Minarik L, Rapp J
Department of Biological Sciences, SUNY College of Optometry, New York, NY 10010.
CLAO J. 1989 Jul-Sep;15(3):185-8.
Chemical procedures have been developed for eluting deposits from individual hydrophilic contact lenses using combinations of solvents. Total protein was determined as a function of the FDA-proposed classification system for hydrogel lenses. Group IV lenses (high water content, ionic matrix polymers) contained the greatest amount of protein deposits, while group I lenses (low water content, non-ionic polymers) contained the least. Group II lenses (high water content, non-ionic polymers) showed an affinity for protein greater than groups I and III (low water content, ionic polymer) but significantly less than group IV. The necessary basic conditions for maximal protein contamination of hydrophilic contact lenses seems to be created through a combination of an ionic polymer existing in a polar, high water content milieu.
已经开发出化学程序,用于使用溶剂组合从单个亲水性隐形眼镜上洗脱沉积物。根据美国食品药品监督管理局(FDA)提出的水凝胶镜片分类系统测定总蛋白。IV组镜片(高含水量,离子基质聚合物)含有最多的蛋白质沉积物,而I组镜片(低含水量,非离子聚合物)含有最少的蛋白质沉积物。II组镜片(高含水量,非离子聚合物)对蛋白质的亲和力大于I组和III组(低含水量,离子聚合物),但明显小于IV组。亲水性隐形眼镜最大程度蛋白质污染的必要基本条件似乎是由存在于极性、高含水量环境中的离子聚合物组合产生的。