Jankov Ii Mirko R, Jovanovic Vesna, Nikolic Ljubisa, Lake Jonathan C, Kymionis Georgos, Coskunseven Efekan
Laser Focus-Centre for Eye Microsurgery.
Middle East Afr J Ophthalmol. 2010 Jan;17(1):21-7. doi: 10.4103/0974-9233.61213.
Corneal collagen cross-linking (CXL) with riboflavin and ultraviolet-A (UVA) is a new technique of corneal tissue strengthening by using riboflavin as a photosensitizer and UVA to increase the formation of intra and interfibrillar covalent bonds by photosensitized oxidation.Keratocyte apoptosis in the anterior segment of the corneal stroma all the way down to a depth of about 300 microns has been described and a demarcation line between the treated and untreated cornea has been clearly shown. It is important to ensure that the cytotoxic threshold for the endothelium has not been exceeded by strictly respecting the minimal corneal thickness. Confocal microscopy studies show that repopulation of keratocytes is already visible 1 month after the treatment, reaching its pre-operative quantity and quality in terms of functional morphology within 6 months after the treatment. The major indication for the use of CXL is to inhibit the progression of corneal ectasias, such as keratoconus and pellucid marginal degeneration. CXL may also be effective in the treatment and prophylaxis of iatrogenic keratectasia, resulting from excessively aggressive photoablation. This treatment has also been used to treat infectious corneal ulcers with apparent favorable results. Combination with other treatments, such as intracorneal ring segment implantation, limited topography-guided photoablation and conductive keratoplasty have been used with different levels of success.
核黄素与紫外线A(UVA)交联的角膜交联术(CXL)是一种通过使用核黄素作为光敏剂和UVA,利用光敏氧化作用增加角膜内和纤维间共价键形成来强化角膜组织的新技术。已经描述了角膜基质前段直至约300微米深度的角膜细胞凋亡情况,并且清晰显示了治疗角膜与未治疗角膜之间的分界线。通过严格遵守最小角膜厚度来确保未超过内皮细胞的细胞毒性阈值非常重要。共聚焦显微镜研究表明,治疗后1个月角膜细胞的重新增殖已可见,在治疗后6个月内其功能形态达到术前的数量和质量。使用CXL的主要适应症是抑制角膜扩张症的进展,如圆锥角膜和透明边缘变性。CXL在治疗和预防因过度激进的光消融导致的医源性角膜扩张方面也可能有效。这种治疗方法也已用于治疗感染性角膜溃疡,取得了明显的良好效果。与其他治疗方法联合使用,如角膜内环植入、有限地形引导的光消融和传导性角膜成形术,已取得不同程度的成功。