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Corneal Cell Adhesion to Contact Lens Hydrogel Materials Enhanced via Tear Film Protein Deposition

机译:通过泪膜蛋白沉积增强角膜细胞对隐形眼镜水凝胶材料的粘附力

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摘要

Tear film protein deposition on contact lens hydrogels has been well characterized from the perspective of bacterial adhesion and viability. However, the effect of protein deposition on lens interactions with the corneal epithelium remains largely unexplored. The current study employs a live cell rheometer to quantify human corneal epithelial cell adhesion to soft contact lenses fouled with the tear film protein lysozyme. PureVision balafilcon A and AirOptix lotrafilcon B lenses were soaked for five days in either phosphate buffered saline (PBS), borate buffered saline (BBS), or Sensitive Eyes Plus Saline Solution (Sensitive Eyes), either pure or in the presence of lysozyme. Treated contact lenses were then contacted to a live monolayer of corneal epithelial cells for two hours, after which the contact lens was sheared laterally. The apparent cell monolayer relaxation modulus was then used to quantify the extent of cell adhesion to the contact lens surface. For both lens types, lysozyme increased corneal cell adhesion to the contact lens, with the apparent cell monolayer relaxation modulus increasing up to an order of magnitude in the presence of protein. The magnitude of this increase depended on the identity of the soaking solution: lenses soaked in borate-buffered solutions (BBS, Sensitive Eyes) exhibited a much greater increase in cell attachment upon protein addition than those soaked in PBS. Significantly, all measurements were conducted while subjecting the cells to moderate surface pressures and shear rates, similar to those experienced by corneal cells in vivo.
机译:从细菌粘附和生存力的角度,泪膜蛋白在隐形眼镜水凝胶上的沉积已得到很好的表征。然而,蛋白质沉积对晶状体与角膜上皮相互作用的影响尚待探索。当前的研究采用活细胞流变仪来量化人角膜上皮细胞对沾有泪膜蛋白溶菌酶的软性隐形眼镜的粘附力。将PureVision balafilcon A和AirOptix lotrafilcon B镜片在磷酸盐缓冲液(PBS),硼酸盐缓冲盐水(BBS)或敏感眼加生理盐水(敏感眼)中浸泡5天,这些溶液可以是纯溶液,也可以是溶菌酶溶液。然后将处理过的隐形眼镜与活的单层角膜上皮细胞接触两个小时,此后将隐形眼镜横向剪切。然后使用表观细胞单层松弛模量来量化细胞对隐形眼镜表面的粘附程度。对于两种类型的镜片,溶菌酶均增加了角膜细胞对隐形眼镜的粘附力,并且在蛋白质存在下,表观细胞单层弛豫模量增加了一个数量级。这种增加的幅度取决于浸泡溶液的身份:浸泡在硼酸盐缓冲溶液(BBS,敏感眼)中的镜片在添加蛋白质后,其细胞附着的增加要比浸泡在PBS中的镜片大得多。值得注意的是,所有测量都是在使细胞经受适度的表面压力和剪切速率的同时进行的,这与体内角膜细胞所经历的相似。

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