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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Three dimensional (temperature-tension-composition) phase map of mixed DOPC-DPPC vesicles: Two solid phases and a fluid phase coexist on three intersecting planes
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Three dimensional (temperature-tension-composition) phase map of mixed DOPC-DPPC vesicles: Two solid phases and a fluid phase coexist on three intersecting planes

机译:混合DOPC-DPPC囊泡的三维(温度-张力-成分)相图:在三个相交平面上共存在两个固相和一个液相

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Mapping the phase behavior of multicomponent phospholipid membranes has been an ongoing pursuit, motivated by interest in both fundamental physics and cell function. Prior investigations addressed temperature-composition space and the features of the associated domains. The current study additionally considers membrane tension, analogous to pressure in bulk materials. Focusing on model mixed 1,2-dioleoyl-sn-glycero-3-phosphocholine and 1,2-dipalmitoyl-sn-glycero-3- phosphocholine (DOPC and DPPC respectively) membranes, we examine the thermodynamic impact of tension on fluid-solid coexistence and the nature of phase-separated domains. Reported here is the 3 dimensional composition- temperature-tension phase map containing three intersecting curved surfaces. Depending on the system's position in this 3D space, giant unilamellar vesicles containing DOPC and DPPC may exhibit, in addition to a 2-component fluid L?phase, two different types of solid DPPC-rich domains: tracer-excluding hexagonal patches or tracer-selective stripes. The fluid phase occurs at high temperatures. At cool temperatures striped solid DPPC-rich domains coexist with the fluid at elevated tensions. These stripes occur independent of tension, at the coolest temperatures. At low tensions and intermediate temperatures, patchy solid DPPC-rich domains coexist with the L?fluid and may persist, if kinetically trapped, at lower temperatures. We associate the striped DPPC domains with a tilt-gel (L?) morphology and the hexagonal DPPC patches with a dense corrugated ripple phase (P?). These assignments, based on the reported areal densities of the corrugated and tilt solids, enabled first principles estimates of the coexistence boundaries that match the experiments well, including the tension sensitivity of coexistence curves and triple-point-like features for fixed composition.
机译:由于对基本物理学和细胞功能的兴趣,绘制多组分磷脂膜的相行为图一直是一项持续的追求。先前的研究涉及温度组成空间和相关域的特征。当前的研究还考虑了膜张力,类似于散装材料中的压力。着眼于混合模型1,2,2-油酰基-sn-甘油-3-磷酸胆碱和1,2-二棕榈基-sn-甘油-3-磷酸胆碱(分别为DOPC和DPPC)膜,我们研究了张力对液固的热力学影响共存和相分离域的性质。这里报告的是包含三个相交曲面的三维成分-温度-张力相图。根据系统在3D空间中的位置,除了2组分流体L相之外,包含DOPC和DPPC的巨大单层囊泡还可能会显示两种不同类型的富含DPPC的固体畴:示踪剂(不包括六角形斑块或示踪剂-选择性条纹。液相在高温下发生。在凉爽的温度下,条带状富含DPPC的固体区域与流体在升高的张力下共存。这些条纹在最冷的温度下独立于张力而出现。在低张力和中等温度下,富含LPC的斑块状富含DPPC的固体与固体共存,如果在动力学上被困住,则在较低温度下可能会持续存在。我们将条带化的DPPC域与倾斜凝胶(L?)形态联系起来,将六角形DPPC斑块与密集的波纹波纹相(P?)联系起来。这些分配基于所报告的瓦楞纸和倾斜固体的面密度,使得能够很好地匹配实验的共存边界的第一性原理估计值,包括共存曲线的张力敏感性和固定成分的三点状特征。

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