Impact of hypothermia on the biomechanical effect of epithelium-off corneal cross-linking.

Hormoz Abdshahzadeh, Reyhaneh Abrishamchi, Emilio A Torres-Netto, Sabine Kling, Nikki L Hafezi, Mark Hillen, Farhad Hafezi
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引用次数: 3

Abstract

Background: The corneal cross-linking (CXL) photochemical reaction is essentially dependent on oxygen and hypothermia, which usually leads to higher dissolved oxygen levels in tissues, with potentially greater oxygen availability for treatment. Here, we evaluate whether a reduction of corneal temperature during CXL may increase oxygen availability and therefore enhance the CXL biomechanical stiffening effect in ex vivo porcine corneas.

Methods: One hundred and twelve porcine corneas had their epithelium manually debrided before being soaked with 0.1% hypo-osmolaric riboflavin. These corneas were equally assigned to one of four groups. Groups 2 and 4 underwent accelerated epithelium-off CXL using 9 mW/cm2 irradiance for 10 min, performed either in a cold room temperature (group 2, 4 °C) or at standard room temperature (group 4, 24 °C). Groups 1 and 3 served as non-cross-linked, temperature-matched controls. Using a stress-strain extensometer, the elastic moduli of 5-mm wide corneal strips were analyzed as an indicator of corneal stiffness.

Results: Accelerated epithelium-off CXL led to significant increases in the elastic modulus between 1 and 5% of strain when compared to non-cross-linked controls (P < 0.05), both at 4 °C (1.40 ± 0.22 vs 1.23 ± 0.18 N/mm) and 24 °C (1.42 ± 0.15 vs 1.19 ± 0.11 N/mm). However, no significant difference was found between control groups (P = 0.846) or between groups in which CXL was performed at low or standard room temperature (P = 0.969).

Conclusions: Although initial oxygen availability should be increased under hypothermic conditions, it does not appear to play a significant role in the biomechanical strengthening effect of epithelium-off CXL accelerated protocols in ex vivo porcine corneas.

Abstract Image

Abstract Image

Abstract Image

低温对角膜上皮间交联生物力学效应的影响。
背景:角膜交联(CXL)光化学反应本质上依赖于氧气和低温,这通常会导致组织中溶解氧水平升高,潜在的更多氧气可用性用于治疗。在这里,我们评估了在体外移植过程中角膜温度的降低是否会增加氧气的可用性,从而增强体外移植过程中猪角膜的生物力学硬化效应。方法:取112只猪角膜,人工清除角膜上皮,并用0.1%低渗核黄素浸泡。这些角膜被平均分配到四组中的一组。2组和4组分别在冷室温(组2,4°C)或标准室温(组4,24°C)下进行9 mW/cm2辐照10分钟的加速上皮脱落CXL。第1组和第3组作为非交联、温度匹配的对照组。利用应力-应变延伸仪分析了5mm宽角膜条的弹性模量,作为角膜刚度的指标。结果:与非交联对照相比,加速的上皮脱落CXL导致应变弹性模量显著增加1 - 5% (P结论:尽管在低温条件下初始氧可用性应该增加,但它似乎在体外猪角膜上皮脱落CXL加速方案的生物力学强化效果中没有显著作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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