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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Influence of film composition on the morphology, mechanical properties, and surfactant recovery of phase-separated phospholipid-perfluorinated fatty acid mixed monolayers
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Influence of film composition on the morphology, mechanical properties, and surfactant recovery of phase-separated phospholipid-perfluorinated fatty acid mixed monolayers

机译:膜组成对相分离的磷脂-全氟脂肪酸混合单分子膜的形态,力学性能和表面活性剂回收率的影响

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Monolayer surfactant films composed of a mixture of phospholipids and perfluorinated (or partially fluorinated) surfactants are of potential utility for applications in pulmonary lung surfactant-based therapies. As a simple, minimal model of such a lung surfactant system, binary mixed monolayer films composed of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) and perfluorooctadecanoic acid (C18F) prepared on a simplified lung fluid mimic subphase (pH 7.4, 150 mM NaCl) have been characterized in terms of mixing thermodynamics and compressibility (measured through π-A compression isotherms), film morphology (via atomic force, fluorescence, and Brewster angle microscopy), as well as spreading rate and hysteresis response to repeated expansion-contraction cycles for a variety of compositions of mixed films. Under all mixing conditions, films and their components were found to be completely immiscible and phase-separated, though there were significant changes in the aforementioned film properties as a function of composition. Of particular note was the existence of a maximum in the extent of immiscibility (characterized by ΔGe _x ~π values) and enhanced surfactant recovery during hysteresis experiments at χ _(C18F) ≥ 0.30. The latter was attributed to the relatively rapid respreading rate of the perfluorinated amphiphile in comparison with DPPC alone at the air-water interface, which enhances the performance of this mixture as a potential pulmonary lung surfactant. Further, monolayer film structure could be tracked dynamically as a function of compression at the air-water interface via Brewster angle microscopy, with the C18F component being preferentially squeezed out of the film with compression, but returning rapidly upon re-expansion. In general, addition of C18F to DPPC monolayers resulted in improvements to mechanical, structural, and respreading properties of the film, indicating the potential value of these compounds as additives to pulmonary lung surfactant formulations.
机译:由磷脂和全氟化(或部分氟化)表面活性剂的混合物组成的单层表面活性剂膜在基于肺表面活性剂的治疗中具有潜在的实用性。作为这种肺表面活性剂系统的简单,最小模型,在简化的肺液模拟亚相上制备了由1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)和全氟十八烷酸(C18F)组成的二元混合单层膜( pH 7.4、150 mM NaCl)的特征在于混合热力学和可压缩性(通过π-A压缩等温线测量),薄膜形态(通过原子力,荧光和Brewster角显微镜)以及扩散速率和滞后响应各种混合膜组成的重复膨胀-收缩循环。在所有混合条件下,发现膜和它们的组分是完全不溶混和相分离的,尽管上述膜的性质随组成的变化有很大的变化。特别值得注意的是,在χ_(C18F)≥0.30的磁滞实验过程中,不溶混程度(以ΔGe_x〜π值表征)存在最大值,并且表面活性剂的回收率提高。后者归因于全氟两亲物与单独的DPPC在空气-水界面处的相对较快的再扩散速率,从而增强了该混合物作为潜在的肺部肺表面活性剂的性能。此外,可以通过布鲁斯特角显微镜在气-水界面处根据压缩情况动态跟踪单层薄膜结构,其中C18F组分优先通过压缩从薄膜中挤出,但在重新膨胀后迅速返回。通常,在DPPC单层中添加C18F可以改善薄膜的机械,结构和再铺展性能,表明这些化合物作为肺部肺表面活性剂制剂的潜在价值。

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