Literature DB >> 19875671

Human corneal fibrosis: an in vitro model.

Dimitris Karamichos1, Xiaoqing Q Guo, Audrey E K Hutcheon, James D Zieske.   

Abstract

PURPOSE: Corneal injury may ultimately lead to a scar by way of corneal fibrosis, which is characterized by the presence of myofibroblasts and improper deposition of extracellular matrix (ECM) components. TGF-beta1 is known to stimulate overproduction and deposition of ECM components. Previously, an in vitro three-dimensional (3-D) model of a corneal stroma was developed by using primary human corneal fibroblasts (HCFs) stimulated with stable vitamin C (VitC). This model mimics corneal development. The authors postulate that with the addition of TGF-beta1, a 3-D corneal scar model can be generated.
METHODS: HCFs were grown in four media conditions for 4 or 8 weeks: VitC only; VitC+TGF-beta1 for the entire time; VitC+TGF-beta1 for 1 week, then VitC only for 3 or 7 weeks; and VitC for 4 weeks, then VitC+TGF-beta1 for 4 weeks. Cultures were analyzed with TEM and indirect immunofluorescence.
RESULTS: Compared with the control, addition of TGF-beta1 increased construct thickness significantly, with maximum increase in constructs with TGF-beta1 present for the entire time-2.1- to 3.2-fold at 4 and 8 weeks, respectively. In all TGF-beta-treated cultures, cells became long and flat, numerous filamentous cells were seen, collagen levels increased, and long collagen fibrils were visible. Smooth muscle actin, cellular fibronectin, and type III collagen expression all appeared to increase. Cultures between weeks 4 and 8 showed minimal differences.
CONCLUSIONS: Human corneal fibroblasts stimulated by VitC and TGF-beta1 appear to generate a model that resembles processes observed in human corneal fibrosis. This model should be useful in examining matrix deposition and assembly in a wound-healing situation.

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Year:  2009        PMID: 19875671      PMCID: PMC2868432          DOI: 10.1167/iovs.09-3860

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


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Journal:  J Cell Biol       Date:  1971-09       Impact factor: 10.539

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  79 in total

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3.  TGF-β3 stimulates stromal matrix assembly by human corneal keratocyte-like cells.

Authors:  Dimitrios Karamichos; Celeste B Rich; Ramin Zareian; Audrey E K Hutcheon; Jeffrey W Ruberti; Vickery Trinkaus-Randall; James D Zieske
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4.  Transforming growth factor-β3 regulates assembly of a non-fibrotic matrix in a 3D corneal model.

Authors:  D Karamichos; A E K Hutcheon; J D Zieske
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6.  3D in vitro model for human corneal endothelial cell maturation.

Authors:  Audrey E K Hutcheon; James D Zieske; Xiaoqing Guo
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7.  Reversal of fibrosis by TGF-β3 in a 3D in vitro model.

Authors:  D Karamichos; A E K Hutcheon; J D Zieske
Journal:  Exp Eye Res       Date:  2014-05-04       Impact factor: 3.467

Review 8.  Exfoliation Syndrome: A Disease of Autophagy and LOXL1 Proteopathy.

Authors:  Audrey M Bernstein; Robert Ritch; Jose M Wolosin
Journal:  J Glaucoma       Date:  2018-07       Impact factor: 2.503

Review 9.  Corneal pain and experimental model development.

Authors:  Tina B McKay; Yashar Seyed-Razavi; Chiara E Ghezzi; Gabriela Dieckmann; Thomas J F Nieland; Dana M Cairns; Rachel E Pollard; Pedram Hamrah; David L Kaplan
Journal:  Prog Retin Eye Res       Date:  2018-11-16       Impact factor: 21.198

Review 10.  Diabetic keratopathy: Insights and challenges.

Authors:  S Priyadarsini; A Whelchel; S Nicholas; R Sharif; K Riaz; D Karamichos
Journal:  Surv Ophthalmol       Date:  2020-02-22       Impact factor: 6.048

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