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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Compositional sorting dynamics in coexisting lipid bilayer phases with variations in underlying e-beam formed curvature pattern
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Compositional sorting dynamics in coexisting lipid bilayer phases with variations in underlying e-beam formed curvature pattern

机译:共存的脂质双层相中的组成分类动力学以及基础电子束的变化形成曲率模式

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Nanometer-scale curvature patterns of an underlying substrate are imposed on lipid multibilayers with each pattern imparting distinctly different sorting dynamics to a metastable pixelation pattern of coexisting liquid ordered (L _o)-liquid disordered (L_d) lipid phases. Therefore, this work provides pathways toward mechanical energy-based separations for analysis of biomembrane-associate species. The central design concept of the patterned sections of the silica substrate is a square lattice pattern of 100 nm projected radius poly(methyl methacrylate) (PMMA) hemispherical features formed by electron beam lithography which pixelates the coexisting phases in order to balance membrane bending and line energy. In one variation, we surround this pattern with three PMMA walls/fences 100 nm in height which substantially slows the loss of the high line energy pixelated L_o phase by altering the balance of two competing mechanism (Ostwald ripening vs. vesiculation). In another walled variation, we form a gradient of the spacing of the 100 nm features which forces partitioning of the L_o phase toward the end of the gradient with the most open (400 nm spacing) lattice pattern where a single vesicle could grow from the L_o phase. We show that two other variations distinctly impact the dynamics, demonstrating locally slowed loss of the high line energy pixelated L_o phase and spontaneous switching of the pixel location on the unit cell, respectively. Moreover, we show that the pixelation patterns can be regenerated and sharpened by a heating and cooling cycle. We argue that localized variations in the underlying curvature pattern have rather complex consequences because of the coupling and/or competition of dynamic processes to optimize mechanical energy such as lipid diffusion, vesiculation and growth, and phase/compositional partitioning.
机译:底层基质的纳米级曲率图案被施加到脂质双层上,每种图案将共存的液体有序(L_o)-液体无序(L_d)脂质相的亚稳像素化图案赋予明显不同的分类动力学。因此,这项工作为基于机械能的分离提供了分析生物膜相关物种的途径。二氧化硅基板的图案部分的主要设计概念是通过电子束光刻形成的100 nm投影半径聚甲基丙烯酸甲酯(PMMA)半球形特征的方格子图案,该像素特征化了共存相以平衡膜弯曲和线条能源。在一个变体中,我们用高度为100 nm的三个PMMA壁/栅栏围绕着该图案,通过改变两个竞争机制(Ostwald熟化与囊泡化)的平衡,大大减慢了高线能量像素化L_o相的损失。在另一个有围墙的变化中,我们形成了100 nm特征间距的梯度,这迫使L_o相朝着梯度的末端分配,具有最开放的(400 nm间距)晶格图案,其中单个囊泡可以从L_o生长相。我们表明,另外两个变化明显地影响了动力学,分别表明了高线能量像素化L_o相的局部减慢损耗和单位单元上像素位置的自发切换。而且,我们表明像素化图案可以通过加热和冷却循环而再生和锐化。我们认为,由于优化动态过程的耦合和/或竞争以优化机械能(例如脂质扩散,囊泡形成和生长以及相/组成分配),因此潜在曲率模式的局部变化会产生相当复杂的结果。

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