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Effect of accelerated high-fluence riboflavin and rose bengal-mediated corneal cross-linking on resistance to enzymatic digestion.

Authors :
Hafezi NL
Aydemir ME
Lu NJ
Torres-Netto EA
Hillen M
Koppen C
Source :
BMC ophthalmology [BMC Ophthalmol] 2024 Jan 24; Vol. 24 (1), pp. 37. Date of Electronic Publication: 2024 Jan 24.
Publication Year :
2024

Abstract

Purpose: This study evaluated the effect of high-fluence accelerated corneal cross-linking on the resistance to enzymatic digestion, assessing two chromophore/light combinations: riboflavin/UV-A light (RF/UV-A) and rose bengal/green light (RB/green).<br />Methods: Freshly prepared ex-vivo porcine corneas (nā€‰=ā€‰189) were divided into 8 groups groups. Group A corneas were unirradiated controls without chromophore soaking (A0), or soaked with riboflavin (A1) or rose bengal (A2). Group B corneas underwent accelerated epi-off RF/UV-A CXL at fluences of 5.4 J/cm² (B1), 10 J/cm² (B2), or 15 J/cm² (B3). Group C corneas underwent accelerated epi-off RB/green CXL at fluences of either 10 J/cm² (C1) or 15 J/cm² (C2). Following CXL, all corneas were digested in 0.3% collagenase-A solution, and the time until complete dissolution was measured.<br />Results: Non-irradiated controls exposed to RF and RB enhanced corneal resistance to collagenase digestion, with RB having a stronger effect than RF. RF/UV-A-treated corneas showed significantly increased digestion resistance with increasing fluence levels. RB/green-treated corneas displayed enhanced digestion resistance with each increase in fluence up to 10 J/cm²; a 15 J/cm² fluence yielded similar digestion resistance times to a 10 J/cm² fluence, suggesting a plateau effect in accelerated RB/green CXL protocols.<br />Conclusions: When compared to standard-fluence treatments, high-fluence accelerated epi-off CXL using both riboflavin and rose bengal significantly increases resistance to enzymatic digestion. The optimal settings for clinical protocols might be 15 J/cm² (30 mW/cm² for 8 min 20 s) for RF/UV-A and 10 J/cm² (15 mW/cm² for 11 min 7 s) for RB/Green Light.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
1471-2415
Volume :
24
Issue :
1
Database :
MEDLINE
Journal :
BMC ophthalmology
Publication Type :
Academic Journal
Accession number :
38267904
Full Text :
https://doi.org/10.1186/s12886-024-03293-0