Related Experiment Video
Updated: Apr 13, 2026

Three Different Protocols of Corneal Collagen Crosslinking in Keratoconus: Conventional, Accelerated and Iontophoresis
Published on: November 12, 2015
[Corneal collagen crosslinking in keratoconus]
L Jouve1, V Borderie1, C Temstet1
1Service d'ophtalmologie 5, Centre hospitalier national d'ophtalmologie des Quinze-Vingts, 28, rue de Charenton, 75012 Paris, France; Université UPMC Paris VI, UMR S 968, Institut de la vision, 17, rue Moreau, 75012 Paris, France.
Abstract:
Corneal collagen crosslinking (CXL) is, at present, the only treatment that can slow or even stop the progression of keratoconus. It uses riboflavin and ultraviolet A (UVA) to create covalent bonds ("crosslinks") between collagen fibrils thus increasing corneal rigidity. Although to date there has been no direct evidence of intrastromal corneal crosslinking, several studies have reported the safety and efficacy of the conventional CXL protocol. This protocol is indicated for progressive keratoconus with a minimal corneal thickness (without the epithelium) of at least 400 μm. It should be performed as early as possible in patients under 18 years with keratoconus or with post-LASIK ectasia. Because of the epithelial debridement, it may rarely induce complications such as infectious keratitis or stromal scars. A variety of new protocols is under investigation and may reduce the rate of these complications. In addition, combination of CXL with other surgical treatments (intracorneal ring segments or photorefractive keratectomy) may improve visual outcomes in patients with keratoconus. Finally, the antimicrobial and anti-edematous properties of CXL have been shown, suggesting new therapeutic indications of this procedure such as infectious keratitis or stromal edema in the future.
More Related Videos
12:25Second Harmonic Generation Signals in Rabbit Sclera As a Tool for Evaluation of Therapeutic Tissue Cross-linking TXL for Myopia
Published on: January 6, 2018
05:56Scleral Cross-linking Using Riboflavin and Ultraviolet-A Radiation for Prevention of Axial Myopia in a Rabbit Model
Published on: April 3, 2016