Harris M G, Fluss L, Lem A, Leong H
Morton D. Sarver Laboratory for Contact Lens and Corneal Research, School of Optometry, University of California, Berkeley.
Optom Vis Sci. 1993 Oct;70(10):839-42. doi: 10.1097/00006324-199310000-00011.
To evaluate the efficacy of ultraviolet (UV) radiation as a method of disinfecting contact lenses and their storage solutions, we contaminated soft lenses (Bausch & Lomb Optima 38), rigid gas permeable (RGP) lenses (Oxyflow F-30), and their storage solutions with three common bacteria. Escherichia coli (E.c.), Staphylococcus epidermis (S.e.), and Serratia marcescens (S.m.). The storage solutions used were saline solution and RGP conditioning solution. We determined the exposure times to 253.7-nm wavelength UV radiation necessary to disinfect the contact lenses and solutions. The decimal reduction values (D values) found for UV radiation were 10 to 200 hundred times shorter than reported for currently available disinfection systems. For E.c., sterilization was attained after 100 s of exposure. For S.e. and S.m., sterilization occurred after 300 s of exposure. Different contact lens solutions transmit UV radiation to various degrees, with saline solution passing more than 90% of the UV radiation. Thus, our results indicate that UV radiation is an effective and rapid method of disinfecting contact lenses and their storage solutions.
为评估紫外线(UV)辐射作为一种对隐形眼镜及其护理液进行消毒的方法的效果,我们用三种常见细菌污染了软性隐形眼镜(博士伦Optima 38)、硬性透气性(RGP)隐形眼镜(Oxyflow F - 30)及其护理液。这三种细菌分别是大肠杆菌(E.c.)、表皮葡萄球菌(S.e.)和粘质沙雷氏菌(S.m.)。所使用的护理液为盐溶液和RGP护理液。我们确定了对隐形眼镜和护理液进行消毒所需的253.7纳米波长紫外线辐射的暴露时间。发现紫外线辐射的十进制减少值(D值)比目前可用消毒系统报告的要短10至200倍。对于大肠杆菌,暴露100秒后达到灭菌效果。对于表皮葡萄球菌和粘质沙雷氏菌,暴露300秒后实现灭菌。不同的隐形眼镜护理液对紫外线辐射的透射程度不同,盐溶液能透过超过90%的紫外线辐射。因此,我们的结果表明,紫外线辐射是一种有效且快速的对隐形眼镜及其护理液进行消毒的方法。