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首页> 外文期刊>The Journal of Chemical Physics >An atomic force microscope study of thermal behavior of phospholipid monolayers on mica
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An atomic force microscope study of thermal behavior of phospholipid monolayers on mica

机译:原子力显微镜研究磷脂在云母上的热行为

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We observed by using atomic force microscope (AFM) phospholipid (1,2-dipalmitoyl-sn-glycero-3-phosphocholine) monolayers on mica being annealed and cooled to a selection of temperatures through steps of 2-4 degrees C/min. The annealed phospholipid monolayers started to disappear at 45-50 degrees C and disappeared completely above 60-63 degrees C under AFM observation. The phospholipid monolayers reformed when the samples were cooled below 60 degrees C and developed from fractal into compact monolayer films with decreasing temperatures. Simultaneously the height of the reformed phospholipid films also increased with decreasing temperatures from 0.4 nm to the value before annealing. The observed thermal features are attributed to a phase-transition process that upon heating to above 45-50 degrees C, the lipids condensed in the monolayers transform into a low-density expanded phase in which the lipids are invisible to AFM, and the transformation continues and completes at 60-63 degrees C. The lipid densities of the expanded phase inferred from the dissociated area of the condensed phase are observed to be a function of the temperature. The behavior contrasts with a conventional first-order phase transition commonly seen in the Langmuir films. The temperature-dependent height and shape of the reformed phospholipid films during cooling are argued to arise from the adjustment of the packing and molecular tilting (with respect to the mica surface) of the phospholipids in order to accommodate more condensed phospholipids. (c) 2006 American Institute of Physics.
机译:我们通过使用原子力显微镜(AFM)观察了云母上的磷脂(1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱)单层磷脂,并通过2-4℃/ min的步骤冷却至一定的温度。在AFM观察下,退火的磷脂单层在45-50℃开始消失并且在60-63℃以上完全消失。当样品冷却至60摄氏度以下时,磷脂单层会重新形成,并随着温度的降低从分形发展成致密的单层薄膜。同时,随着温度从0.4nm降低到退火前的值,重整的磷脂膜的高度也增加。观察到的热特征归因于相变过程,该相变过程在加热至45-50摄氏度以上时,在单层中冷凝的脂质转变为低密度膨胀相,其中脂质对于AFM不可见,并且该转化继续进行并在60-63摄氏度下完成。观察到从冷凝相的离解面积推断出的膨胀相的脂质密度是温度的函数。该行为与Langmuir薄膜中常见的常规一阶相变相反。据认为,冷却过程中重整磷脂膜的温度依赖性高度和形状是由于磷脂的堆积和分子倾斜(相对于云母表面)的调节而产生的,以便容纳更多的缩合磷脂。 (c)2006年美国物理研究所。

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