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欧洲槲寄生硫堇产生活性氧中间体(ROI)

Generation of reactive oxygen intermediates (ROI) by the thionins from Viscum album L.

作者信息

Büssing A, Schaller G, Pfüller U

机构信息

Department of Applied Immunology, University Witten/Herdecke, Communal Hospital Herdecke, Germany.

出版信息

Anticancer Res. 1998 Nov-Dec;18(6A):4291-6.

PMID:9891480
Abstract

BACKGROUND

Extracts from Viscum album L. are widely used as an adjuvant in complementary cancer therapy. While the mechanisms of mistletoe lectin (ML) cytotoxicity are well described, the viscotoxin (VT) effects are unclear at present. Thus, we treated human lymphocytes with VT and measured cell death-associated changes by flow cytometry.

RESULTS

Treatment of lymphocytes with VT for 2 hours resulted in the binding of Annexin-V, permeabilisation of cell membranes, and generation of ROI. Apart from interindividual differences in response to VT, the number of intracellulary Bcl-2 proteins increased only marginally. The VT A1, A2, A3 and 1-PS were similar in their ROI-inducing potencies, while other cationic and/or amphipathic substances such protamine sulfate, VT B, purothionin or wasp venom peptides mastoparan I and II were less effective. However, the cytotoxic properties of VT-rich whole plant extracts from mistletoe grown on different host trees (Iscador), correlated with the content of ML rather than VT.

CONCLUSIONS

Permeabilisation of lymphocytes cell membranes by VT was associated with generation of ROI within 2 hours indicating accidental cell death. VT cannot be ignored any longer as they posses both immunomodulating and cytotoxic properties, which both might be of clinical relevance.

摘要

背景

欧洲槲寄生提取物在癌症辅助治疗中被广泛用作佐剂。虽然槲寄生凝集素(ML)的细胞毒性机制已有详尽描述,但目前槲寄生毒素(VT)的作用尚不清楚。因此,我们用VT处理人淋巴细胞,并通过流式细胞术检测与细胞死亡相关的变化。

结果

用VT处理淋巴细胞2小时导致膜联蛋白-V结合、细胞膜通透性增加和活性氧(ROI)生成。除了个体对VT反应存在差异外,细胞内Bcl-2蛋白数量仅略有增加。VT A1、A2、A3和1-PS在诱导ROI的能力方面相似,而其他阳离子和/或两亲性物质,如硫酸鱼精蛋白、VT B、硫堇或黄蜂毒液肽马斯托帕兰I和II的效果较差。然而,生长在不同宿主树上的槲寄生富含VT的全植物提取物(Iscador)的细胞毒性特性与ML含量而非VT含量相关。

结论

VT导致淋巴细胞细胞膜通透性增加,并在2小时内伴随ROI生成,表明发生意外细胞死亡。VT不能再被忽视,因为它们具有免疫调节和细胞毒性特性,这两者可能都具有临床相关性。

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