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研究表面固定化和游离天然眼用润滑剂在接触镜应用中的协同相互作用:透明质酸和蛋白聚糖 4(润滑素)的比较研究。

Investigating the Synergistic Interactions of Surface Immobilized and Free Natural Ocular Lubricants for Contact Lens Applications: A Comparative Study between Hyaluronic Acid and Proteoglycan 4 (Lubricin).

机构信息

Department of Chemical Engineering, McMaster University, Hamilton, Ontario L8S 4L7, Canada.

Biomedical Engineering Graduate Program, University of Calgary, Calgary, Alberta T2N 1N4, Canada.

出版信息

Langmuir. 2021 Jan 26;37(3):1062-1072. doi: 10.1021/acs.langmuir.0c02796. Epub 2021 Jan 12.

DOI:10.1021/acs.langmuir.0c02796
PMID:33434030
Abstract

The main reasons for the discontinuation of contact lens wear are ocular dryness and discomfort. Proteoglycan 4 (PRG4), a mucinous glycoprotein, and hyaluronic acid (HA), a nonsulfated linear glycosaminoglycan, are naturally present in the eye and contribute to ocular hydration and lubrication. This study aimed to investigate the impact of the structure of the recombinant human PRG4 (rhPRG4)/HA complex on contact lens properties, when one agent is grafted and the counterpart is physisorbed on the surface of model conventional or silicone contact lens materials. Investigation of the wettability, water retention, antifouling, and boundary lubricant properties of the prepared hydrogels showed that the rhPRG4/HA interactions varied with the rhPRG/HA configuration on the hydrogel surface as well as the composition of the underlying substrate used. The rhPRG4-physisorbed/HA-grafted sample was characterized by better antifouling and boundary lubricant properties on the model conventional hydrogels, while the HA-physisorbed/rhPRG4-grafted sample exhibited improved surface wettability, antifouling, and water-retentive properties on the model silicone hydrogels. The results of this study contribute to the design of biomimetic contact lens surfaces that work synergistically with ocular fluid-phase biological agents to enhance compatibility between the contact lens and the ocular environment, alleviating dry eye symptoms and improving comfort.

摘要

停戴接触镜的主要原因是眼干和不适。蛋白聚糖 4(PRG4)是一种黏蛋白糖蛋白,透明质酸(HA)是一种非硫酸化线性糖胺聚糖,它们天然存在于眼睛中,有助于眼睛的水合和润滑。本研究旨在探讨重组人 PRG4(rhPRG4)/HA 复合物的结构对接触镜性能的影响,当一种试剂接枝在模型常规或硅酮接触镜材料的表面,而另一种试剂物理吸附在表面上时。研究了制备水凝胶的润湿性、保水性、抗污性和边界润滑性能,结果表明,rhPRG4/HA 相互作用随水凝胶表面上 rhPRG/HA 构型以及所使用的基底材料的组成而变化。rhPRG4 物理吸附/HA 接枝样品在模型常规水凝胶上表现出更好的抗污性和边界润滑性能,而 HA 物理吸附/rhPRG4 接枝样品在模型硅酮水凝胶上表现出更好的表面润湿性、抗污性和保水性。本研究结果有助于设计仿生接触镜表面,与眼液相间的生物制剂协同作用,增强接触镜与眼环境的相容性,缓解干眼症状,提高舒适度。

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