Pterygium is a sunlight-related, ocular-surface lesion that can obscure vision. In order to identify specific genes that may play a role in pterygium pathogenesis, we analyzed the global gene expression profile of pterygium in relation to autologous conjunctiva. In addition, we tested whether doxycycline, a matrix metalloproteinase inhibitor, could prevent the migration and growth of human pterygial cells in vitro and in vivo. The microarray data showed both novel and previously-identified extracellular-matrix-related, pro-inflammatory, angiogenic, fibrogenic, and oncogenic genes expressed in human pterygium. There was increased expression of lipocalin 2, which activates matrix metalloproteinases (MMPs). The over-expression of lipocalin 2 is consistent with our previous finding that MMP-9 and other MMPs are highly expressed in pterygium basal epithelial cells. Doxycycline was used to test the hypothesis that MMPs play a role in pterygium migration. This MMP inhibitor reduced the activity of MMP-9 in human pterygial cell cultured medium and substantially decreased pterygial cell migration in the Boyden Chamber Migration Assay. Using the Directed In Vivo Angiogenic Assay, doxycycline decreased pterygial cell-induced blood vessel growth in angioreactors of mice given oral doxycycline by water. A number of genes are associated with pterygium, including angiogenic growth factors and regulators of angiogenesis. Doxycycline, an MMP inhibitor, decreased the level of pterygial cell migration and angiogenesis. Doxycycline is an inexpensive, noninvasive, FDA-approved drug for other ocular diseases that could potentially benefit humans by reducing the vascular growth of pterygia and, therefore, may prove to be vision-saving. The potential for treatment of other diseases exists as well.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Intramural Research (Z01)
Project #
1Z01EY000312-09
Application #
7139188
Study Section
(LMOD)
Project Start
Project End
Budget Start
Budget End
Support Year
9
Fiscal Year
2005
Total Cost
Indirect Cost
Name
U.S. National Eye Institute
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Cox, Constance A; Amaral, Juan; Salloum, Rita et al. (2010) Doxycycline's effect on ocular angiogenesis: an in vivo analysis. Ophthalmology 117:1782-91
Chen, Zhengguang; John, Molykutty; Subramanian, Saradha et al. (2004) 17Beta-estradiol confers a protective effect against transforming growth factor-beta2-induced cataracts in female but not male lenses. Exp Eye Res 78:67-74
Dufour, Eric M; Nandrot, Emeline; Marchant, Dominique et al. (2003) Identification of novel genes and altered signaling pathways in the retinal pigment epithelium during the Royal College of Surgeons rat retinal degeneration. Neurobiol Dis 14:166-80
Darmanin, Connie; Iwata, Takeshi; Carper, Deborah A et al. (2003) Expression, purification and preliminary crystallographic analysis of human sorbitol dehydrogenase. Acta Crystallogr D Biol Crystallogr 59:558-60
Carper, D; John, M; Chen, Z et al. (2001) Gene expression analysis of an H(2)O(2)-resistant lens epithelial cell line. Free Radic Biol Med 31:90-7
Frederikse, P H; Zigler Jr, S J; Farnsworth, P N et al. (2000) Prion protein expression in mammalian lenses. Curr Eye Res 20:137-43
Singh, S B; Malamas, M S; Hohman, T C et al. (2000) Molecular modeling of the aldose reductase-inhibitor complex based on the X-ray crystal structure and studies with single-site-directed mutants. J Med Chem 43:1062-70
Sun, J K; Iwata, T; Zigler Jr, J S et al. (2000) Differential gene expression in male and female rat lenses undergoing cataract induction by transforming growth factor-beta (TGF-beta). Exp Eye Res 70:169-81
Lichtstein, D; McGowan, M H; Russell, P et al. (2000) Digitalis and digitalislike compounds down-regulate gene expression of the intracellular signaling protein 14-3-3 in rat lens. Hypertens Res 23 Suppl:S51-3
Carper, D A; Sun, J K; Iwata, T et al. (1999) Oxidative stress induces differential gene expression in a human lens epithelial cell line. Invest Ophthalmol Vis Sci 40:400-6

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