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肺表面活性剂单分子层的结构模型和表面状态方程

Structural models and surface equation of state for pulmonary surfactant monolayers.

作者信息

Zeng Zuoxiang, Li Dan, Xue Weilan, Sun Li

机构信息

Chemical Engineering Institute, East China University of Science and Technology, Shanghai, China.

出版信息

Biophys Chem. 2007 Dec;131(1-3):88-95. doi: 10.1016/j.bpc.2007.09.006. Epub 2007 Sep 20.

Abstract

A simple surface equation of state is proposed to describe pi-A isotherms of pulmonary surfactant monolayers. The monolayer is considered as undergoing three characteristic states during the compression: the disordered liquid-expanded (LE) state, the ordered liquid-condensed (LC) state and the collapse state. Structural models of pure protein (SP-B and SP-C) monolayer are proposed to interpret the behavior characteristics of monolayer in the states. The area, ALC, is defined as an instantaneous LC-state area when the monolayer is under the complete LC state. The area, At, is defined as a transition area from the ordered LC state to the collapse state. And the collapse pressure, pi(max), is defined as the maximum surface pressure that the monolayer can bear before collapse. The ideal equation of state is revised by ALC, At and pi(max), and a new equation of state is obtained, which is applicable for pure components of pulmonary surfactant. The theoretical pi-A isotherms described by the equation of state are compared with the experimental ones for SP-B, SP-C, DPPC and DPPG, and good agreements are obtained. The equation of state is generalized to protein-lipid binary mixtures by introducing mixing rules. The predicted pi-A isotherms agree with the experimental ones for various pulmonary surfactant components and the average deviation is about 9.2%.

摘要

提出了一个简单的表面状态方程来描述肺表面活性剂单分子层的π - A等温线。单分子层在压缩过程中被认为经历三个特征状态:无序的液体扩张(LE)状态、有序的液体凝聚(LC)状态和塌陷状态。提出了纯蛋白(SP - B和SP - C)单分子层的结构模型来解释单分子层在这些状态下的行为特征。面积ALC被定义为单分子层处于完全LC状态时的瞬时LC状态面积。面积At被定义为从有序LC状态到塌陷状态的转变面积。塌陷压力π(max)被定义为单分子层在塌陷前所能承受的最大表面压力。通过ALC、At和π(max)对理想状态方程进行修正,得到了一个新的适用于肺表面活性剂纯组分的状态方程。将该状态方程所描述的理论π - A等温线与SP - B、SP - C、DPPC和DPPG的实验等温线进行比较,得到了良好的一致性。通过引入混合规则,将该状态方程推广到蛋白质 - 脂质二元混合物。预测的π - A等温线与各种肺表面活性剂组分的实验等温线相符,平均偏差约为9.2%。

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