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用十六醇修饰小牛肺表面活性剂。

Modifying calf lung surfactant by hexadecanol.

作者信息

Alonso Coralie, Bringezu Frank, Brezesinski Gerald, Waring Alan J, Zasadzinski Joseph A

机构信息

Departments of Chemical Engineering and Materials, University of California, Santa Barbara, CA 93106-5080, USA.

出版信息

Langmuir. 2005 Feb 1;21(3):1028-35. doi: 10.1021/la047894b.

Abstract

Monolayer properties such as phase behavior, collapse pressure, and surface viscosity are determined by monolayer composition. Learning how to control these properties through simple additives is important to understanding lung surfactant monolayers and to designing optimal replacement surfactants for treatment of disease. The properties of Infasurf, a replacement lung surfactant derived from calf lung lavage organic extract, can be modified in a controlled fashion by adding hexadecanol (HD). Grazing incidence X-ray diffraction shows that the HD preferentially interacts with dipalmitoylphosphatidylcholine (DPPC), the main phospholipid component of Infasurf, in the same way as in binary mixtures of DPPC and HD. HD intercalates between the DPPC chains, which leads to a tighter packing of the two-dimensional lattice and greater stability of the solid phase. This molecular reorganization triggers changes at the macroscopic scale, leading to a greatly increased solid-phase fraction at a given surface pressure and order of magnitude increases in the surface shear viscosity. However, the collapse pressure decreases, and, hence, the minimum surface tension of the film increases.

摘要

诸如相行为、塌陷压力和表面粘度等单分子层性质由单分子层组成决定。了解如何通过简单添加剂来控制这些性质对于理解肺表面活性剂单分子层以及设计用于治疗疾病的最佳替代表面活性剂至关重要。Infasurf是一种从牛肺灌洗有机提取物中获得的替代肺表面活性剂,通过添加十六醇(HD)可以以可控方式改变其性质。掠入射X射线衍射表明,HD与Infasurf的主要磷脂成分二棕榈酰磷脂酰胆碱(DPPC)优先相互作用,其方式与DPPC和HD的二元混合物相同。HD插入DPPC链之间,这导致二维晶格更紧密堆积以及固相更大稳定性。这种分子重组在宏观尺度上引发变化,导致在给定表面压力下固相分数大幅增加以及表面剪切粘度增加几个数量级。然而,塌陷压力降低,因此,膜的最小表面张力增加。

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