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脂质饱和度与人类泪液脂质的流变性。

Lipid Saturation and the Rheology of Human Tear Lipids.

机构信息

Biomaterials and Biointerfaces Laboratory, Department of Optics and Spectroscopy, Faculty of Physics, St. Kliment Ohridski University of Sofia, Sofia 1164, Bulgaria.

Department of Ophthalmology and Visual Sciences, University of Louisville, Louisville, KY 40202, USA.

出版信息

Int J Mol Sci. 2019 Jul 12;20(14):3431. doi: 10.3390/ijms20143431.

Abstract

Elevated levels of acyl chain saturation of meibomian lipids are associated with enhanced tear film (TF) stability in infants to shortened TF breakup time with meibomian gland dysfunction. Thus, the effect of saturation on the surface properties of human TF lipids (TFLs) using a Langmuir surface balance and Brewster angle microscopy was studied. Lipid phase transitions were measured using infrared spectroscopy. The raise in the % of saturation resulted in thicker, and more elastic films at π = 12 mN/m, with the effects being proportional to the saturation level. At the same time, at lower (≤10 mN/m) π, the raise in saturation resulted in an altered spreading and modified structure of TFL layers. The strong impact of saturation on TFL surface properties correlated with a saturation induced increase of the TFL acyl chain order, phase transition temperature, and lipid-lipid interactions. The native TFL order and π were significantly greater, compared with native meibum collected from the same individual. Aggregation of lipids on the tear surface due to saturation was not as significant as it was for meibum. Although the surface pressure/area isotherms for TFL were similar for meibum, differences in rheology and phase transition parameters warrant the study of both.

摘要

研究了使用 Langmuir 表面天平(Langmuir surface balance)和布鲁斯特角显微镜(Brewster angle microscopy)研究酰基链饱和度对人泪膜脂质(TFL)表面性质的影响。使用红外光谱法测量脂质相转变。饱和度的提高导致在π = 12 mN/m 时形成更厚且更有弹性的膜,其效果与饱和度水平成正比。同时,在较低(≤10 mN/m)的π下,饱和度的提高导致 TFL 层的铺展和结构发生改变。饱和度对 TFL 表面性质的强烈影响与 TFL 酰基链有序性、相变温度和脂质-脂质相互作用的饱和度诱导增加有关。与从同一供体收集的天然睑脂相比,天然 TFL 的有序性和π明显更高。由于饱和度导致的脂质在泪膜表面的聚集并不像在睑脂中那样明显。尽管 TFL 的表面压/面积等温线与睑脂相似,但流变学和相变参数的差异需要对两者进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4599/6678947/33356bd61334/ijms-20-03431-g001.jpg

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