Dwivedi Mridula, Brinkkötter Marc, Harishchandra Rakesh Kumar, Galla Hans-Joachim
NRW International Graduate School of Chemistry and Institute of Biochemistry, Germany; Institute of Biochemistry, Westfälische Wilhelms Universität, Wilhelm-Klemm-Str.2, 48149 Münster, Germany.
Institute of Biochemistry, Westfälische Wilhelms Universität, Wilhelm-Klemm-Str.2, 48149 Münster, Germany.
Biochim Biophys Acta. 2014 Oct;1838(10):2716-27. doi: 10.1016/j.bbamem.2014.05.007. Epub 2014 May 20.
The tear fluid lipid layer is present at the outermost part of the tear film which lines the ocular surface and functions to maintain the corneal surface moist by retarding evaporation. Instability in the structure of the tear fluid lipid layer can cause an increased rate of evaporation and thus dry eye syndrome. Ectoine has been previously shown to fluidize lipid monolayers and alter the phase behavior. In the current study we have investigated the effect of ectoine on the artificial tear fluid lipid layer composed of binary and ternary lipid mixtures of dipalmitoyl phosphatidylcholine (DPPC), cholesteryl esters and tri-acyl-glycerols. The focus of our study was mainly the structural and the biophysical aspects of the artificial tear fluid lipid layer using surface activity studies and topology analysis. The presence of ectoine consistently causes an expansion of the pressure-area isotherm indicating increased intermolecular spacing. The topology studies showed the formation of droplet-like structures due to the addition of ectoine only when tri-acyl-glycerol is present in the mixture of DPPC and chol-palmitate, similar to the natural meibomian lipids. Consequently, the hypothesis of an exclusion of tri/di-acyl-glycerol from the meibomian lipid film in the presence of ectoine in the subphase is confirmed. A model describing the effect of ectoine on meibomian lipid films is further presented which may have an application for the use of ectoines in eye drops as a treatment for the dry eye syndrome.
泪液脂质层存在于泪膜的最外层,泪膜覆盖眼表,其功能是通过减缓蒸发来保持角膜表面湿润。泪液脂质层结构的不稳定会导致蒸发速率增加,从而引发干眼症。此前已表明,依克多因可使脂质单层流化并改变相行为。在本研究中,我们研究了依克多因对由二棕榈酰磷脂酰胆碱(DPPC)、胆固醇酯和三酰甘油的二元和三元脂质混合物组成的人工泪液脂质层的影响。我们研究的重点主要是利用表面活性研究和拓扑分析来探讨人工泪液脂质层的结构和生物物理方面。依克多因的存在始终会导致压力-面积等温线的扩展,表明分子间间距增加。拓扑研究表明,仅当三酰甘油存在于DPPC和棕榈酸胆固醇的混合物中时,添加依克多因会形成液滴状结构,这与天然睑板腺脂质相似。因此,在亚相中存在依克多因时,三酰甘油/二酰甘油被排除在睑板腺脂质膜之外的假设得到了证实。进一步提出了一个描述依克多因对睑板腺脂质膜影响的模型,该模型可能适用于将依克多因用于眼药水治疗干眼症。