Effect of Contact Lens Solutions in Stabilizing the Activity of Tear Lysozyme.

IF 1.4 Q3 OPHTHALMOLOGY Clinical Optometry Pub Date : 2023-01-01 DOI:10.2147/OPTO.S404261
Catherine A Scheuer, Vicki L Barniak, Nitasha R Phatak, Marjorie J Rah, William Reindel
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Abstract

Purpose: Interactions between tear proteins and the interfaces of contact lenses can be complex and can influence contact lens wear success. Tear proteins, including lysozyme, function to maintain the balance of ocular surface homeostasis, as evidenced by the effects of its conformation relative to stabilizing the tear film and its potential impact on corneal epithelial cells. Contact lens manufacturers include components in lens care and blister package solutions to help stabilize the tear film and preserve homeostasis. This in vitro study was performed to evaluate the ability of daily disposable contact lens package solutions to stabilize lysozyme and preserve its native conformation under denaturing conditions.

Methods: Lysozyme was added to contact lens solutions sampled from kalifilcon A, etafilcon A, senofilcon A, narafilcon A, nelfilcon A, verofilcon A, delefilcon A, somofilcon A, and stenfilcon A blister packages, then mixed with the protein denaturant sodium lauryl sulfate. Lysozyme activity was evaluated by adding test solutions to a suspension of Micrococcus luteus. Native lysozyme lyses the Micrococcus luteus cell wall, which decreases suspension turbidity. Stabilization of lysozyme activity was determined by comparing suspension turbidity before and after exposure to test solutions.

Results: Lysozyme stabilization was 90.7% for kalifilcon A solution, a statistically significant improvement (p < 0.05) compared to phosphate buffered saline (PBS, negative control). No significant improvement was observed with any other contact lens solution (all lysozyme stabilization < 5.00%).

Conclusion: The representative tear protein lysozyme was significantly more stable in the novel kalifilcon A contact lens solution containing multiple moisturizers and osmoprotectants than in PBS or other daily disposable contact lens solutions. The lysozyme activity assay provides mechanistic evidence that the kalifilcon A contact lens solution can stabilize proteins under conditions that typically denature proteins, which may contribute to maintaining ocular surface homeostasis.

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隐形眼镜溶液稳定泪液溶菌酶活性的作用。
目的:泪液蛋白与隐形眼镜界面之间的相互作用可能是复杂的,并可能影响隐形眼镜的佩戴成功。泪液蛋白,包括溶菌酶,具有维持眼表稳态平衡的功能,其构象对泪液膜稳定的作用及其对角膜上皮细胞的潜在影响证明了这一点。隐形眼镜制造商在镜片护理和泡罩包装解决方案中包含组件,以帮助稳定泪膜并保持体内平衡。本体外研究旨在评估日常一次性隐形眼镜包装溶液在变性条件下稳定溶菌酶并保持其天然构象的能力。方法:将溶菌酶加入到从kalililcon A、etafilcon A、senfilcon A、narafilcon A、nelfilcon A、verfilcon A、delfilcon A、somfilcon A和stenfilcon A泡罩包装中取样的隐形眼镜溶液中,然后与蛋白质变性剂十二烷基硫酸钠混合。通过将测试溶液加入到黄体微球菌悬浮液中来评估溶菌酶的活性。天然溶菌酶能溶解黄体微球菌细胞壁,降低悬浮液浊度。溶菌酶活性的稳定性是通过比较暴露于测试溶液之前和之后的悬浮液浊度来确定的。结果:kalifilcon A溶菌酶稳定性为90.7%,与磷酸盐缓冲盐水(PBS,阴性对照)相比有统计学意义(p < 0.05)。其他任何隐形眼镜溶液均未观察到显著改善(溶菌酶稳定度均< 5.00%)。结论:在含有多种保湿和渗透保护剂的新型kalililcon A隐形眼镜液中,代表性泪液蛋白溶菌酶的稳定性显著高于PBS或其他日常一次性隐形眼镜液。溶菌酶活性测定提供了机制证据,证明kalifilcon A隐形眼镜溶液可以在通常使蛋白质变性的条件下稳定蛋白质,这可能有助于维持眼表面的稳态。
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来源期刊
Clinical Optometry
Clinical Optometry OPHTHALMOLOGY-
CiteScore
3.00
自引率
5.90%
发文量
29
审稿时长
16 weeks
期刊介绍: Clinical Optometry is an international, peer-reviewed, open access journal focusing on clinical optometry. All aspects of patient care are addressed within the journal as well as the practice of optometry including economic and business analyses. Basic and clinical research papers are published that cover all aspects of optics, refraction and its application to the theory and practice of optometry. Specific topics covered in the journal include: Theoretical and applied optics, Delivery of patient care in optometry practice, Refraction and correction of errors, Screening and preventative aspects of eye disease, Extended clinical roles for optometrists including shared care and provision of medications, Teaching and training optometrists, International aspects of optometry, Business practice, Patient adherence, quality of life, satisfaction, Health economic evaluations.
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