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Studies on canthaxanthin in lipid membranes

机译:脂质膜中角黄素的研究

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Polar carotenoid pigment - canthaxanthin - has been found to interfere with the organization of biological membranes, in particular of the retina membranes of an eye of primates. The organization of lipid membranes formed with dipalmitoylphosphatidylcholine (DPPC) and egg yolk phosphatidylcholine containing canthaxanthin was studied by means of several techniques including: electronic absorption spectroscopy, linear dichroism, X-ray diffractometry, H-1-NMR spectroscopy and FTIR spectroscopy. It appears that canthaxanthin present in the lipid membranes at relatively low concentration (below 1 mol% with respect to lipid) modifies significantly physical properties of the membranes. In particular, canthaxanthin (i) exerts restrictions to the segmental molecular motion of lipid molecules both in the headgroup region and in the hydrophobic core of the bilayer, (ii) promotes extended conformation of alkyl lipid chains, (iii) modifies the surface of the lipid membranes (in particular in the gel state, L-beta') and promotes the aggregation of lipid vesicles. It is concluded that canthaxanthin incorporated into lipid membranes is distributed among two pools: one spanning the lipid bilayer roughly perpendicularly to the surface of the membrane and one parallel to the membrane, localized in the headgroup region. The population of the horizontal fraction increases with the increase in the concentration of the pigment in the lipid phase. Such a conclusion is supported by the linear dichroism analysis of the oriented lipid multibilayers containing canthaxanthin: The mean angle between the dipole transition moment and the axis normal to the plane of the membrane was determined as 20 +/- 3 degrees at 0.5 mol% and 47 +/- 3 degrees at 2 mol% canthaxanthin. The analysis of the absorption spectra of canthaxanthin in the lipid phase and H-1-NMR spectra of lipids point to the exceptionally low aggregation threshold of the pigment in the membrane environment (similar to 1 mol%). All results demonstrate a very strong modifying effect of canthaxanthin with respect to the dynamic and structural properties of lipid membranes. (c) 2005 Elsevier B.V. All rights reserved.
机译:已经发现极性类胡萝卜素色素-角黄素-会干扰生物膜的组织,特别是灵长类动物眼睛的视网膜膜的组织。通过几种技术研究了由二棕榈酰磷脂酰胆碱(DPPC)和含蛋黄素的蛋黄磷脂酰胆碱形成的脂质膜的组织,这些技术包括:电子吸收光谱,线性二色性,X射线衍射,H-1-NMR光谱和FTIR光谱。似乎在脂质膜中以相对较低的浓度(相对于脂质低于1mol%)存在的角黄素改变了膜的物理性质。特别是,角黄素(i)对脂质分子在头基区域和双层疏水核心中的节段性分子运动施加限制,(ii)促进烷基脂质链的扩展构象,(iii)修饰脂质体的表面。脂质膜(特别是在凝胶状态,L-β')并促进脂质囊泡的聚集。结论是掺入脂质膜中的角黄素在两个池中分布:一个池大致垂直于膜表面跨越脂质双层,而另一个平行于膜,位于头基区域。水平部分的群体随着脂质相中颜料浓度的增加而增加。含角黄素的定向脂质多层膜的线性二色性分析支持了这一结论:在0.5 mol%时,偶极跃迁矩与垂直于膜平面的轴之间的平均角度确定为20 +/- 3度,并且47 +/- 3度,在2 mol%角黄素中。对角黄素在脂质相中的吸收光谱和脂质的H-1-NMR光谱的分析表明,在膜环境中色素的聚集阈值极低(约1 mol%)。所有结果表明角黄素相对于脂质膜的动力学和结构性质具有非常强的修饰作用。 (c)2005 Elsevier B.V.保留所有权利。

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