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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Monolayer and Brewster angle microscopy study of human serum albumin-Dipalmitoyl phosphatidyl choline mixtures at the air-water interface
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Monolayer and Brewster angle microscopy study of human serum albumin-Dipalmitoyl phosphatidyl choline mixtures at the air-water interface

机译:人血清白蛋白-双棕榈酰磷脂酰胆碱混合物在空气-水界面的单层和布鲁斯特角显微镜研究

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摘要

The aim of this study is to deepen the understanding of the behavior of human serum albumin (HSA) and 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) mixed monolayers. For this purpose, different amounts of DPPC were spread at 25°C on the water surface containing a monolayer of HSA. Surface film balance and Brewster angle microscopy techniques have been used to analyze the structural and energetic characteristics (structure, topography, thickness, miscibility and interactions) of these mixtures. HSA/DPPC mixed monolayers exhibit two phase transitions evidenced by two discontinuities in the corresponding π-A isotherms and by two minimum values in the compressional modulus (C _s ~(-1))-surface pressure (π) curves. The plot of the molecular areas occupied by the mixed monolayers as function of the mass fraction of DPPC shows the absence of deviations from linearity, a typical behavior for ideal or inmiscible system. This result was confirmed from the values calculated for the free energy of excess (ΔG _(exc)), which are practically zero whatever the composition of the mixtures and the surface pressures at which ΔG _(exc) values were calculated. In addition, relative thickness values of HSA/DPPC mixed monolayers showed the existence of an exclusion surface pressure (π _(exc)), below which the monolayer is composed of a mixture of both components, while above π exc the HSA molecules are squeezed out the interface, but not totally. In fact, although in this region DPPC domains predominate at the interface, the existence of protein molecules in a packing " loops" configuration can be observed in BAM images. Moreover, relative thickness measurements confirm this hypothesis.
机译:这项研究的目的是加深对人类血清白蛋白(HSA)和1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)混合单层行为的了解。为此,将不同量的DPPC在25°C的温度下铺展在含有HSA单层的水表面上。表面膜平衡和布鲁斯特角显微镜技术已用于分析这些混合物的结构和能量特征(结构,形貌,厚度,可混溶性和相互作用)。 HSA / DPPC混合单层显示出两个相变,这由相应的π-A等温线中的两个不连续性和压缩模量(C s〜(-1))-表面压力(π)曲线中的两个最小值所证明。混合单分子层占据的分子面积与DPPC质量分数的关系图表明,没有线性偏差,这是理想或不混溶系统的典型行为。从为过量的自由能计算的值(ΔG_(exc))证实了该结果,无论混合物的组成和计算ΔG_(exc)值时的表面压力如何,该值几乎为零。此外,HSA / DPPC混合单层的相对厚度值显示存在排斥表面压力(π_(exc)),低于该表面压力时,单层由两种组分的混合物组成,而超过πex,则压缩HSA分子界面,但不是全部。实际上,尽管在该区域中DPPC域在界面上占主导地位,但可以在BAM图像中观察到蛋白质分子以堆积“环”的形式存在。此外,相对厚度测量结果证实了这一假设。

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