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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Characterizing the chemical complexity of patterned biomimetic membranes.
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Characterizing the chemical complexity of patterned biomimetic membranes.

机译:表征图案化仿生膜的化学复杂性。

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Biomembranes are complex, heterogeneous, dynamic systems playing essential roles in numerous processes such as cell signaling and membrane trafficking. Model membranes provide simpler platforms for studying biomembrane dynamics under well-controlled environments. Here we present a modified polymer lift-off approach to introduce chemical complexity into biomimetic membranes by constructing domains of one lipid composition (here, didodecylphosphatidylcholine) that are surrounded by a different lipid composition (e.g., dipentadecylphosphatidylcholine), which we refer to as patterned backfilled samples. Fluorescence microscopy and correlation spectroscopy were used to characterize this patterning approach. We observe two types of domain populations: one with diffuse boundaries and a minor fraction with sharp edges. Lipids within the diffuse domains in patterned backfilled samples undergo anomalous diffusion, which results from nonideally mixed clusters of gel phase lipid within the fluid domains. No lateral diffusion was observed within the minor population of domains with well-defined borders. These results suggest that, while membrane patterning by a variety of approaches is useful for biophysical and biosensor applications, a thorough and systematic characterization of the resulting biomimetic membrane, and its unpatterned counterpart, is essential.
机译:生物膜是复杂的,异质的,动态的系统,在许多过程中(例如细胞信号传导和膜运输)起着至关重要的作用。模型膜为在良好控制的环境下研究生物膜动力学提供了更简单的平台。在这里,我们提出一种改良的聚合物剥离方法,通过构建被不同脂质成分(例如二戊基磷脂酰胆碱)包围的一种脂质成分(此处为十二烷基磷脂酰胆碱)包围的结构域,将化学复杂性引入仿生膜。样品。荧光显微镜和相关光谱被用来表征这种图案化方法。我们观察到两种类型的域种群:一种具有分散边界,另一种具有尖锐边缘。图案化回填样品中扩散域内的脂质会发生异常扩散,这是由于流体域内凝胶相脂质的非理想混合簇造成的。在边界清晰的少数区域内未观察到横向扩散。这些结果表明,尽管通过多种方法进行的膜构图对于生物物理和生物传感器应用是有用的,但对所得的仿生膜及其未构图的对应物进行全面而系统的表征是必不可少的。

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