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表面活性剂浓度、压缩比和压缩速率对肺表面活性剂表面活性和动态特性的影响。

Effect of surfactant concentration, compression ratio and compression rate on the surface activity and dynamic properties of a lung surfactant.

作者信息

Saad Sameh M I, Policova Zdenka, Acosta Edgar J, Neumann A Wilhelm

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, Canada.

出版信息

Biochim Biophys Acta. 2012 Jan;1818(1):103-16. doi: 10.1016/j.bbamem.2011.10.004. Epub 2011 Oct 12.

Abstract

This paper reports dynamic surface tension experiments of a lung surfactant preparation, BLES, for a wide range of concentrations, compression ratios and compression rates. These experiments were performed using Axisymmetric Drop Shape Analysis-Constrained Sessile Drop (ADSA-CSD). The main purpose of the paper is to interpret the results in terms of physical parameters using the recently developed Compression-Relaxation Model (CRM). In the past, only the minimum surface tension was used generally for the characterization of lung surfactant films; however, this minimum value is not a physical parameter and depends on the compression protocol. CRM is based on the assumption that the dynamic surface tension response is governed by surface elasticities, adsorption and desorption of components of the lung surfactant. The ability of CRM to fit the surface tension response closely for a wide variety of parameters (compression ratio, compression rate and surfactant concentration) and produce sensible values for the elastic and kinetic parameters supports the validity of CRM.

摘要

本文报道了一种肺表面活性剂制剂BLES在广泛的浓度、压缩比和压缩速率范围内的动态表面张力实验。这些实验采用轴对称液滴形状分析-约束固着液滴法(ADSA-CSD)进行。本文的主要目的是使用最近开发的压缩-松弛模型(CRM)根据物理参数解释实验结果。过去,通常仅使用最小表面张力来表征肺表面活性剂膜;然而,这个最小值不是一个物理参数,并且取决于压缩方案。CRM基于这样的假设,即动态表面张力响应受肺表面活性剂成分的表面弹性、吸附和解吸控制。CRM能够针对各种参数(压缩比、压缩速率和表面活性剂浓度)紧密拟合表面张力响应,并为弹性和动力学参数产生合理的值,这支持了CRM的有效性。

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