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麦仙翁变种麦仙翁种子的细胞毒性活性。

Cytotoxic activity of the seeds from Agrostemma githago var. githago.

作者信息

Hebestreit Philipp, Melzig Matthias F

机构信息

Institut für Pharmazie, Freie Universität Berlin, Berlin, Germany.

出版信息

Planta Med. 2003 Oct;69(10):921-5. doi: 10.1055/s-2003-45101.

Abstract

In our investigations aqueous extracts of the seeds from Agrostemma githago L. proved to be remarkably more cytotoxic in comparison with isolated agrostemmasaponins in equal concentrations. A combination of agrostemmasaponin 1 with a formyl function attached to triterpene position 4 together with agrostin, a ribosome-inactivating protein (RIP type 1; M (r): 27 kDa) which we isolated from the seed material, resulted in a markedly increased cytotoxicity. In analogy to the well-known lectin-like mechanism of action which can be inhibited by different monosaccharides, we tested seven different sugars known for their affinity to prevent cell recognition and thereby detoxify lectins. None of the tested monosaccharides diminished toxicity values significantly. This suggests that agrostin, combined with agrostemmasaponin 1, has a different mode of action to penetrate through the cell membrane than lectins. On the basis of these facts we concluded that both compounds work as a functional unity showing a mechanism of "cooperative toxicity".

摘要

在我们的研究中,事实证明,相较于同等浓度下分离出的麦仙翁皂苷,麦仙翁种子的水提取物具有显著更强的细胞毒性。麦仙翁皂苷1(在三萜烯4位上带有一个甲酰基官能团)与我们从种子材料中分离出的一种核糖体失活蛋白(1型RIP;分子量:27 kDa)麦仙翁蛋白相结合,导致细胞毒性显著增强。类似于众所周知的可被不同单糖抑制的凝集素样作用机制,我们测试了七种因其对防止细胞识别从而使凝集素解毒的亲和力而闻名的不同糖类。所测试的单糖均未显著降低毒性值。这表明,与麦仙翁皂苷1结合的麦仙翁蛋白具有与凝集素不同的穿透细胞膜的作用方式。基于这些事实,我们得出结论,这两种化合物作为一个功能整体发挥作用,显示出一种“协同毒性”机制。

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