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测定独立平面磷脂双层膜的弯曲刚度。

Determining the Bending Rigidity of Free-Standing Planar Phospholipid Bilayers.

作者信息

Zabala-Ferrera Oscar, Liu Paige, Beltramo Peter J

机构信息

Department of Chemical Engineering, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Membranes (Basel). 2023 Jan 19;13(2):129. doi: 10.3390/membranes13020129.

Abstract

We describe a method to determine membrane bending rigidity from capacitance measurements on large area, free-standing, planar, biomembranes. The bending rigidity of lipid membranes is an important biological mechanical property that is commonly optically measured in vesicles, but difficult to quantify in a planar, unsupported system. To accomplish this, we simultaneously image and apply an electric potential to free-standing, millimeter area, planar lipid bilayers composed of DOPC and DOPG phospholipids to measure the membrane Young's (elasticity) modulus. The bilayer is then modeled as two adjacent thin elastic films to calculate bending rigidity from the electromechanical response of the membrane to the applied field. Using DOPC, we show that bending rigidities determined by this approach are in good agreement with the existing work using neutron spin echo on vesicles, atomic force spectroscopy on supported lipid bilayers, and micropipette aspiration of giant unilamellar vesicles. We study the effect of asymmetric calcium concentration on symmetric DOPC and DOPG membranes and quantify the resulting changes in bending rigidity. This platform offers the ability to create planar bilayers of controlled lipid composition and aqueous ionic environment, with the ability to asymmetrically alter both. We aim to leverage this high degree of compositional and environmental control, along with the capacity to measure physical properties, in the study of various biological processes in the future.

摘要

我们描述了一种通过对大面积、独立、平面生物膜进行电容测量来确定膜弯曲刚度的方法。脂膜的弯曲刚度是一种重要的生物力学特性,通常在囊泡中通过光学方法测量,但在平面、无支撑的系统中难以量化。为了实现这一点,我们对由二油酰磷脂酰胆碱(DOPC)和二油酰磷脂酰甘油(DOPG)磷脂组成的独立、毫米级面积的平面脂质双层同时进行成像并施加电势,以测量膜的杨氏(弹性)模量。然后将该双层膜建模为两个相邻的薄弹性膜,根据膜对施加电场的机电响应来计算弯曲刚度。使用DOPC,我们表明通过这种方法确定的弯曲刚度与使用中子自旋回波对囊泡进行的现有研究、对支撑脂质双层进行的原子力光谱以及对巨型单层囊泡进行的微吸管抽吸实验结果高度一致。我们研究了不对称钙浓度对对称的DOPC和DOPG膜的影响,并量化了由此导致的弯曲刚度变化。该平台能够创建具有可控脂质组成和水相离子环境的平面双层膜,并且能够不对称地改变这两者。我们旨在利用这种高度的组成和环境控制能力,以及测量物理性质的能力,在未来研究各种生物过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c16/9959114/b453b2512fa9/membranes-13-00129-g001.jpg

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