Literature DB >> 14522301

Stress-strain measurements of human and porcine corneas after riboflavin-ultraviolet-A-induced cross-linking.

Gregor Wollensak1, Eberhard Spoerl, Theo Seiler.   

Abstract

PURPOSE: To evaluate the biomechanical effect of combined riboflavin-ultraviolet A (UVA) treatment on porcine and human corneas.
SETTING: Department of Ophthalmology, Technical University of Dresden, Dresden, Germany.
METHODS: Corneal strips from 5 human enucleated eyes and 20 porcine cadaver corneas were treated with the photosensitizer riboflavin and irradiated with 2 double UVA diodes (370 nm, irradiance = 3 mW/cm2) for 30 minutes. After cross-linking, static stress-strain measurements of the treated and untreated corneas were performed using a microcomputer-controlled biomaterial tester with a prestress of 5 x 10(3) Pa.
RESULTS: There was a significant increase in corneal rigidity after cross-linking, indicated by a rise in stress in treated porcine corneas (by 71.9%) and human corneas (by 328.9%) and in Young's modulus by the factor 1.8 in porcine corneas and 4.5 in human corneas. The mean central corneal thickness was 850 microm +/- 70 (SD) in porcine corneas and 550 +/- 40 microm in human corneas.
CONCLUSIONS: Riboflavin-UVA-induced collagen cross-linking led to an increase in mechanical rigidity in porcine corneas and an even greater increase in human corneas. As collagen cross-linking is maximal in the anterior 300 microm of the cornea, the greater stiffening effect in human corneas can be explained by the relatively larger portion of the cornea being cross-linked in the overall thinner human cornea.

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Year:  2003        PMID: 14522301     DOI: 10.1016/s0886-3350(03)00407-3

Source DB:  PubMed          Journal:  J Cataract Refract Surg        ISSN: 0886-3350            Impact factor:   3.351


  226 in total

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3.  Response to: Evaluation of combined riboflavin and ultraviolet A as an alternative treatment for keratitis.

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4.  Cross-linking with ultraviolet-a and riboflavin reduces corneal permeability.

Authors:  Jay M Stewart; On-Tat Lee; Fergus F Wong; David S Schultz; Ricardo Lamy
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5.  In vitro effect of corneal collagen cross-linking on corneal hydration properties and stiffness.

Authors:  Georgios A Kontadakis; Harilaos Ginis; Nikolaos Karyotakis; Alexandros Pennos; Iro Pentari; George D Kymionis; Ioannis G Pallikaris
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2012-06-23       Impact factor: 3.117

6.  Corneal collagen crosslinking for corneal ectasia of post-LASIK: one-year results.

Authors:  Gang Li; Zheng-Jun Fan; Xiu-Jun Peng
Journal:  Int J Ophthalmol       Date:  2012-04-18       Impact factor: 1.779

7.  Nonlinear optical macroscopic assessment of 3-D corneal collagen organization and axial biomechanics.

Authors:  Moritz Winkler; Dongyul Chai; Shelsea Kriling; Chyong Jy Nien; Donald J Brown; Bryan Jester; Tibor Juhasz; James V Jester
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-11-11       Impact factor: 4.799

8.  Biomechanical property analysis after corneal collagen cross-linking in relation to ultraviolet A irradiation time.

Authors:  Elena Lanchares; María Angeles del Buey; José Angel Cristóbal; Laura Lavilla; Begoña Calvo
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2011-04-15       Impact factor: 3.117

9.  Discriminant value of custom ocular response analyzer waveform derivatives in keratoconus.

Authors:  Katie M Hallahan; Abhijit Sinha Roy; Renato Ambrosio; Marcella Salomao; William J Dupps
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Review 10.  Corneal collagen cross-linking for keratoconus and post-LASIK ectasia.

Authors:  Ronald N Gaster; Ana L Caiado Canedo; Yaron S Rabinowitz
Journal:  Int Ophthalmol Clin       Date:  2013
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