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The biophysical function of pulmonary surfactant.

机译:肺表面活性剂的生物物理功能。

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Pulmonary surfactant lowers surface tension in the lungs. Physiological studies indicate two key aspects of this function: that the surfactant film forms rapidly; and that when compressed by the shrinking alveolar area during exhalation, the film reduces surface tension to very low values. These observations suggest that surfactant vesicles adsorb quickly, and that during compression, the adsorbed film resists the tendency to collapse from the interface to form a 3D bulk phase. Available evidence suggests that adsorption occurs by way of a rate-limiting structure that bridges the gap between the vesicle and the interface, and that the adsorbed film avoids collapse by undergoing a process of solidification. Current models, although incomplete, suggest mechanisms that would partially explain both rapid adsorption and resistance to collapse as well as how different constituents of pulmonary surfactant might affect its behavior.
机译:肺表面活性剂可降低肺部的表面张力。生理学研究表明此功能的两个关键方面:表面活性剂膜迅速形成;并且在呼气过程中被收缩的肺泡区域压缩时,薄膜将表面张力降低到非常低的值。这些观察结果表明,表面活性剂囊泡吸收迅速,并且在压缩过程中,被吸附的膜抵抗了从界面塌陷形成3D本体相的趋势。现有证据表明,吸附是通过限速结构发生的,该结构弥合了囊泡和界面之间的间隙,并且被吸附的膜避免了通过固化过程而崩溃。当前的模型虽然不完整,但其机制可以部分解释快速吸附和抗塌陷性以及肺表面活性剂的不同成分如何影响其行为。

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