Hayes Sally, Morgan Siân R, O'Brart David P, O'Brart Naomi, Meek Keith M
School of Optometry and Vision Sciences, Cardiff University, Cardiff, UK.
Department of Ophthalmology, St. Thomas' Hospital, London, UK.
Acta Ophthalmol. 2016 Mar;94(2):e109-17. doi: 10.1111/aos.12884. Epub 2015 Sep 30.
To indirectly measure stromal riboflavin penetration using commercially available riboflavin solutions and new and existing epithelium-off, trans-epithelial and iontophoresis-assisted delivery protocols.
Forty porcine eyes were divided into eight groups. Group 1: Ricrolin applied to the de-epithelialised cornea for 30 min; Group 2: epithelium-intact, no treatment; Groups 3-5: epithelium-intact, 30-min application of Ricrolin TE, Mediocross TE or ParaCel/Vibex, respectively. Group 6: epithelium-intact, Ricrolin(+) iontophoresis-assisted delivery for 5 min; Group 7: epithelium-intact, Ricrolin(+) iontophoresis-assisted delivery for 5 min with a 20-min riboflavin soak; and Group 8: epithelium-intact, Ricrolin(+) iontophoresis-assisted delivery for 5 min, 15-min soak and another 5 min of iontophoresis. After a saline wash, light transmission spectra were obtained from each cornea, before and after epithelial removal.
Corneas in groups 1 and 8 showed a distinct riboflavin absorption peak between 400 and 520 nm. The optical density of the corneas in groups 3-7 did not differ significantly from that of the untreated corneas (group 2).
A modification to the standard iontophoresis trans-epithelial technique resulted in successful penetration of riboflavin into the stroma and appears to offer the most promise for epithelium-on cross-linking.
使用市售核黄素溶液以及新的和现有的上皮去除、经上皮和离子导入辅助递送方案间接测量基质中核黄素的渗透情况。
将40只猪眼分为8组。第1组:将Ricrolin应用于去上皮角膜30分钟;第2组:上皮完整,未治疗;第3 - 5组:上皮完整,分别应用Ricrolin TE、Mediocross TE或ParaCel/Vibex 30分钟。第6组:上皮完整,进行5分钟的Ricrolin(+)离子导入辅助递送;第7组:上皮完整,进行5分钟的Ricrolin(+)离子导入辅助递送并浸泡核黄素20分钟;第8组:上皮完整,进行5分钟的Ricrolin(+)离子导入辅助递送,浸泡15分钟,再进行5分钟离子导入。盐水冲洗后,在去除上皮前后从每个角膜获取透光光谱。
第1组和第8组的角膜在400至520纳米之间显示出明显的核黄素吸收峰。第3 - 7组角膜的光密度与未治疗的角膜(第2组)相比无显著差异。
对标准离子导入经上皮技术的改进导致核黄素成功渗透到基质中,似乎为上皮在位交联提供了最大的前景。