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首页> 外文期刊>Journal of the Royal Society Interface >A new approach for investigating the response of lipid membranes to electrocompression by coupling droplet mechanics and membrane biophysics
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A new approach for investigating the response of lipid membranes to electrocompression by coupling droplet mechanics and membrane biophysics

机译:一种新方法,用于通过耦合液滴力学和膜生物物理学研究脂膜对电胶体的响应

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摘要

A new method for quantifying lipid-lipid interactions within biomimetic membranes undergoing electrocompression is demonstrated by coupling droplet mechanics and membrane biophysics. The membrane properties are varied by altering the lipid packing through the introduction of cholesterol. Pendant drop tensiometry is used to measure the lipid monolayer tension at an oil-water interface. Next, two lipid-coated aqueous droplets are manipulated into contact to form a bilayer membrane at their adhered interface. The droplet geometries are captured from two angles to provide accurate measurements of both themembrane area and the contact angle between the adhered droplets. Combining the monolayer tension and contact angle measurements enables estimations of the membrane tension with respect to lipid composition. Then, the membrane is electromechanically compressed using a transmembrane voltage. Electrostatic pressure, membrane tension and the work necessary for bilayer thinning are tracked, and a model is proposed to capture the mechanics of membrane compression. The results highlight that a previously unaccounted for energetic term is produced during compression, potentially reflecting changes in the lateral membrane structure. This residual energy is eliminated in cases with cholesterol mole fractions of 0.2 and higher, suggesting that cholesterol diminishes these adjustments.
机译:通过耦合液滴力学和膜生物物理学证明了对经历电荷的仿生膜内的脂质脂质相互作用的一种新方法。通过引入胆固醇改变脂质包装来改变膜性质。悬垂张力测定法用于测量油水界面处的脂质单层张力。接下来,操纵两种脂质涂覆的液滴,以在其粘附界面处形成双层膜。液滴几何形状被捕获,以提供临床区域的精确测量和粘附液滴之间的接触角。组合单层张力和接触角测量能够估计膜张力相对于脂质组合物。然后,使用跨膜电压使膜充电压缩。跟踪静电压力,膜张力和双层稀疏所需的工作,并提出了一种模型来捕获膜压缩的机制。结果强调,在压缩期间产生先前未下载的能量项,可能反映横向膜结构的变化。在胆固醇摩尔分数0.2和更高的情况下消除这种残留能量,表明胆固醇减少了这些调整。

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