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通过飞行时间二次离子质谱法对传统水凝胶和硅水凝胶隐形眼镜表面进行表征。

Characterization of the surface of conventional hydrogel and silicone hydrogel contact lenses by time-of-flight secondary ion mass spectrometry.

作者信息

Maldonado-Codina Carole, Morgan Philip B, Efron Nathan, Canry Jean-Claude

机构信息

Eurolens Research, Department of Optometry and Neuroscience, UMIST, Manchester, United Kingdom.

出版信息

Optom Vis Sci. 2004 Jun;81(6):455-60. doi: 10.1097/01.opx.0000135099.01664.3d.

DOI:10.1097/01.opx.0000135099.01664.3d
PMID:15201719
Abstract

PURPOSE

To characterize the surfaces of unworn conventional hydrogel and silicone hydrogel contact lenses.

METHODS

Near-identical formulations of poly(hydroxyethyl methacrylate) (pHEMA) were used to manufacture lathe-cut, spun-cast, and cast-molded contact lenses. The surfaces of two of each of these lens types and two of each of two commercially available silicone hydrogel lenses-balafilcon A (PureVision) and lotrafilcon A (Focus Night and Day)-were analyzed using time-of-flight secondary ion mass spectrometry (ToF-SIMS).

RESULTS

The ToF-SIMS spectra revealed the presence of the bulk polymer pHEMA at the surface of all three hydrogel lenses, along with other contaminants, such as poly(dimethyl siloxane), alkyl sulfates, alkyl-aryl sulfonates, dioctyl phthalate, Irgafos 168, sodium, chlorine, aluminum, potassium, calcium, copper, and fluorine, which are primarily derived from the various processing steps undertaken in lens manufacture, handling, and storage. The amount of bulk polymer detected at the surface of the PureVision lens was greater than that detected at the surface of the Night and Day lens. In addition, contaminants similar to those found on the surfaces of the conventional hydrogel lenses were detected. The Focus Night and Day lens appears to be coated with an organo-nitrogen material, which results from the plasma deposition of reactive precursors on the surface.

CONCLUSIONS

We confirm that ToF-SIMS has the capacity to characterize the surface chemistry of contact lenses. The ongoing application of this technique can assist researchers and clinicians to understand the clinical performance of contact lenses.

摘要

目的

表征未使用的传统水凝胶和硅水凝胶隐形眼镜的表面。

方法

使用近乎相同配方的聚甲基丙烯酸羟乙酯(pHEMA)制造车削切割、旋铸和铸模成型的隐形眼镜。使用飞行时间二次离子质谱(ToF-SIMS)分析每种类型的两枚此类隐形眼镜以及两种市售硅水凝胶隐形眼镜(balafilcon A(PureVision)和lotrafilcon A(Focus Night and Day))中各两枚的表面。

结果

ToF-SIMS光谱显示,在所有三种水凝胶隐形眼镜的表面均存在本体聚合物pHEMA,以及其他污染物,如聚二甲基硅氧烷、烷基硫酸盐、烷基芳基磺酸盐、邻苯二甲酸二辛酯、Irgafos 168、钠、氯、铝、钾、钙、铜和氟,这些主要源自隐形眼镜制造、处理和储存过程中所采取的各种加工步骤。在PureVision隐形眼镜表面检测到的本体聚合物量大于在Night and Day隐形眼镜表面检测到的量。此外,还检测到与传统水凝胶隐形眼镜表面发现的污染物类似的污染物。Focus Night and Day隐形眼镜表面似乎涂覆有有机氮材料,这是由反应性前体在表面的等离子体沉积导致的。

结论

我们证实ToF-SIMS有能力表征隐形眼镜的表面化学性质。该技术的持续应用可帮助研究人员和临床医生了解隐形眼镜的临床性能。

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