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荧光和 ESR 光谱研究大豆异黄酮染料木黄酮与生物和模型膜的相互作用。

Fluorescence and ESR spectroscopy studies on the interaction of isoflavone genistein with biological and model membranes.

机构信息

Department of Biophysics, Wrocław Medical University, Poland.

出版信息

Chem Phys Lipids. 2011 May;164(4):283-91. doi: 10.1016/j.chemphyslip.2011.03.001. Epub 2011 Mar 21.

Abstract

Genistein (5,7,4'-trihydroxyisoflavone) the common soy beans isoflavone has attracted scientific interest due to its antioxidant, estrogenic, antiangiogenic and aniticancer activities. The aim of the present study was to investigate the interaction of genistein with biological (erythrocyte) and model membranes (dimyristoyl- and dipalmitoylphosphatidylcholine). Using Laurdan and Prodan as fluorescent probes, we demonstrated phase behavior and membrane fluidity changes induced by genistein. ESR spectroscopy revealed alterations caused by genistein in membrane domains structure and mobility of spin probes with free radicals located at different depths of membrane. The method of ESR spectra decomposition and computer simulation of the recorded spectra were used in order to visualize domain coexistence by GHOST condensation method. Fluorescence and ESR spectroscopy experiments performed at different temperatures enabled us to observe the effect of isoflavone on phospholipid bilayers in either gel or liquid crystalline phase. It was concluded that genistein preferentially intercalated into lipid headgroup region, to some extent into polar-apolar interface and only in minimal degree into hydrophobic core of the membrane. According to our best knowledge this is the first study on modification of domain structure of membranes by genistein.

摘要

染料木黄酮(5,7,4'-三羟基异黄酮)是大豆中的一种常见异黄酮,由于其具有抗氧化、雌激素、抗血管生成和抗癌活性,因此引起了科学界的兴趣。本研究的目的是研究染料木黄酮与生物(红细胞)和模型膜(二肉豆蔻酰基-和二月桂酰基磷脂酰胆碱)的相互作用。我们使用 Laurdan 和 Prodan 作为荧光探针,证明了染料木黄酮诱导的相行为和膜流动性变化。ESR 光谱揭示了染料木黄酮引起的膜结构变化和自由基位于膜不同深度的自旋探针的流动性变化。使用 ESR 光谱分解方法和记录光谱的计算机模拟,使用 GHOST 凝聚方法可视化域共存。在不同温度下进行的荧光和 ESR 光谱实验使我们能够观察到异黄酮对凝胶或液晶相磷脂双层的影响。得出的结论是,染料木黄酮优先插入脂质头部基团区域,在一定程度上插入极性-非极性界面,并且仅在最小程度上插入膜的疏水区。据我们所知,这是首次研究染料木黄酮对膜域结构的修饰。

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