Literature DB >> 11934200

Comparison of TGF-beta1 in tears following laser subepithelial keratomileusis and photorefractive keratectomy.

Jae Bum Lee1, Chul-Myong Choe, Hyon S Kim, Kyoung Yul Seo, Gong Je Seong, Eung Kweon Kim.   

Abstract

PURPOSE: To compare the release of tear fluid transforming growth factor-beta1 (TGF-beta1) of 15 patients who underwent photorefractive keratectomy (PRK) in one eye and laser subepithelial keratomileusis (LASEK) in the other eye.
METHODS: Tear fluid samples were collected with scaled microcapillary tubes preoperatively (day 0) and on the first, second, and seventh postoperative days. We calculated the release of TGF-beta1 (tear fluid flow-corrected concentrations of TGF-beta1) by multiplying the concentration by capillary tear fluid flow and also evaluated corneal haze at 1, 3, and 6 months after PRK or LASEK.
RESULTS: The median TGF-beta1 release values were: Day 0: 50.6 pg/min (range 0 to 101.6 pg/min) for PRK and 56.7 pg/min (range 0 to 121.8 pg/min) for LASEK (P=.496); Day 1: 240.6 pg/min (range 56.6 to 1120.2 pg/min) for PRK and 155.2 pg/min (range 45.1 to 480.4 pg/min) for LASEK, which showed a significant difference between the two procedures (P=.041); Day 2: 395.7 pg/min (range 92.3 to 1150.7 pg/min) for PRK and 185.2 pg/min (range 41.4 to 872.5 pg/min) for LASEK (P=.004); and Day 7: 91.3 pg/min (range 0 to 225.4 pg/min) for PRK and 74.3 pg/min (range 0 to 187.1 pg/min) for LASEK, (P=.244). The mean corneal haze score at 1 month after PRK was 0.88 +/- 0.50 and 0.53 +/- 0.29 after LASEK, and a statistically significant difference was noted between the two groups (P=.005). At 3 months (P=.083) and 6 months (P=.157) after the procedures, there were no statistically significant differences.
CONCLUSIONS: A lower amount of tear fluid transforming growth factor-beta1 was released in the early postoperative days following LASEK than in PRK. The lower grade of corneal haze seen in LASEK than PRK in the early postoperative period may come from a decreased release of TGF-beta1, which may have a role in wound healing.

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Year:  2002        PMID: 11934200     DOI: 10.3928/1081-597X-20020301-05

Source DB:  PubMed          Journal:  J Refract Surg        ISSN: 1081-597X            Impact factor:   3.573


  9 in total

Review 1.  Corneal Regeneration After Photorefractive Keratectomy: A Review.

Authors:  Javier Tomás-Juan; Ane Murueta-Goyena Larrañaga; Ludger Hanneken
Journal:  J Optom       Date:  2014-10-23

2.  TGFB1-induced extracellular expression of TGFBIp and inhibition of TGFBIp expression by RNA interference in a human corneal epithelial cell line.

Authors:  Vivek S Yellore; Sylvia A Rayner; Anthony J Aldave
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-02-09       Impact factor: 4.799

3.  Effects of exogenous recombinant human bone morphogenic protein-7 on the corneal epithelial mesenchymal transition and fibrosis.

Authors:  Jin Kwon Chung; Shin Ae Park; Hee Sun Hwang; Kwang Sung Kim; Yang Je Cho; Yong Sung You; Young Sik Kim; Ju Woong Jang; Sung Jin Lee
Journal:  Int J Ophthalmol       Date:  2017-03-18       Impact factor: 1.779

4.  [Laser epithelial keratomileusis (LASEK) for treatment of myopia up to -6.0 D. Results from 108 eyes after 12 months].

Authors:  B Gabler; C Winkler von Mohrenfels; W Herrmann; C P Lohmann
Journal:  Ophthalmologe       Date:  2004-02       Impact factor: 1.059

5.  Avellino corneal dystrophy worsening after laser in situ keratomileusis: further clinicopathologic observations and proposed pathogenesis.

Authors:  Shady T Awwad; Mario A Di Pascuale; Robert N Hogan; Stephan L Forstot; James P McCulley; Harrison D Cavanagh
Journal:  Am J Ophthalmol       Date:  2008-02-19       Impact factor: 5.258

Review 6.  Laser-assisted subepithelial keratectomy (LASEK) versus photorefractive keratectomy (PRK) for correction of myopia.

Authors:  Shi-Ming Li; Siyan Zhan; Si-Yuan Li; Xiao-Xia Peng; Jing Hu; Hua Andrew Law; Ning-Li Wang
Journal:  Cochrane Database Syst Rev       Date:  2016-02-22

7.  A Clinical and Confocal Microscopic Comparison of Transepithelial PRK and LASEK for Myopia.

Authors:  Safak Korkmaz; Kamil Bilgihan; Sabahattin Sul; Ahmet Hondur
Journal:  J Ophthalmol       Date:  2014-07-10       Impact factor: 1.909

8.  Epi-Bowman keratectomy versus alcohol-assisted photorefractive keratectomy: wound healing and complications.

Authors:  Suphi Taneri; Saskia Kießler; Anika Rost; Tim Schultz; H Burkhard Dick
Journal:  Ther Adv Ophthalmol       Date:  2021-01-22

9.  Association between TGF-β gene polymorphism and myopia: A systematic review and meta-analysis.

Authors:  Xiaoyu Zhu; Bowei Xu; Lingxue Dai; Zuoyuan Wang; Li Feng; Jiangyue Zhao
Journal:  Medicine (Baltimore)       Date:  2022-07-29       Impact factor: 1.817

  9 in total

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