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通过原子力显微镜对未佩戴的硅氧烷水凝胶软性隐形眼镜进行微观观察。

Microscopic observation of unworn siloxane-hydrogel soft contact lenses by atomic force microscopy.

作者信息

González-Méijome José M, López-Alemany Antonio, Almeida José B, Parafita Manuel A, Refojo Miguel F

机构信息

Department of Physics (Optometry), School of Sciences, University of Minho, Braga, Portugal.

出版信息

J Biomed Mater Res B Appl Biomater. 2006 Feb;76(2):412-8. doi: 10.1002/jbm.b.30387.

DOI:10.1002/jbm.b.30387
PMID:16184533
Abstract

In the present study, samples of lotrafilcon A, balafilcon A, and galyfilcon A contact lenses were observed by atomic force microscopy (AFM) in tapping mode at areas ranging from 0.25 to 400 microm2. Mean roughness (Ra), root-mean-square roughness (Rms) and maximum roughness (Rmax) in nanometers were obtained for the three lens materials at different magnifications. The three contact lenses showed significantly different surface topography. However, roughness values were dependent of the surface area to be analyzed. For a 1 microm2 area, statistics revealed a significantly more irregular surface of balafilcon A (Ra = 6.44 nm; Rms = 8.30 nm; Rmax = 96.82 nm) compared with lotrafilcon A (Ra = 2.40 nm; Rms = 3.19 nm; Rmax = 40.89 nm) and galyfilcon A (Ra = 1.40 nm; Rms = 1.79 nm; Rmax = 15.33 nm). Ra and Rms were the most consistent parameters, with Rmax presenting more variability for larger surface areas. The higher roughness of balafilcon A is attributed to the plasma oxidation treatment used to improve wettability. Conversely, galyfilcon A displays a smoother surface. Present observations could have implications in clinical aspects of siloxane-hydrogel contact lens wear such as lens spoliation, resistance to bacterial adhesion, or mechanical interaction with the ocular surface.

摘要

在本研究中,采用轻敲模式的原子力显微镜(AFM)在面积范围为0.25至400平方微米的区域观察了lotrafilcon A、balafilcon A和galyfilcon A隐形眼镜样本。在不同放大倍数下,获得了这三种镜片材料以纳米为单位的平均粗糙度(Ra)、均方根粗糙度(Rms)和最大粗糙度(Rmax)。这三种隐形眼镜显示出显著不同的表面形貌。然而,粗糙度值取决于待分析的表面积。对于1平方微米的区域,统计数据显示,与lotrafilcon A(Ra = 2.40纳米;Rms = 3.19纳米;Rmax = 40.89纳米)和galyfilcon A(Ra = 1.40纳米;Rms = 1.79纳米;Rmax = 15.33纳米)相比,balafilcon A的表面明显更不规则。Ra和Rms是最一致的参数,对于更大的表面积,Rmax的变化更大。balafilcon A较高的粗糙度归因于用于改善润湿性的等离子体氧化处理。相反,galyfilcon A的表面更光滑。目前的观察结果可能对硅氧烷水凝胶隐形眼镜佩戴的临床方面有影响,如镜片损耗、抗细菌粘附性或与眼表的机械相互作用。

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