从人羊水中分离的原始未使用的肺表面活性剂形成高度凝聚的界面膜。

IF 2.2 Q3 PHYSIOLOGY
Juan Carlos Castillo-Sánchez, Ainhoa Collada, Emma Batllori-Badia, Alberto Galindo, Antonio Cruz, Jesús Pérez-Gil
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引用次数: 0

摘要

肺表面活性剂是一种脂质/蛋白质复合物,覆盖在肺泡气液界面上,使表面张力最小化,促进呼吸力学。天然表面活性剂(NS)通常是从动物肺部的灌洗液中获得的,由于暴露于呼吸动力学和高度氧化环境,它已经经历了结构改变。我们在这里研究了由人羊水表面活性剂(AFS)形成的界面膜的结构,认为它保持了完全有效但尚未使用的表面活性剂的结构和功能特征,因为它还没有受到呼吸动力学的影响。结果表明,在相同的浓度和用量下,AFS比NS在界面处吸附更好,形成的膜支持更高的压缩率。AFS形成的膜表现出凝聚区,不包括单纯吸附的荧光标记脂质,而NS形成的膜一旦受到压缩膨胀动力学的影响,只表现出有序结构域的分离。最后,AFS膜与固体状高有序相的存在相一致,而NS在类似条件下由液体无序/液体有序相共存组成。这表明由新鲜分泌的表面活性剂形成的活性表面活性剂膜可能比以前想象的要浓缩得多,可能在呼吸力学下提供最大的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The pristine unused pulmonary surfactant isolated from human amniotic fluid forms highly condensed interfacial films.

Pulmonary surfactant is a lipid/protein complex that coats the alveolar air-liquid interface to minimize surface tension facilitating breathing mechanics. Native surfactant (NS) is typically obtained from lavages of animal lungs, where it has gone through structural alterations as a result of exposure to respiratory dynamics and highly oxidative environments. We have studied here the structure of interfacial films formed by human amniotic fluid surfactant (AFS), thought to maintain the structural and functional features of a fully operative still non-used surfactant, as it has not been subjected to breathing dynamics yet. The results show that AFS adsorbs better at the interface, to form films supporting higher compression rates, than NS upon spreading at comparable concentrations and amounts. Films formed by AFS exhibit condensed regions excluding fluorescently labeled lipids from the mere adsorption, while films formed by NS only showed segregation of ordered-like domains once subjected to compression-expansion dynamics. Finally, AFS films were consistent with the presence of solid-like highly ordered phases, while NS consisted under comparable conditions of a coexistence of liquid-disordered/liquid-ordered fluid phases. This indicates that operative surfactant films formed by freshly secreted surfactant could be much more condensed than previously supposed, likely providing maximal stability under breathing mechanics.

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来源期刊
Physiological Reports
Physiological Reports PHYSIOLOGY-
CiteScore
4.20
自引率
4.00%
发文量
374
审稿时长
9 weeks
期刊介绍: Physiological Reports is an online only, open access journal that will publish peer reviewed research across all areas of basic, translational, and clinical physiology and allied disciplines. Physiological Reports is a collaboration between The Physiological Society and the American Physiological Society, and is therefore in a unique position to serve the international physiology community through quick time to publication while upholding a quality standard of sound research that constitutes a useful contribution to the field.
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