首页> 外文期刊>European Biophysics Journal >Effects of pulmonary surfactant proteins SP-B and SP-C and calcium ions on the surface properties of hydrophobic fractions of lung surfactant.
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Effects of pulmonary surfactant proteins SP-B and SP-C and calcium ions on the surface properties of hydrophobic fractions of lung surfactant.

机译:肺表面活性剂蛋白SP-B和SP-C以及钙离子对肺表面活性剂疏水级分表面性质的影响。

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This study focused on two hydrophobic fractions (HF-A and HF-B) isolated from porcine lung surfactant (LS) that had similar phospholipid composition, but HF-A consisted of the hydrophobic LS specific proteins (SP-B and SP-C), in contrast to HF-B. Monolayers spread in a Langmuir trough were formed at the air/water interface of both fractions and the rate of adsorption-desorption and the respreading potential of the LS constituents was studied during six consecutive compression/decompression cycles of the monolayers. By drawing a comparison between the behavior of HF-A and HF-B monolayers on the subphase of 150 mM NaCl, either with or without additional Ca2+, we estimated the role of hydrophobic LS proteins and Ca2+ ions for LS surface activity. The results demonstrated much higher ability of the HF-A sample, compared to HF-B, to maintain lower surface tension (gamma) during monolayer compression and its better respreading capacity during decompression. For instance, at a surface concentration corresponding to 80 A2 per phospholipid molecule, the HF-A monolayers showed a much lower gamma max value (surface tension at 100% of the trough area), being ca. 31.0 mN/m, compared to the HF-B monolayers (gamma max approximately equal to 62.0 mN/m). The surface tension after compression to 20% of the initial area (gamma min) reached ca. 7.0 and 19.0 mN/m in the HF-A and HF-B monolayers, respectively. Better respreading of the HF-A monolayers compared to the HF-B monolayers was due to the faster adsorption and spreading of LS phospholipids during decompression, facilitated by the hydrophobic proteins. As the phospholipid composition of both fractions was similar, we showed that the hydrophobic surfactant proteins were responsible also for the prevention of the irreversible loss of material from the surface during monolayer compression/decompression. The effects observed demonstrated also that the hydrophobic surfactant proteins were the stronger determinant, compared with Ca2+ ions, for the surface tension decrease and respreading of the monolayers during film compression/decompression. For instance, when the HF-A monolayers were spread on a subphase with an additional 5 mM Ca2+ ion content, no significant changes were detected in the gamma min and gamma max values between the first and sixth cycle, compared to the monolayers spread on a subphase of 150 mM NaCl only. However, in the absence of positively charged SP-B and SP-C (HF-B sample) in highly compressed monolayers, Ca2+ ions were able to cause the effects shown by SP-B and SP-C, although to a less extent. The role of the electrostatic and hydrophobic interactions is discussed for the better respreading of LS components in the presence of LS proteins and Ca2+ ions.
机译:这项研究的重点是从猪肺表面活性剂(LS)分离出的两个疏水级分(HF-A和HF-B),它们具有相似的磷脂成分,但HF-A由疏水性LS特异性蛋白(SP-B和SP-C)组成,与HF-B相反。在两个部分的空气/水界面处都形成了分布在Langmuir槽中的单分子层,并且在连续的六个单分子层压缩/减压循环过程中研究了LS成分的吸附-解吸速率和再扩散潜力。通过比较HF-A和HF-B单层在150 mM NaCl子相上的行为(有或没有其他Ca2 +)之间的比较,我们估计了疏水性LS蛋白和Ca2 +离子对LS表面活性的作用。结果表明,与HF-B相比,HF-A样品在单层压缩过程中保持较低的表面张力(γ)的能力更高,而在减压过程中具有更好的再扩散能力。例如,在对应于每个磷脂分子80 A2的表面浓度下,HF-A单层显示出低得多的伽马最大值(在槽面积的100%处的表面张力),约为。与HF-B单层相比为31.0 mN / m(伽马最大值约等于62.0 mN / m)。压缩到初始面积的20%(伽玛最小值)后的表面张力达到约。在HF-A和HF-B单层中分别为7.0 mN / m和19.0 mN / m。与HF-B单层相比,HF-A单层的再分散性更好,这是由于疏水蛋白促进了LS磷脂在减压期间的更快吸附和扩散。由于两个部分的磷脂组成相似,因此我们表明疏水性表面活性剂蛋白还负责防止在单层压缩/减压过程中材料从表面不可逆转的损失。观察到的效果还表明,与表面活性剂蛋白Ca2 +相比,疏水性表面活性剂蛋白是更强的决定因素,因为在膜压缩/解压缩过程中表面张力降低和单层的重新扩散。例如,当HF-A单分子层在具有5 mM Ca2 +离子含量的亚相上扩散时,与在六面体中扩散的单分子层相比,在第一和第六个循环之间未检测到γ最小值和γ最大值的显着变化。仅亚相为150 mM NaCl。但是,在高度压缩的单层中不存在带正电的SP-B和SP-C(HF-B样品)时,Ca2 +离子能够引起SP-B和SP-C所显示的效果,尽管程度较小。讨论了静电和疏水相互作用的作用,以在存在LS蛋白和Ca2 +离子的情况下更好地重新分散LS组分。

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