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Phase state and surface topography of palmitoyl-ceramide monolayers

机译:棕榈酰神经酰胺单层的相态和表面形貌

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In cell biology (and in many biophysical) studies there is a natural tendency to consider ceramide as a highly condensed, solid-type lipid conferring rigidity and close packing to biomembranes. In the present work we advanced the understanding of the phase behavior of palmitoyl-ceramide restricted to a planar interface using Langmuir monolayers under strictly controlled and known surface packing conditions. Surface pressure-molecular area isotherms were complemented with molecular area-temperature isobars and with observations of the surface topography by Brewster Angle Microscopy. The results described herein indicate that palmitoyl-ceramide can exhibit expanded, as well as condensed phase states. Formation of three phases was found, depending on the surface pressure and temperature: a solid (1.80nm thick), a liquid-condensed (1.73nm thick, likely tilted) and a liquid-expanded (1.54nm thick) phase over the temperature range 5-62 °C. A large hysteretic behavior is observed for the S phase monolayer that may indicate high resistance to domain boundary deformation. A second (or higher) order S→LC phase transition is observed at about room temperature while a first order LC→LE transition occurs in a range of temperature encompassing the physiological one (observed above 30 °C at low surface pressure). This phase behavior broadens the view of ceramide as a type of lipid not-always-rigid but able to exhibit polymorphic properties.
机译:在细胞生物学(以及许多生物物理学)研究中,自然而然地将神经酰胺视为高度凝结的固体型脂质,赋予生物膜刚性和紧密堆积。在当前的工作中,我们进一步了解了在严格控制和已知的表面堆积条件下,使用Langmuir单层膜限制在平面界面上的棕榈酰神经酰胺的相行为。表面压力-分子面积等温线补充有分子面积-温度等压线,并通过布鲁斯特角显微镜观察表面形貌。本文所述的结果表明棕榈酰基-神经酰胺可以表现出膨胀的以及稠合的相态。根据表面压力和温度,发现了三相的形成:在整个温度范围内,固体(1.80nm厚),液体冷凝(1.73nm厚,可能倾斜)和液体膨胀(1.54nm厚)相形成5-62℃。对于S相单分子层,观察到较大的磁滞行为,这可能表明对畴边界变形具有较高的抵抗力。在大约室温下观察到第二(或更高)阶S→LC相变,而在一阶LC→LE跃迁发生在涵盖生理温度的温度范围内(在低表面压力下于30°C以上观察到)。这种相态行为拓宽了神经酰胺的观点,神经酰胺是一种并非总是刚性但能够显示多态性的脂质。

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