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黄花棘豆的植物化学成分分析及其细胞凋亡活性

Phytochemical profile and apoptotic activity of Onopordum cynarocephalum.

机构信息

Department of Chemistry of Natural Products, University of Naples Federico II, Naples, Italy.

出版信息

Planta Med. 2012 Oct;78(15):1651-60. doi: 10.1055/s-0032-1315259. Epub 2012 Sep 10.

Abstract

A phytochemical investigation of acetone and chloroform extracts of the aerial parts of Onopordum cynarocephalum Boiss. et Blanche was carried out. It led to the isolation of two new sesquiterpenes, the elemane aldehyde (2) and the eudesmane (11), together with 15 known compounds: two lignans (1 and 15) and 13 sesquiterpenes (3-10, 12-14, 16, 17). The structures were elucidated by spectroscopic analyses, especially 1D and 2D NMR spectra. The anti-growth effect against three human melanoma cell lines, M14, A375, and A2058, of the different extracts and compounds of O. cynarocephalum was also investigated. Among them, the chloroform extract exhibited the strongest biological activity, while the most active compounds were the lignan arctigenin (1), and the sesquiterpenes, compounds 3, 5, and 6 belonging to the elemane type, and 7 belonging to the eudesmane type. Our data also demonstrate that acetone and chloroform extracts induce, in the A375 cell line, apoptotic cell death that could be related to an overall action of the compounds present, but in particular to the lignans arctigenin (1) and the sesquiterpenes compounds 3-8 and 16. In fact, these molecules were able to induce a high DNA fragmentation, correlated to a significant increase of the caspase-3 enzyme activity. Furthermore, apoptosis appears to be mediated, at least in part, via PTEN activity and the inhibition of Hsp70 expression.

摘要

对黄花苦荬草(Onopordum cynarocephalum Boiss. et Blanche)地上部分的丙酮和氯仿提取物进行了植物化学研究。从中分离得到了两种新的倍半萜烯,即 elemane 醛(2)和 eudesmane(11),以及 15 种已知化合物:两种木脂素(1 和 15)和 13 种倍半萜烯(3-10、12-14、16、17)。结构通过光谱分析,特别是 1D 和 2D NMR 光谱阐明。还研究了不同提取物和黄花苦荬草化合物对三种人黑色素瘤细胞系 M14、A375 和 A2058 的生长抑制作用。其中,氯仿提取物表现出最强的生物活性,而最活跃的化合物是木脂素 arctigenin(1),以及倍半萜烯化合物 3、5 和 6 属于 elemane 型,7 属于 eudesmane 型。我们的数据还表明,丙酮和氯仿提取物在 A375 细胞系中诱导细胞凋亡,这可能与存在的化合物的整体作用有关,但特别是与木脂素 arctigenin(1)和倍半萜烯化合物 3-8 和 16 有关。事实上,这些分子能够诱导高 DNA 片段化,与 caspase-3 酶活性的显著增加相关。此外,凋亡似乎至少部分通过 PTEN 活性和抑制 Hsp70 表达来介导。

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