Low friction hydrogel with diclofenac eluting ability for dry eye therapeutic contact lenses

隐形眼镜 透氧性 材料科学 润湿 润滑 接触角 生物医学工程 溶菌酶 复合材料 自愈水凝胶 甲基丙烯酸酯 化学 聚合物 眼科 高分子化学 氧气 有机化学 医学 生物化学 共聚物
作者
Diana Silva,M. Margarida Oliveira,Carolina Marto-Costa,João Teixeira,Madalena Salema‐Oom,Carlos A. Pinto,Jorge A. Saraiva,Ana C. Marques,Laurence Fitzhenry,Ana Paula Serro
出处
期刊:Methods [Elsevier BV]
卷期号:234: 67-84
标识
DOI:10.1016/j.ymeth.2024.11.015
摘要

When placed in the eye, contact lenses (CLs) disturb the tear fluid and affect the natural tribological behaviour of the eye. The disruption in the contact mechanics between the ocular tissues can increase frictional shear stress and ocular dryness, causing discomfort. Ultimately, continuous CLs wear can trigger inflammation which is particularly critical for people suffering from dry eye. In this work, a double strategy was followed to obtain therapeutic daily disposable CLs for dry eye: a hydroxyethyl methacrylate (HEMA) based hydrogel was coated with two natural polysaccharides, chitosan (CHI) and hyaluronic acid (HA) and posteriorly loaded with an anti-inflammatory drug (diclofenac, DCF). Material sterilisation was carried out by high hydrostatic pressure (HHP) combined with moderate temperature. The friction coefficient (μ) was determined in the presence of different tear biomolecules (cholesterol, lysozyme and albumin) using a nanotribometer. Drug release experiments were performed in static and in hydrodynamic conditions. The material was extensively characterised, regarding surface morphology/topography, optical properties, water content and swelling behaviour, wettability, ionic and oxygen permeability and mechanical properties. It was found that the coating did not impair the physico-chemical properties relevant for the material's application in CLs. Besides, it also ensured a sustained release of DCF for 24 h in tests performed in hydrodynamic conditions that simulate those found in the eye, increasing significantly the amount of drug released. It reduced friction, improving the lubrication ability of the hydrogel, and presented antibacterial properties against S. aureus, P. aeruginosa and B. Cereus. The coated samples did not reveal any signs of cytotoxicity or potential eye irritation. Overall, the coating of the hydrogel may be useful to produce daily CLs able to alleviate dry eye symptoms and the discomfort of CLs wearers.
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