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泪膜中脂质的组织:分子水平的观察。

Organization of lipids in the tear film: a molecular-level view.

机构信息

Institute of Biomedical Engineering and Instrumentation, Wroclaw University of Technology, Wroclaw, Poland.

J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, v.v.i., Prague, Czech Republic; Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, v.v.i., Prague, Czech Republic; Department of Physics, Tampere University of Technology, Tampere, Finland.

出版信息

PLoS One. 2014 Mar 20;9(3):e92461. doi: 10.1371/journal.pone.0092461. eCollection 2014.

Abstract

Biophysical properties of the tear film lipid layer are studied at the molecular level employing coarse grain molecular dynamics (MD) simulations with a realistic model of the human tear film. In this model, polar lipids are chosen to reflect the current knowledge on the lipidome of the tear film whereas typical Meibomian-origin lipids are included in the thick non-polar lipids subphase. Simulation conditions mimic those experienced by the real human tear film during blinks. Namely, thermodynamic equilibrium simulations at different lateral compressions are performed to model varying surface pressure, and the dynamics of the system during a blink is studied by non-equilibrium MD simulations. Polar lipids separate their non-polar counterparts from water by forming a monomolecular layer whereas the non-polar molecules establish a thick outermost lipid layer. Under lateral compression, the polar layer undulates and a sorting of polar lipids occurs. Moreover, formation of three-dimensional aggregates of polar lipids in both non-polar and water subphases is observed. We suggest that these three-dimensional structures are abundant under dynamic conditions caused by the action of eye lids and that they act as reservoirs of polar lipids, thus increasing stability of the tear film.

摘要

采用具有真实人泪膜模型的粗粒分子动力学(MD)模拟,在分子水平上研究泪膜脂质层的生物物理性质。在该模型中,极性脂质的选择反映了当前对泪膜脂质组的认识,而典型的睑板腺起源脂质则包含在厚的非极性脂质亚相中。模拟条件模拟了真实人泪膜在眨眼过程中所经历的条件。即在不同的横向压缩下进行热力学平衡模拟,以模拟不同的表面压力,并且通过非平衡 MD 模拟研究眨眼过程中系统的动力学。极性脂质通过形成单分子层将非极性脂质与水分离,而非极性分子则形成厚的最外层脂质层。在横向压缩下,极性层波动并且发生极性脂质的分类。此外,还观察到极性脂质在非极性和水亚相中形成三维聚集体。我们认为,在由眼睑作用引起的动态条件下,这些三维结构很丰富,并且它们充当极性脂质的储库,从而增加泪膜的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6230/3961367/c36396abc3dd/pone.0092461.g001.jpg

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