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聚甲基丙烯酸羟乙酯隐形眼镜的表面机械性能:暴露于可控湿度下时的粘弹性和粘附性能变化

Surface mechanical properties of pHEMA contact lenses: viscoelastic and adhesive property changes on exposure to controlled humidity.

作者信息

Opdahl Aric, Kim Seong H, Koffas Telly S, Marmo Chris, Somorjai Gabor A

机构信息

Department of Chemistry, University of California at Berkeley and Materials Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

J Biomed Mater Res A. 2003 Oct 1;67(1):350-6. doi: 10.1002/jbm.a.10054.

Abstract

The surface mechanical properties of poly(hydroxyethyl)methacrylate (pHEMA)-based contact lenses were monitored as a function of humidity by atomic force microscopy (AFM). Surface viscoelastic and adhesion values were extracted from AFM force versus distance interaction curves and were found to be strongly dependent on the bulk water content of the lens and on the relative humidity. At low relative humidity, 40-50%, the dehydration rate from the surface is faster than the hydration rate from the bulk, leading to a rigid surface region that has mechanical properties similar to those measured on totally dehydrated lenses. At relative humidity values > 60%, the dehydration rate from the lens surface rapidly decreases, leading to higher surface water content and a softer surface region. The results indicate that, in an ocular environment, although the bulk of the pHEMA contact lens is hydrated, the surface region may be in a transition between a dehydrated glassy state and a hydrated rubbery state.

摘要

通过原子力显微镜(AFM)监测了聚甲基丙烯酸羟乙酯(pHEMA)基隐形眼镜的表面机械性能随湿度的变化。从AFM力与距离相互作用曲线中提取了表面粘弹性和粘附值,发现它们强烈依赖于镜片的本体含水量和相对湿度。在低相对湿度(40 - 50%)下,表面的脱水速率比本体的水合速率快,导致形成一个刚性表面区域,其机械性能与在完全脱水镜片上测得的相似。在相对湿度值> 60%时,镜片表面的脱水速率迅速降低,导致表面含水量更高且表面区域更柔软。结果表明,在眼部环境中,尽管pHEMA隐形眼镜的本体是水合状态,但表面区域可能处于脱水玻璃态和水合橡胶态之间的转变状态。

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