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Lipid deposition on hydrogel contact lenses.

机译:脂质沉积在水凝胶隐形眼镜上。

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摘要

The primary objective of this study was to quantify and characterise lipid deposition on soft (hydrogel) contact lenses, particularly those containing siloxane components. Studies involving a variety of in vitro doping and in vivo worn contact lenses were undertaken, in which lipid deposition was analyzed by either TLC or HPLC. Specific experiments were completed to optimize a method to extract the lipid from the lens materials, to compare the total lipid deposition on nine different hydrogel lenses and to analyze the effect that lipid deposition had on wettability. A method for extracting lipid from contact lenses using 2:1 chloroform:methanol was developed. This study also showed that siloxane-containing contact lens materials differ in the degree to which they deposit lipid, which is dependent upon their chemical composition. Small differences in lipid deposition that occur due to using variations in cleaning regimens were not identifiable through TLC, and required more sophisticated analysis using HPLC. Contact lens material wettability was found to be influenced by in vitro lipid deposition. Specifically, conventional hydrogels and plasma surface-treated silicone-hydrogel materials experienced enhanced wettability with lipid deposition. Reverse-phase HPLC techniques were able to quantify lipid deposits with increased sensitivity and accuracy. From the HPLC studies it was found that contact lens material, concentration of the lipid doping solution, and the composition of the lipid doping solution in in vitro deposition studies influenced the ultimate amount and composition of lipid deposits. In vivo HPLC studies showed that the final lipid deposition pattern was influenced by the interaction between the composition of the tear film and the various silicone hydrogel contact lens materials. In conclusion, HPLC analysis methods were more sensitive and quantitative than TLC. Lipid deposition was ultimately influenced by the concentration and composition of the lipid in the tear film and the contact lens material. Contact lens wettability was influenced by the presence and deposition of lipid onto the contact lens surfaces. Finally, this reverse-phase HPLC lipid analysis protocol was not the most sensitive, robust, or accurate. In the future, other methods of analysis should be explored.
机译:这项研究的主要目的是定量和表征脂质在软(水凝胶)隐形眼镜上的沉积,尤其是那些含有硅氧烷成分的隐形眼镜。进行了涉及多种体外掺杂和体内佩戴的隐形眼镜的研究,其中通过TLC或HPLC分析脂质沉积。完成了特定的实验,以优化从镜片材料中提取脂质的方法,比较九种不同水凝胶镜片上的总脂质沉积,并分析脂质沉积对润湿性的影响。开发了一种使用2:1氯仿:甲醇从隐形眼镜中提取脂质的方法。该研究还表明,含硅氧烷的隐形眼镜材料沉积脂质的程度不同,这取决于它们的化学组成。通过使用TLC无法确定由于使用不同的清洁方案而导致的脂质沉积的微小差异,因此需要使用HP​​LC进行更复杂的分析。发现隐形眼镜材料的润湿性受体外脂质沉积的影响。具体而言,常规水凝胶和经等离子体表面处理的有机硅-水凝胶材料由于脂质沉积而具有增强的润湿性。反相HPLC技术能够以更高的灵敏度和准确性对脂质沉积物进行定量。从HPLC研究中发现,在体外沉积研究中,隐形眼镜的材料,脂质掺杂溶液的浓度以及脂质掺杂溶液的组成会影响脂质沉积的最终量和组成。体内HPLC研究表明,最终的脂质沉积模式受泪膜成分与各种有机硅水凝胶隐形眼镜材料之间相互作用的影响。总之,HPLC分析方法比T​​LC更加灵敏和定量。脂质沉积最终受泪膜和隐形眼镜材料中脂质的浓度和组成影响。隐形眼镜的润湿性受脂质在隐形眼镜表面上的存在和沉积的影响。最后,这种反相HPLC脂质分析方案不是最灵敏,可靠或准确的。将来,应该探索其他分析方法。

著录项

  • 作者

    Lorentz, Holly Irene.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Health Sciences Ophthalmology.
  • 学位 M.Sc.
  • 年度 2006
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 R770.1;
  • 关键词

  • 入库时间 2022-08-17 11:40:25

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