Mimura Tatsuya, Nakagomi Ryota
Department of Ophthalmology, Teikyo University School of Medicine, Itabashi-ku, Tokyo, Japan.
Department of Ophthalmology, Tsurumi University School of Dental Medicine, Tsurumi-Ku, Yokohama, Kanagawa, Japan.
Clin Optom (Auckl). 2025 Mar 6;17:73-82. doi: 10.2147/OPTO.S512526. eCollection 2025.
Cosmetic products, such as mascara, are known to adhere to the surface of silicone hydrogel soft contact lenses (SiHySCLs), potentially affecting lens performance and comfort. However, little is known about how different SiHySCL materials influence cosmetic adhesion. Recent reports suggest that the newly introduced lehfilcon A, a 2-week frequent replacement SiHySCL with Water Gradient and Celligent technology, may exhibit reduced lipid and cosmetic adherence. This study aimed to compare the adhesion of non-waterproof mascara to four types of 2-week frequent replacement SiHySCLs to better understand the impact of lens material properties on cosmetic contamination.
Four variants of SiHySCLs were utilized: samfilcon A, comfilcon A, senofilcon A, and lehfilcon A (with 12 lenses in each category). Non-waterproof mascara was randomly applied in a cross-pattern on the SiHySCL surface using the Latin squares method. Microscopic photography and ImageJ analysis software were employed to assess the proportion of mascara adhering to the SiHySCL surface following a one-hour soak in saline solution.
The observed percentages of remaining mascara adhesion on the SiHySCL surfaces were as follows: samfilcon A (3.1±1.7%), comfilcon A (6.0±1.4%), senofilcon A (7.1±1.5%), and lehfilcon A (0.9±0.2%). Notably, lehfilcon A exhibited a significantly lower percentage of adhered non-water proof mascara compared to the other lenses (p<0.01).
This study demonstrates that SiHySCL material properties significantly influence mascara adhesion. Among the tested lenses, lehfilcon A showed the lowest level of mascara adherence, suggesting that its Water Gradient and Celligent technology may contribute to reduced cosmetic contamination. These findings provide valuable insights for individuals who wear makeup and use SiHySCLs, as well as for future lens material development.
诸如睫毛膏之类的化妆品已知会附着在硅水凝胶软性隐形眼镜(SiHySCLs)表面,这可能会影响镜片性能和舒适度。然而,对于不同的SiHySCL材料如何影响化妆品附着力知之甚少。最近的报告表明,新推出的lehfilcon A,一种采用水梯度和智能技术的两周频繁更换型SiHySCL,可能表现出较低的脂质和化妆品附着力。本研究旨在比较非防水睫毛膏在四种两周频繁更换型SiHySCL上的附着力,以更好地了解镜片材料特性对化妆品污染的影响。
使用了四种SiHySCL变体:samfilcon A、comfilcon A、senofilcon A和lehfilcon A(每类12片镜片)。采用拉丁方方法将非防水睫毛膏以交叉图案随机涂抹在SiHySCL表面。使用显微镜摄影和ImageJ分析软件评估在盐溶液中浸泡一小时后附着在SiHySCL表面的睫毛膏比例。
在SiHySCL表面观察到的剩余睫毛膏附着力百分比如下:samfilcon A(3.1±1.7%)、comfilcon A(6.0±1.4%)、senofilcon A(7.1±1.5%)和lehfilcon A(0.9±0.2%)。值得注意的是,与其他镜片相比,lehfilcon A附着的非防水睫毛膏百分比显著更低(p<0.01)。
本研究表明,SiHySCL材料特性显著影响睫毛膏附着力。在测试的镜片中,lehfilcon A的睫毛膏附着力最低,表明其水梯度和智能技术可能有助于减少化妆品污染。这些发现为化妆并使用SiHySCL的人以及未来的镜片材料开发提供了有价值的见解。