Cole Eye Institute, Cleveland Clinic, Cleveland, OH, USA; University of Sao Paulo, Sao Paulo, Brazil.
Cole Eye Institute, Cleveland Clinic, Cleveland, OH, USA.
Exp Eye Res. 2014 Aug;125:114-7. doi: 10.1016/j.exer.2014.06.001. Epub 2014 Jun 12.
Studies suggest that standard corneal collagen crosslinking (CXL) is a safe and effective treatment to stiffen the cornea for keratoconus and other ectatic corneal disorders. The purpose of the present study was to compare the biomechanical effects of transepithelial benzalkonium chloride-EDTA (BAC-EDTA) riboflavin-UVA crosslinking to standard epithelium-off riboflavin-UVA crosslinking in a rabbit model. Corneal stiffness was quantified using optical coherence elastography at two months after treatment. The mean lateral-to-axial displacement ratio for the BAC-EDTA transepithelial CXL group was lower (greater stiffness) [0.062 ± 0.042, mean ± SD] than epithelium-off CXL (mean ± SD: 0.065 ± 0.045) or untreated control eyes (0.069 ± 0.044). Using ANOVA with Tukey correction, a statistically significant difference was found between the BAC-EDTA transepithelial CXL group and standard epithelium-off CXL (p = 0.0019) or the untreated control (p < 0.0001) groups. A graph of the probability density functions for biomechanical stiffness also showed a greater shift in stiffening in the BAC-EDTA transepithelial CXL group than the standard epithelium-off CXL or untreated control group. These results demonstrated that the biomechanical stiffening effect produced by BAC-EDTA transepithelial CXL was greater than that produced by standard epithelium-off CXL in a rabbit model.
研究表明,标准角膜胶原交联(CXL)是一种安全有效的治疗方法,可用于使圆锥角膜和其他扩张性角膜疾病的角膜变硬。本研究的目的是比较经上皮贝索氯铵-乙二胺四乙酸(BAC-EDTA)核黄素-UVA 交联与标准去上皮核黄素-UVA 交联在兔模型中的生物力学效应。在治疗后两个月,使用光学相干弹性成像定量测量角膜硬度。BAC-EDTA 经上皮 CXL 组的横向到轴向位移比平均值较低(硬度较大)[0.062±0.042,平均值±标准差],低于去上皮 CXL(平均值±标准差:0.065±0.045)或未治疗对照组(0.069±0.044)。使用具有 Tukey 校正的 ANOVA 分析,在 BAC-EDTA 经上皮 CXL 组与标准去上皮 CXL(p=0.0019)或未治疗对照组(p<0.0001)之间发现了统计学上的显著差异。生物力学硬度的概率密度函数图也显示,与标准去上皮 CXL 或未治疗对照组相比,BAC-EDTA 经上皮 CXL 组的硬度增加更为明显。这些结果表明,在兔模型中,BAC-EDTA 经上皮 CXL 产生的生物力学变硬效果大于标准去上皮 CXL。