoxicity, while the more hydrophobic polyacetylenes (3) and polyenes (4, 5) displayed moderate activity.

摘要

对淡紫松果菊(菊科)根的正己烷提取物进行生物测定导向的分级分离,导致两种聚乙炔(1,3)和三种多烯(2,4,5)的分离和结构解析。其中两种是已知的羟基化化合物,即8-羟基-十五碳-(9E)-烯-11,13-二炔-2-酮(1)和8-羟基-十五碳-(9E,13Z)-二烯-11-炔-2-酮(2)。首次分离并表征了两种二羰基成分,即十五碳-(9E)-烯-11,13-二炔-2,8-二酮(3)和十五碳-(9E,13Z)-二烯-11-炔-2,8-二酮(4)。此外,还描述了十五碳-(8Z,13Z)-二烯-11-炔-2-酮(5)的结构解析。所分离化合物的结构基于紫外、红外、核磁共振(包括一维和二维核磁共振实验,如1H-1H gCOSY、gHSQC-DEPT、gHMBC、gNOESY)和质谱光谱数据确定。在1-100微克/毫升的浓度范围内评估了所分离成分对MIA PaCa-2人胰腺腺癌细胞的细胞毒性活性。结果表明,羟基化化合物(1,2)具有低细胞毒性,而疏水性更强的聚乙炔(3)和多烯(4,5)表现出中等活性。

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