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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Fluid domain patterns in free-standing membranes captured on a solid support
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Fluid domain patterns in free-standing membranes captured on a solid support

机译:固相支持物捕获的独立膜中的流体域模式

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We devise a methodology to fixate and image dynamic fluid domain patterns of giant unilamellar vesicles (GUVs) at sub-optical length scales. Individual GUVs are rapidly transferred to a solid support forming planar bilayer patches. These are taken to represent a fixated state of the free standing membrane, where lateral domain structures are kinetically trapped. High-resolution images of domain patterns in the liquid-ordered (lo) and liquid-disordered (ld) co-existence region in the phase-diagram of ternary lipid mixtures are revealed by atomic force microscopy (AFM) scans of the patches. Macroscopic phase separation as known from fluorescence images is found, but with superimposed fluctuations in the form of nanoscale domains of the l o and ld phases. The size of the fluctuating domains increases as the composition approaches the critical point, but with the enhanced spatial resolution, such fluctuations are detected even deep in the coexistence region. Agreement between the area-fraction of domains in GUVs and the patches respectively, supports the assumption that the thermodynamic state of the membrane remains stable. The approach is not limited to specific lipid compositions, but could potentially help uncover lateral structures in highly complex membranes.
机译:我们设计了一种方法,可以在亚光学长度尺度上固定并成像巨型单层囊泡(GUV)的动态流体域模式。各个GUV快速转移到形成平面双层贴片的固体支持物上。这些被认为代表独立膜的固定状态,其中横向域结构被动力学捕获。通过斑块的原子力显微镜(AFM)扫描揭示了三元脂质混合物相图中液体有序(lo)和液体无序(ld)共存区域中的畴模式的高分辨率图像。从荧光图像中可以发现宏观相分离,但是具有lo和ld相的纳米级畴形式的叠加波动。当组成接近临界点时,波动域的大小会增加,但是随着空间分辨率的提高,甚至在共存区域的深处都可以检测到这种波动。分别在GUV和贴片中的区域面积分数之间的一致性,支持了膜的热力学状态保持稳定的假设。该方法不仅限于特定的脂质成分,还可以潜在地帮助揭示高度复杂的膜中的侧向结构。

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