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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Influence of a Fluorescent Probe on the Nanostructure of Phospholipid Membranes:Dipalmitoylphosphatidylcholine Interfacial Monolayers
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Influence of a Fluorescent Probe on the Nanostructure of Phospholipid Membranes:Dipalmitoylphosphatidylcholine Interfacial Monolayers

机译:荧光探针对磷脂膜纳米结构的影响:双棕榈酰磷脂酰胆碱界面单层。

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Monolayers of dipalmitoylphosphatidylcholine (DPPC),both in the absence and in the presence of 1% (mol/mol) of a fluorescent phospholipid probe,have been spread at the air-liquid interface of a surface balance,compressed up to pressures in the liquid-expanded/liquid-condensed plateau of the isotherm,transferred onto mica supports,and analyzed by scanning force microscopy (SFM).Supported DPPC films showed micrometer-sized condensed domains with morphology and size that were entirely analogous to those observed in situ at the air-liquid interface by epifluorescence microscopy.The analysis by SFM,however,allowed the study and comparison of monolayers in the absence and in the presence of the fluorescent marker.This analysis revealed that the presence of dye reduced by 10-20% the total amount of the liquid-condensed phase in the DPPC films.The presence of the dye also decreased the mechanical stability of the film and increased the time required for the monolayer to equilibrate.The resolution of SFM permitted the determination that the structures of both the liquid-expanded and the liquid-condensed regions of DPPC films were heterogeneous at the nanometer scale.Liquid-condensed DPPC microdomains contained nanoholes covering 4-8% of their area whereas 60-80% of the surface detected as liquid-expanded by fluorescence microscopy consisted of a condensed-like framework of nanodomains.The total area,the shape of the nanodomains,and their interconnectivity were affected by the presence of the probe,suggesting that care must be taken when studying the structure,especially at the nanometer scale,and properties of model lipid films in the presence of extrinsic probes.
机译:在不存在和存在1%(mol / mol)荧光磷脂探针的情况下,二棕榈酰磷脂酰胆碱(DPPC)的单分子层已在表面平衡的气液界面处扩散,压缩至液体中的压力等温线的膨胀/液体浓缩平台,转移到云母载体上,并通过扫描力显微镜(SFM)进行分析。所支持的DPPC薄膜显示出微米级的凝聚域,其形态和大小与在原位观察到的完全类似。通过表面荧光显微镜观察气液界面。但是,通过SFM分析,可以在不存在荧光标记的情况下和存在荧光标记的情况下进行单层的研究和比较。该分析表明,染料的存在减少了总量的10-20%染料的存在还降低了薄膜的机械稳定性并增加了单层平衡所需的时间。 SFM离子可以确定DPPC膜的液胀和液缩区域的结构在纳米尺度上是异质的。液缩的DPPC微域包含覆盖其面积的4-8%的纳米孔,而60-80荧光显微镜检测到的液体扩展的表面百分比由一个凝结的纳米域构架组成。总面积,纳米域的形状及其互连性均受探针的存在影响,建议必须小心在研究非结构性探针存在下模型脂质膜的结构时,尤其是在纳米级时的性质。

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