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磨损的硬性透气性(RGP)镜片的多种表面特性与铜绿假单胞菌的黏附

Multiple surface properties of worn RGP lenses and adhesion of Pseudomonas aeruginosa.

作者信息

Bruinsma G M, Rustema-Abbing M, de Vries J, Busscher H J, van der Linden M L, Hooymans J M M, van der Mei H C

机构信息

Department of Biomedical Engineering, University of Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands.

出版信息

Biomaterials. 2003 Apr;24(9):1663-70. doi: 10.1016/s0142-9612(02)00542-2.

Abstract

The aim of this study is to determine rigid gas permeable (RGP) lens surface properties prior to and after wear that are influential on adhesion of Pseudomonas aeruginosa. After 10 and 50 days of wear and after end-stage use, lenses were collected for determination of physico-chemical surface properties and bacterial adhesion in a parallel plate flow chamber. Water contact angles on unused RGP lenses amounted 47+/-13 degrees and were affected by wear. In addition, %O at the lens surfaces, as determined by X-ray photoelectron spectroscopy increased after use for 10 and 50 days, but decreased after end-stage wear. The %N hardly increased after wear and, in line, SDS-PAGE did not indicate adsorbed proteins. The surface roughness of the lenses, as measured by atomic force microscopy amounted 9 nm after 10 and 50 days of use, but end-stage lenses were significantly rougher (48+/-23 nm). Moreover, initial deposition of P. aeruginosa #3 increased with increasing roughness for end-stage lenses. Multiple regression analysis, however, revealed that both physical and chemical surface properties were predictive for initial bacterial deposition to lens surfaces. After 10 days of wear, bacterial deposition was governed by the water contact angle, surface roughness, %O, %N, and %Si, while after 50 days of wear the surface roughness, %N, and %Si were found predictive for bacterial deposition. Initial bacterial deposition to end-stage lenses was solely dependent on the surface roughness. Summarizing, physico-chemical surface properties of RGP lenses change slightly during the first 10-50 days of wear, but end-stage lenses all had increased surface roughness, concurrent with increased bacterial adhesion.

摘要

本研究的目的是确定硬性透气性(RGP)镜片在佩戴前后对铜绿假单胞菌黏附产生影响的表面特性。在佩戴10天和50天后以及使用末期后,收集镜片以测定其物理化学表面特性以及在平行平板流动腔中的细菌黏附情况。未使用的RGP镜片上的水接触角为47±13度,且受佩戴影响。此外,通过X射线光电子能谱测定的镜片表面的%O在使用10天和50天后增加,但在使用末期后降低。%N在佩戴后几乎没有增加,同样,SDS-PAGE未显示有吸附蛋白。通过原子力显微镜测量,镜片在使用10天和50天后的表面粗糙度为9纳米,但末期镜片明显更粗糙(48±23纳米)。此外,末期镜片上铜绿假单胞菌#3的初始沉积随着粗糙度的增加而增加。然而,多元回归分析表明,物理和化学表面特性均对细菌在镜片表面的初始沉积具有预测性。佩戴10天后,细菌沉积受水接触角、表面粗糙度、%O、%N和%Si的影响,而佩戴50天后,表面粗糙度、%N和%Si被发现对细菌沉积具有预测性。细菌在末期镜片上的初始沉积仅取决于表面粗糙度。总之,RGP镜片的物理化学表面特性在佩戴的前10 - 50天内略有变化,但末期镜片的表面粗糙度均增加,同时细菌黏附也增加。

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