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原位、体内及在可控气泡表面活性剂测定仪中的表面活性。

Surface activity in situ, in vivo, and in the captive bubble surfactometer.

作者信息

Schürch S, Bachofen H, Possmayer F

机构信息

Respiratory Research Group, Department of Physiology and Biophysics Health Sciences Centre, University of Calgary, 3330 Hospital Drive NW, AB T2N4N1, Calgary, Canada.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2001 May;129(1):195-207. doi: 10.1016/s1095-6433(01)00316-6.

Abstract

For studies of the mechanical effects of lung surfactants, the captive bubble surfactometer (CBS) combines the advantages of the continuous film of Pattle's bubbles with the feasibility of the Langmuir-Wilhelmy balance to produce surface tension-area hysteresis loops. The CBS allows the compression of films to very low and stable surface tensions of 1-2 mN/m. Such low and stable surface tensions are in line with results obtained from pressure-volume studies on excised lungs. In addition, the CBS is useful to test other essential physical properties of the surfactant system, including: (1) rapid film formation (within seconds) through adsorption from the hypophase; (2) low film compressibility with a fall in surface tension to very low (<2 mN/m) values during surface compression; and (3) effective replenishment of the surface film on expansion by the incorporation of surfactant material from material associated with the surface (the surface associated surfactant reservoir). Morphological observations of films fixed in situ or in vitro reveal frequently their multilayered structure, which is consistent with the concept of the surface reservoir. The deviation of the bubbles from a Laplacian shape at very low surface tension and the morphological observations suggest that the surfactant film cannot be considered a simple monolayer.

摘要

对于肺表面活性剂力学效应的研究,俘获气泡表面张力仪(CBS)结合了帕特尔气泡连续膜的优点以及朗缪尔 - 威廉米天平产生表面张力 - 面积滞后环的可行性。CBS能够将膜压缩至非常低且稳定的1 - 2 mN/m表面张力。这种低且稳定的表面张力与对离体肺进行压力 - 容积研究所得结果一致。此外,CBS对于测试表面活性剂系统的其他重要物理性质也很有用,包括:(1)通过从下相吸附在数秒内快速形成膜;(2)在表面压缩过程中膜具有低压缩性,表面张力降至非常低(<2 mN/m)的值;(3)通过从与表面相关的物质(表面相关表面活性剂储备)中掺入表面活性剂材料,在膨胀时有效补充表面膜。对原位或体外固定的膜进行形态学观察经常揭示其多层结构,这与表面储备的概念一致。在非常低的表面张力下气泡偏离拉普拉斯形状以及形态学观察表明,表面活性剂膜不能被视为简单的单分子层。

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