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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Hyaluronan incorporation into model contact lens hydrogels as a built‐in lubricant: Effect of hydrogel composition and proteoglycan 4 as a lubricant in solution
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Hyaluronan incorporation into model contact lens hydrogels as a built‐in lubricant: Effect of hydrogel composition and proteoglycan 4 as a lubricant in solution

机译:透明质酸融入模型隐形眼镜水凝胶作为内置润滑剂:水凝胶组合物和蛋白多糖4作为溶液中的润滑剂的影响

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Abstract Contact lens friction significantly correlates with subjective comfort. Hyaluronan (HA) and proteoglycan 4 (PRG4) are natural boundary lubricants present in the body. The objective of this study was to assess the effect of crosslinked HA into the bulk of model contact lens materials pHEMA, pHEMA/TRIS, and DMAA/TRIS on surface wettability, protein sorption, and boundary lubricating properties at a material–cornea biointerface, both alone and synergistically with PRG4 in solution. Surface wettability was assessed by water contact angle measurement, protein sorption by lysozyme sorption assay, and boundary lubricating properties using an in vitro friction test method. HA incorporation (HA inc ) increased the surface wettability of all materials, and reduced protein sorption for pHEMA and DMAA/TRIS. HA inc increased friction for pHEMA, and DMAA/TRIS, whereas a decrease was observed for pHEMA/TRIS. A combination of HA inc and PRG4 sol had a synergistic effect of reducing friction only for pHEMA/TRIS. This combination had similar friction reduction compared with PRG4 sol alone for DMAA/TRIS. These results indicate HA incorporation could be an effective internal wetting agent, antiadhesive, and boundary lubricant for pHEMA/TRIS silicone hydrogels. In conclusion, HA incorporation can reduce friction of hydrogels alone and in combination with PRG4 in solution, though in a hydrogel composition‐dependent (e.g., TRIS) manner. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1818–1826, 2018.
机译:摘要隐形眼镜摩擦与主观舒适显着相关。透明质酸(HA)和蛋白质酚4(PRG4)是身体中存在的自然边界润滑剂。本研究的目的是评估交联的HA进入大量模型隐形眼镜材料PHEMA,PHEMA / TRIS和DMAA / TRIS的表面润湿性,蛋白质吸附和边界润滑性质,兼除单独,在解决方案中与PRG4同步。通过水接触角测量,溶菌酶吸附测定法评估表面润湿性,以及使用体外摩擦试验方法的边界润滑性能。 HA Incoration(HA INC)增加了所有材料的表面润湿性,并降低了PhEMA和DMAA / Tris的蛋白质吸附。 HA INC增加了PHEMA和DMAA / TRIS的摩擦,而PHEMA / TRIS观察到降低。 HA INC和PRG4 SO1的组合仅对PhEMA / TRIS减少摩擦的协同效应。与DMAA / TRIS仅与PRG4 SOL相比,这种组合具有类似的摩擦减少。这些结果表明,HA掺入可以是有效的内部润湿剂,抗粘附和用于PHEMA / TRIS硅氧烷水凝胶的边界润滑剂。总之,HA掺入可以单独减少单独水凝胶的摩擦,并与溶液中的PRG4组合,但在水凝胶组合物依赖性(例如,TRIS)的方式中。还2017年Wiley期刊,Inc。J生物保解率B部分:苹果生物摩特,106B:1818-1826,2018。

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