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Condensed phases of branched-chain phospholipid monolayers investigated by scanning force microscopy

机译:扫描力显微镜研究支链磷脂单分子层的缩合相

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摘要

Branched (triple- and quadruple-chain) phospholipid monolayers were characterized on different solid substrates (mica, silicon wafer, and glass) by scanning force microscopy. SFM in contact and tapping mode has revealed the presence of pinholes on submicrometer and nanometer scales for these lipids transferred by the Langmuir-Blodgett technique (vertical transfer) at room temperature. The transfer ratio was close to 1 in the case of triple-chain lipids and clearly lower in the case of the quadruple-chain lipid. Triple- and quadruple-chain phospholipids show different hole sizes and shapes in the monolayer depending on the deposition pressure and on the solid substrate. The tendency of decreasing their number with increasing surface pressure is maintained upon changing the substrate surface. At low pressure the quadruple-chain phospholipid has shown to have large holes while the triple-chain lipid has revealed condensed domains, which are probably induced by a surface-mediated condensation process, within the holes. In all cases the depth is only half that expected from molecular models. [References: 33]
机译:通过扫描力显微镜在不同的固体基质(云母,硅片和玻璃)上表征了支链(三链和四链)磷脂单层。接触和敲击模式下的SFM揭示了在室温下,通过Langmuir-Blodgett技术(垂直转移)转移的这些脂质的亚微米和纳米级针孔的存在。对于三链脂质,转移比率接近于1,而对于四链脂质,转移比率明显更低。三链和四链磷脂在单层中显示不同的孔尺寸和形状,具体取决于沉积压力和固体基质。当改变衬底表面时,保持了它们的数量随表面压力增加而减少的趋势。在低压下,四链磷脂显示出大孔,而三链脂质显示出在孔内的缩合结构域,这可能是由表面介导的缩合过程诱导的。在所有情况下,深度仅为分子模型预期深度的一半。 [参考:33]

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