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The modified fluorescence based vesicle fluctuation spectroscopy technique for determination of lipid bilayer bending properties

机译:改进的基于荧光的囊泡波动光谱技术,用于测定脂质双层弯曲特性

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摘要

Lipid bilayer is the main constitutive element of biological membrane, which confines intracellular space. The mechanical properties of biological membranes may be characterized by various parameters including membrane stiffness or membrane bending rigidity, which can be measured using flicker noise spectroscopy. The flicker noise spectroscopy exploits the spontaneous thermal undulations of the membrane. The method is based on the quantitative analysis of a series of microscopic images captured during thermal membrane fluctuations. Thus, measured bending rigidity coefficient depends on the image quality as well as the selection of computational tools for image processing and mathematical model used. In this work scanning and spinning disc confocal microscopies were used to visualize fluctuating membranes of giant unilamellar vesicles. The bending rigidity coefficient was calculated for different acquisition modes, using different fluorescent probes and different image processing methods. It was shown that both imaging approaches gave similar bending coefficient values regardless of acquisition time. Using the developed methodology the effect of fluorescent probe type and aqueous phase composition on the value of the membrane bending rigidity coefficient was measured. Specifically it was found that the bending rigidity coefficient of DOPC bilayer in water is smaller than that determined for POPC membrane. It has been found that the POPC and DOPC bending rigidities coefficient in sucrose solution was lower than that in water. Fluorescence imaging makes possible the quantitative analysis of membrane mechanical properties of inhomogeneous membrane. (C) 2015 Elsevier B.V. All rights reserved.
机译:脂质双层是生物膜的主要组成元素,其限制细胞内空间。生物膜的机械性能可以通过包括膜刚度或膜弯曲刚度在内的各种参数来表征,这些参数可以使用闪烁噪声光谱法进行测量。闪烁噪声光谱法利用了膜的自发热起伏。该方法基于对在热膜波动期间捕获的一系列显微图像的定量分析。因此,测得的弯曲刚度系数取决于图像质量以及用于图像处理和数学模型的计算工具的选择。在这项工作中,使用扫描和旋转圆盘共聚焦显微镜技术观察巨大的单层囊泡的波动膜。使用不同的荧光探针和不同的图像处理方法,针对不同的采集模式计算出弯曲刚度系数。结果表明,无论采集时间如何,两种成像方法均给出相似的弯曲系数值。使用开发的方法,测量了荧光探针类型和水相组成对膜弯曲刚度系数值的影响。具体地,发现在水中DOPC双层的弯曲刚性系数小于对于POPC膜确定的弯曲刚性系数。已经发现,蔗糖溶液中的POPC和DOPC的弯曲刚度系数低于水中的。荧光成像使定量分析非均质膜的膜力学性能成为可能。 (C)2015 Elsevier B.V.保留所有权利。

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