| Literature DB >> 26665102 |
Abstract
Since the late 1990s corneal crosslinking (CXL) has been proposed as a new possibility to stop progression of keratoconus or secondary corneal ectasia, with the promising aim to prevent progressive visual loss due to the evolution of the pathology and to delay or avoid invasive surgical procedures such as corneal transplantation. The possibility of strengthening corneal tissue by means of a photochemical reaction of corneal collagen by the combined action of Riboflavin and ultraviolet A irradiation (UVA), radically modified the conservative management of progressive corneal ectasia. This is a review of the state of the art of CXL, reporting basic and clinical evidence. The paper describes basic principles, advantages and limits of different CXL techniques and possible future evolution of the procedure.Entities:
Keywords: Collagen corneal cross-linking epithelium off; Collagen corneal cross-linking epithelium on; Collagen cross-linking; Ectasia; Keratoconus; Transepithelial cross-linking; Transepithelial cross-linking with iontophoresis
Year: 2015 PMID: 26665102 PMCID: PMC4675057 DOI: 10.1186/s40662-015-0030-6
Source DB: PubMed Journal: Eye Vis (Lond) ISSN: 2326-0254
Outcomes reported in literature for standard epi-off CXL procedures (2010–2015)
| Author (Year) | Follow-up | Results | Type of Study | Number of Eyes | Indication | |||
|---|---|---|---|---|---|---|---|---|
| Kmax | K1/K2 | Mean Keratometry | BCVA | |||||
| Lang S et al. (2015) [ | 3 years | D | - | RCS | 29 | Keratoconus | ||
| Poli M et al. (2015) [ | 6 years | S | I | PCS | 36 | Ectasia | ||
| Di Bernardo M et al. (2015) [ | 2 years | D | I | PCS | 57 | Keratoconus | ||
| McAnena L et al. (2015) [ | 3 years | S | I | RCS | 25 | Pediatric Keratoconus | ||
| Sedaghat M et al. (2015) [ | 1 year | S | D | I | PCS | 97 | Keratoconus | |
| Khan WA (2015) [ | 3 years | D | I | PCS | 71 | Keratoconus | ||
| Yildirim A et al. (2014) [ | 42 months | D | I | RCS | 20 | Post LASIK ectasia | ||
| Kymionis GD et al. (2014) [ | 5 years | D | I | PCS | 25 | Keratoconus | ||
| Kumar Kodavoor S (2014) [ | 1 year | S | I | RCS | 24 | Pediatric Keratoconus | ||
| Viswanathan D et al. (2014) [ | 20 months | D | S | PCS | 25 | Pediatric Keratoconus | ||
| Goldich I et al. (2014) [ | 3 years | S | S | PCS | 17 | Keratoconus | ||
| Steinberg J et al. (2014) [ | 2 years | D | I | PCS | 20 | Keratoconus | ||
| Wittig-Silva C et al. (2014) [ | 3 years | D | I | RCT | 100 | Keratoconus | ||
| Elbaz U et al. (2014) [ | 1 year | S | S | PCS | 9 | Radial Keratotomy | ||
| Ghanem RC et al. (2014) [ | 2 years | D | I | PCS | 42 | Keratoconus | ||
| Toprak I et al. (2013) [ | 1 year | D | I | RCS | 59 | Keratoconus | ||
| Hashemi H et al. (2013) [ | 5 years | D | I | PCS | 40 | Keratoconus | ||
| Richoz O et al. (2013) [ | 2 years | D | I | RCS | 26 | Post LASIK/PRK ectasia | ||
| Ivarsen A et al. (2013) [ | 22 months | D | S | RCS | 22 | Keratoconus | ||
| Legare ME et al. (2013) [ | 2 years | S | S | RCS | 39 | Keratoconus | ||
| O’Brart (2013) [ | 4-6 years | S | S | RCS | 30 | Keratoconus | ||
| Arora R et al. (2012) [ | 12 months | I | PCS | 15 | Pediatric Keratoconus | |||
| Chatzis N et al. (2012) [ | 3 years | S | I | RCS | 59 | Pediatric Keratoconus | ||
| Vinciguerra R et al. (2013) [ | 4 years | D | I | RCS | 400 | Keratoconus | ||
| Viswanathan D et al. (2013) [ | 14 months | D | I | PIS | 76 | Keratoconus | ||
| Poli M. et al. (2013) [ | 3 years | S | S | PC | 55 | primary and secondary ectasia | ||
| Lamy R et al. (2013) [ | 2 years | D | I | PC | 68 | Keratoconus | ||
| Kranitz K et al. (2012) [ | 1 year | D | I | PC | 40 | Keratoconus | ||
| Guber I et al. (2013) [ | 1 year | S | I | PCS | 33 | Keratoconus | ||
| Vinciguerra P et al. (2012) [ | 2 years | K1 S/ K2 D | I | PCS | 40 | Pediatric Keratoconus | ||
| Caporossi A et al. (2012) [ | 3 years | D | I | PCS | 152 | Pediatric Keratoconus | ||
| Goldich I et al. (2012) [ | 2 years | D | I | PCS | 14 | Keratoconus | ||
| Asri D et al. (2011) [ | 1 year | S | S | PCS | 142 | Keratoconus | ||
| Fuentes-Paez G et al. (2012) [ | 6 months | S | I | PCS | 7 | Ectassia post RK | ||
| Kymionis GD et al. (2012) [ | 1 year | S | S | PCS | 14 | Keratoconus | ||
| Koller T et al. (2011) [ | 1 year | D | S | PCS | 151 | Keratoconus | ||
| Greenstain SA et al. (2011) [ | 1 year | D | S | RCT | 71 | Primary and secondary ectasia | ||
| Raiskup F et al. (2011) [ | 1 year | S | S | RCS | 32 | Keratoconus | ||
| Hersh P et al. (2011) [ | 1 year | S | I | RCT | 71 | Keratoconus | ||
| Salgado JP et al. (2011) [ | 1 year | S | S | PCS | 22 | Post LASIK ectasia | ||
| Caporossi A et al. (2010) [ | 4 years | D | I | PCS | 44 | Keratoconus | ||
| Vinciguerra P et al. (2009) [ | 2 years | D | I | PCS | 28 | Keratoconus | ||
| Vinciguerra P et al. (2010) [ | 1 year | D | I | PCS | 13 | Post LASIK/PRK ectasia | ||
S= Stabilized, D= Significantly decreased, I= Significantly improved, PCS= Prospective case series, RCS= Retrospective case series, RCT= Randomized controlled trial, PIS= Prospective interventional study, PC= Prospective comparative
Outcomes reported in literature for epi-on CXL procedures (2010–2015)
| Author (Year) | Follow-up | Results | Design | Number of Eyes | Indication | ||
|---|---|---|---|---|---|---|---|
| Kmax | Mean Keratometry | BCVA | |||||
| Lensiak SP et al. (2014) [ | 6 months | S | S | PCS | 25 | Keratoconous | |
| De Bernardo M et al. (2014) [ | 6 months | S | I | PCS | 36 | Keratoconus | |
| Khairy HA et al. (2014) [ | 1 year | D | S | PCS | 32 | Keratoconus | |
| Salman AG (2013) [ | 1 year | S | S | PC | 22 | Pediatric Keratoconus | |
| Caporossi A et al. (2013) [ | 2 years | W | S | PCS | 26 | Keratoconus | |
| Buzzonetti L et al. (2012) [ | 18 months | W | I | PCS | 13 | Pediatric Keratoconus | |
| Spadea L et al. (2012) [ | 1 year | D | I | PCS | 16 | Keratoconus | |
| Filippello M et al. (2012) [ | 18 months | D | I | PC | 20 | Keratoconus | |
| Leccisotti A et al. (2011) [ | 1 year | S | I | RCT | 51 | Keratoconus | |
S= Stabilized, D= Significantly decreased, I= Significantly improved, W= worsened, PCS= Prospective case series, RCT= Randomized controlled trial, PC= Prospective comparative
Outcomes reported in literature for iontophoresis assisted corneal CXL procedures (2014–2015)
| Author (Year) | Follow-up | Results | Type | Number of Eyes | Indication | |
|---|---|---|---|---|---|---|
| Kmax | BCVA | |||||
| Buzzonetti L et al. (2015) [ | 15 months | S | I | PCS | 14 | Pediatric Keratoconus |
| Bikbova G et al. (2014) [ | 1 year | D | I | PCS | 22 | Keratoconus |
| Vinciguerra P et al. (2014) [ | 1 year | S | I | PCS | 20 | Keratoconus |
S= Stabilized, D= Significantly decreased, I= Significantly improved, PCS= Prospective case series
Outcomes reported in literature for accelerated corneal CXL procedures (2014–2015)
| Author (Year) | Tecnique | Follow-up | Results | Type | Number of Eyes | Indication | ||
|---|---|---|---|---|---|---|---|---|
| Kmax | K1/K2 | BCVA | ||||||
| Chan TC et al. (2015) [ | Accelerated | 1 year | S | S | PCS | 25 | Keratoconus | |
| Ozgurhan EB et al. (2015) [ | Accelerated | 1 year | R | I | PCS | 34 | Keratoconus | |
| Marino GK et al. (2015) [ | Accelerated | 2 years | S | S | PCS | 40 | Post LASIK ectasia | |
| Waszczykowska A (2015) [ | Accelerated | 2 years | S | S | PCS | 16 | Keratoconus | |
| Ozgurhan EB et al. (2014) [ | Accelerated | 2 years | D | I | RCS | 44 | Pediatric Keratoconus | |
| Shetty R et al. (2014) [ | Accelerated | 2 years | - | I | PCS | 18 | Keratoconus | |
| Elbaz U et al. (2014) [ | Accelerated | 1 year | S | S | PCS | 16 | Keratoconus | |
| Cinar Y et al. (2014) [ | Accelerated | 6 months | D | I | PCS | 23 | Keratoconus | |
S= Stabilized, D= Significantly decreased, I= Significantly improved, PCS= Prospective case series, RCS= Retrospective case series
Outcomes reported in literature comparing different CXL procedures (2013–2015)
| Author (Year) | Techniques compared | Follow-up | Results | Type | Number of Eyes | Indication | |
|---|---|---|---|---|---|---|---|
| Kmax | BCVA | ||||||
| NG AL et al. (2015) [ | Standard vs accelerated | 1 year | Reduction Kmax in standard group | Improvement BCVA in standard CXL | CIS | 26 | Keratoconus |
| Shetty R et al. (2015) [ | Standard vs Different Accelerated Protocols | 1 year | Improvement Kmax in standard and accelerated group | Improvement BCVA in Standard and accelerated CXL | PR | 138 | Keratoconus |
| Rossi S et al. (2015) [ | Standard vs TE | 1 year | Improvement Kmax in standard and TE CXL | Improvement BCVA in standard and TE CXL | PC | 20 | Keratoconus |
| Brittingham et al. (2014) [ | Standard vs accelerated | 1 year | Stabilization K max in standard CXL | RCS | 131 | Keratoconus | |
| Hashemian H et al. (2014) [ | Standard vs Accelerated | 15 months | Improvement Kmax in standard and accelerated CXL | Improvement BCVA in Standard and accelerated CXL | RCT | 153 | Keratoconus |
| Sherif AM (2014) [ | Standard vs Accelerated | 1 year | Stabilization Kmax | Improvement BCVA in Standard and accelerated CXL | RCT | 25 | Keratoconus |
| Stojanovic A et al. (2014) [ | Standard vs TE | 1 year | Stabilization Kmax for standard and TE CXL | Improvement BCVA in standard and TE CXL | RCT | 40 | Keratoconus |
| Tomita M et al. (2014) [ | Standard vs Accelerated | 1 year | Improvement Kmax in standard and accelerated CXL | Improvement BCVA in Standard and accelerated CXL | PC | 48 | Keratoconus |
| Cinar Y et al. (2014) [ | Standard vs Accelerated | 6 months | Improvement Kmax in standard and accelerated CXL | Improvement BCVA in Standard and accelerated CXL | PC | 26 | Keratoconus |
| Magli A et al. (2013) [ | Standard vs TE | 1 year | Improvement K max in standard and TE CXL | Improvement BCVA in standard and TE CXL | PC | 37 | Keratoconus |
CIS= Comparative Interventional Study, PR= Prospective randomized, RCS= Retrospective case series, RCT= Randomized controlled trial, PC= Prospective comparative