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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Impact of Lipid Oxidization on Biophysical Properties of Model Cell Membranes
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Impact of Lipid Oxidization on Biophysical Properties of Model Cell Membranes

机译:脂质氧化对模型细胞膜生物物理特性的影响

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摘要

The oxidization of glycerophospholipids in cell membranes due to aging and environmental stresses may cause a variety of pathological and physiological consequences. A variety of oxidized phospholipid products (OxPl) are produced by the chemical oxidization of unsaturated hydrocarbon chains, which would significantly change the physicochemical properties of cell membranes. In this work, we constructed cell membrane models in the absence and presence of two stable oxidized lipid products and investigated their impact on physical properties of supported membranes using quartz crystal microbalance with dissipation (QCM-D) and high-energy X-ray reflectivity (XRR). Our experimental findings suggest that the lipid oxidization up to 20 mol % leads to the rupture of vesicles right after the adsorption. Our XRR analysis unravels the membrane thinning and the decrease in the lateral ordering of lipids, which can be explained by the decrease in the lateral packing of hydrocarbon chains. Further studies on mechanics of membranes incorporating oxidized lipids can be attributed to the decrease in the bending rigidity and the increase in the permeability.
机译:由于衰老和环境压力引起的细胞膜中甘油磷脂的氧化可能引起各种病理和生理后果。通过不饱和烃链的化学氧化可产生多种氧化磷脂产物(OxPl),这将显着改变细胞膜的物理化学性质。在这项工作中,我们在不存在和存在两种稳定的氧化脂质产物的情况下构建了细胞膜模型,并使用具有耗散(QCM-D)和高能X射线反射率的石英晶体微量天平(QCM-D)研究了它们对支撑膜的物理性能的影响。 XRR)。我们的实验发现表明,吸附后脂质氧化高达20 mol%会导致囊泡破裂。我们的XRR分析揭示了膜的变薄和脂质侧向顺序的减少,这可以通过烃链侧向堆积的减少来解释。掺入氧化脂质的膜的力学研究进一步归因于抗弯刚度的降低和渗透率的提高。

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