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基于脂质单分子层畴边界涨落的线张力和偶极密度差的临界指数

Critical exponents for line tension and dipole density difference from lipid monolayer domain boundary fluctuations.

作者信息

Heinrich Michael C, Levental Ilya, Gelman Hannah, Janmey Paul A, Baumgart Tobias

机构信息

Department of Chemistry, Institute for Medicine and Engineering, and Laboratory for Research on the Structure of Matter, University of Pennsylvania, 231 South 34th Street, Philadelphia, PA 19104, USA.

出版信息

J Phys Chem B. 2008 Jul 10;112(27):8063-8. doi: 10.1021/jp7116246. Epub 2008 Jul 3.

Abstract

The potential physiological relevance of liquid-liquid phase separation in lipid membranes to the formation and stability of "lipid rafts" in cellular plasma membranes has prompted extensive investigation of the physical chemistry underlying these phenomena. In this contribution, the line tension (gamma) and dipole density differences ( micro) between demixed fluid phases of monolayers comprised of dimyristoylphosphatidylcholine (DMPC) and dihydrocholesterol (DChol) were investigated by measuring the two-dimensional thermal fluctuations of domain boundaries visualized by the inclusion of a fluorescent tracer lipid. These parameters are essential determinants of domain stability, and their quantification will yield an increased understanding of the physical processes responsible for aspects of lateral phase separation. Employing an extensive data set, the surface pressure dependence of gamma and mu was determined at three different monolayer compositions (30%, 35%, and 40% DChol). Both parameters were found to decrease with a power law dependence as the surface pressure approached the phase transition pressure (pi t), in agreement with previous measurements. Additionally, photobleaching effects and domain size influence were quantified and found to be small in our system. We suggest that the method of flicker spectroscopy can be helpful in identifying line-active compounds.

摘要

脂膜中的液-液相分离与细胞质膜中“脂筏”的形成和稳定性之间潜在的生理相关性,促使人们对这些现象背后的物理化学进行了广泛研究。在本论文中,通过测量包含荧光示踪脂质的区域边界的二维热涨落,研究了由二肉豆蔻酰磷脂酰胆碱(DMPC)和二氢胆固醇(DChol)组成的单层混合流体相之间的线张力(γ)和偶极密度差(μ)。这些参数是区域稳定性的重要决定因素,对它们的量化将有助于更深入地理解导致横向相分离的物理过程。利用大量数据集,在三种不同的单层组成(30%、35%和40%DChol)下测定了γ和μ对表面压力的依赖性。发现这两个参数随着表面压力接近相变压力(πt)呈幂律依赖性下降,这与之前的测量结果一致。此外,还对光漂白效应和区域大小影响进行了量化,发现在我们的系统中这些影响较小。我们认为闪烁光谱法有助于识别线活性化合物。

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