Tsai Hsin-Yi, Hsieh Yu-Chen, Lin Yu-Hsuan, Chang Han-Chao, Tang Yu-Hsiang, Huang Kuo-Cheng
Taiwan Instrument Research Institute, National Applied Research Laboratories, Hsinchu 30076, Taiwan.
Micromachines (Basel). 2019 Jun 13;10(6):394. doi: 10.3390/mi10060394.
The widely used rigid gas permeable (RGP) contact lenses provide higher oxygen permeability and tear exchange rate than do soft contact lenses. However, their wettability warrants improvement to enhance the wearing comfort. This study used UV laser (wavelength = 355 nm) to modify the surface properties of RGP contact lenses with materials of Boston XO (Bausch & Lomb Incorporated). Briefly, the mesh pattern was fabricated on the RGP contact lens surface by using the laser and smoothed by using oxygen plasma; the enhanced hydrophilic efficiency was analyzed using contact angle measurement. The experiment results indicated that the contact angle of the lens material decreased by approximately 10°-20° when the pitch of mesh pattern was <50 μm under a 500-mm/s scanning speed. The oxygen plasma enhanced surface wettability with a decreased contact angle (40°). The hydrophilic characteristic of the UV laser and oxygen plasma-treated surface was twice that of oxygen plasma-treated and untreated surfaces. In the future, RGP contact lens edges could be treated with UV laser and oxygen plasma to enhance the tear wettability and wearing comfort.
广泛使用的硬性透气性(RGP)隐形眼镜比软性隐形眼镜具有更高的透氧性和泪液交换率。然而,它们的润湿性有待提高以增强佩戴舒适度。本研究使用紫外激光(波长 = 355 nm)对保视宁XO(博士伦公司)材料的RGP隐形眼镜表面性能进行改性。简而言之,通过激光在RGP隐形眼镜表面制作网格图案,并用氧等离子体进行平滑处理;使用接触角测量分析增强的亲水效率。实验结果表明,在500毫米/秒的扫描速度下,当网格图案的间距<50微米时,镜片材料的接触角降低了约10°-20°。氧等离子体提高了表面润湿性,接触角减小(40°)。紫外激光和氧等离子体处理表面的亲水性是氧等离子体处理和未处理表面的两倍。未来,RGP隐形眼镜边缘可用紫外激光和氧等离子体处理,以提高泪液润湿性和佩戴舒适度。