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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Nanostructure changes in lung surfactant monolayers induced by interactions between palmitoyloleoylphosphatidylglycerol and surfactant protein B
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Nanostructure changes in lung surfactant monolayers induced by interactions between palmitoyloleoylphosphatidylglycerol and surfactant protein B

机译:棕榈酰油酰磷脂酰甘油与表面活性剂蛋白B相互作用引起的肺表面活性剂单层纳米结构变化

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Developing synthetic lung surfactants to replace animal extracts requires a fundamental understanding of the roles of the various lipids and proteins in native lung surfactant. We used Brewster angle microscopy (BAM), atomic force microscopy (AFM), and Langmuir isotherms to study the influence of palmitoyl-oleoylphosphatidylglycerol (POPG) in monolayers of dipalmitoylphosphatidylcholine and palmitic acid mixtures with or without dSP-B1-25, a peptide dimer based on the first 25 amino acids of surfactant protein B (SP-B). At surface pressures between 30 and 40 mN/m, only monolayers containing POPG and dSP-B1-25 showed plateaus in the isotherm similar to those in Survanta, a bovine extract replacement lung surfactant that contains native SP-B and SP-C proteins. BAM images show distinct morphological changes in the fluid phase during these plateaus, while AFM images of deposited monolayers show that multilayer structures, which we named "nanosilos", form in the fluid phase at the plateau. These nanosilos are from 50 to 300 nm in diameter and from 5 to 8 nm in height and are similar to those observed in deposited Survanta monolayers. We propose that POPG and SP-B interact to stabilize the monolayer composition by trapping POPG in three-dimensional surface-associated aggregates at high surface pressures, preventing the irreversible loss of POPG and SP-B to the subphase. [References: 62]
机译:开发合成的肺表面活性剂以替代动物提取物需要对天然肺表面活性剂中各种脂质和蛋白质的作用有基本的了解。我们使用Brewster角显微镜(BAM),原子力显微镜(AFM)和Langmuir等温线研究棕榈酰-油酰基磷脂酰甘油(POPG)在含或不含dSP-B1-25,肽二聚体的二棕榈酰磷脂酰胆碱和棕榈酸混合物的单层中的影响基于表面活性剂蛋白B(SP-B)的前25个氨基酸。在30至40 mN / m的表面压力下,仅含有POPG和dSP-B1-25的单分子层在等温线中表现出平稳状态,类似于Survanta(一种含有天然SP-B和SP-C蛋白的牛提取物替代肺表面活性剂)。 BAM图像显示了在这些高原期间流体相的明显形态变化,而沉积的单分子层的AFM图像表明,在高原的流体相中形成了多层结构(我们称为“纳米石”)。这些纳米仓的直径为50至300 nm,高度为5至8 nm,与在沉积的Survanta单层中观察到的相似。我们建议POPG和SP-B相互作用以通过在高表面压力下将POPG捕获在三维表面相关聚集体中来稳定单层组成,从而防止POPG和SP-B不可逆地损失到亚相。 [参考:62]

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