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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structures of pulmonary surfactant films adsorbed to an air-liquid interface in vitro
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Structures of pulmonary surfactant films adsorbed to an air-liquid interface in vitro

机译:肺表面活性剂薄膜在体外吸附于气液界面的结构

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摘要

Phospholipid films can be preserved in vitro when adsorbed to a solidifiable hypophase. Suspensions of natural surfactant, lipid extract surfactants, and artificial surfactants were added to a sodium alginate solution and filled into a captive bubble surfactometer (CBS). Surfactant film was formed by adsorption to the bubble of the CBS for functional tests. There were no discernible differences in adsorption, film compressibility or minimal surface tension on quasi-static or dynamic compression for films formed in the presence or absence of alginate in the subphase of the bubble. The hypophase-film complex was solidified by adding calcium ions to the suspension with the alginate. The preparations were stained with osmium tetroxide and uranyl acetate for transmission electron microscopy. The most noteworthy findings are: (1) Surfactants do adsorb to the surface of the bubble and form osmiophilic lining layers. Pure DPPC films could not be visualized. (2) A distinct structure of a particular surfactant film depends on the composition and the concentration of surfactant in the bulk phase, and on whether or not the films are compressed after their formation. The films appear heterogeneous, and frequent vesicular and multi-lamellar film segments are seen associated with the interfacial films. These features are seen already upon film formation by adsorption, but multi-lamellar segments are more frequent after film compression. (3) The rate of film formation, its compressibility, and the minimum surface tension achieved on film compression appear to be related to the film structure formed on adsorption, which in turn is related to the concentration of the surfactant suspension from which the film is formed. The osmiophilic Surface associated surfactant material seen is likely important for the surface properties and the mechanical stability of the surfactant film at the air-fluid interface. (c) 2005 Elsevier B.V. All rights reserved.
机译:当吸附到可固化的下相时,磷脂膜可以在体外保存。将天然表面活性剂,脂质提取表面活性剂和人工表面活性剂的悬浮液添加到海藻酸钠溶液中,并填充到俘获气泡表面张力计(CBS)中。通过吸附到CBS的气泡上形成表面活性剂膜,以进行功能测试。对于在气泡子相中存在或不存在藻酸盐的情况下形成的膜,准静态或动态压缩的吸附,膜可压缩性或最小表面张力没有明显差异。通过向藻酸盐中的悬浮液中添加钙离子来固化下相膜复合物。用四氧化和乙酸铀酰将制剂染色以进行透射电子显微镜检查。最值得注意的发现是:(1)表面活性剂确实吸附在气泡表面并形成渗压性衬里层。不能看到纯的DPPC胶片。 (2)特定表面活性剂膜的独特结构取决于本体相中表面活性剂的组成和浓度,以及取决于膜形成后是否被压缩。这些膜看起来是异质的,并且看到与界面膜相关的频繁的囊泡和多层膜片段。这些特征已经在通过吸附形成膜时被看到,但是在压缩膜之后多层段更频繁。 (3)膜形成的速率,其可压缩性和在膜压缩时获得的最小表面张力似乎与吸附时形成的膜结构有关,而这又与形成膜的表面活性剂悬浮液的浓度有关。形成。所见的与表面亲油性相关的表面活性剂材料可能对空气-流体界面处的表面活性剂膜的表面性质和机械稳定性很重要。 (c)2005 Elsevier B.V.保留所有权利。

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