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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Compatible solutes: ectoine and hydroxyectoine improve functional nanostructures in artificial lung surfactants.
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Compatible solutes: ectoine and hydroxyectoine improve functional nanostructures in artificial lung surfactants.

机译:相容的溶质:ectoine和hydroxyectoine改善了人工肺表面活性剂中的功能性纳米结构。

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Ectoine and hydroxyectoine belong to the family of compatible solutes and are among the most abundant osmolytes in nature. These compatible solutes protect biomolecules from extreme conditions and maintain their native function. In the present study, we have investigated the effect of ectoine and hydroxyectoine on the domain structures of artificial lung surfactant films consisting of dipalmitoylphosphatidylcholine (DPPC), dipalmitoylphosphatidylglycerol (DPPG) and the lung surfactant specific surfactant protein C (SP-C) in a molar ratio of 80:20:0.4. The pressure-area isotherms are found to be almost unchanged by both compatible solutes. The topology of the fluid domains shown by scanning force microscopy, which is thought to be responsible for the biophysical behavior under compression, however, is modified giving rise to the assumption that ectoine and hydroxyectoine are favorable for a proper lung surfactant function. This is further evidenced by the analysis of the insertion kinetics of lipid vesicles into the lipid-peptide monolayer, which is clearly enhanced in the presence of both compatible solutes. Thus, we could show that ectoine and hydroxyectoine enhance the function of lung surfactant in a simple model system, which might provide an additional rationale to inhalative therapy.
机译:Ectoine和hydroxyectoine属于相容性溶质家族,属于自然界中最丰富的渗透压剂。这些相容的溶质可保护生物分子免受极端条件的侵害并保持其天然功能。在本研究中,我们研究了油酸和羟基油酸对人工肺表面活性剂膜中由二棕榈酰磷脂酰胆碱(DPPC),二棕榈酰磷脂酰甘油(DPPG)和肺表面活性剂特异性表面活性剂蛋白C(SP-C)组成的畴结构的影响。比例为80:20:0.4。发现两种相容性溶质的压力区等温线几乎没有变化。扫描力显微镜显示的流体域拓扑结构被认为是造成压缩下生物物理行为的原因,但由于对其进行了修改,因此提出了这样的假设,即:ectoine和hydroxyectoine有利于适当的肺表面活性剂功能。这通过分析脂质小泡向脂质-肽单层的插入动力学进一步证明,这在两种相容性溶质的存在下明显增强。因此,我们可以证明在一个简单的模型系统中,ectoine和hydroxyectoine增强了肺表面活性剂的功能,这可能为吸入疗法提供了另外的理由。

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