Literature DB >> 8224612

A potential pathophysiologic role for alpha 2 beta 1 integrin in human eye diseases involving vitreoretinal traction.

T S Kupper1, T A Ferguson.   

Abstract

Cell-mediated contraction of tissues containing fibrillar collagens can lead to organ compromise and loss of function. The same process that is biologically advantageous during the contraction phase of wound healing can be subverted in diseases such as hepatic cirrhosis, pulmonary fibrosis, and scleroderma, although the cellular and molecular mechanism of matrix tissue contraction is difficult to study in such chronic diseases. However, certain human eye diseases that result in tractional detachment of the retina and loss of vision are characterized by acute cell-mediated contraction of collagenous tissue in the vitreous cavity. In this study, we demonstrate that human cells can contract vitreous, a complex biological gel containing type II collagen, in vitro. This cell-mediated contraction can be blocked by antibodies and peptides that antagonize the function of alpha 2 beta 1 integrin, and the potential for contraction can be conferred upon noncontracting cells by stable transfection of cells with alpha 2 cDNA. We also show that this contractile process, if focally resisted, can result in remodeling vitreous from a gel to a structure that resembles a planar membrane, and that substantial isometric forces can be measured across this tissue. We propose that in diseases such as proliferative diabetic retinopathy and proliferative vitreoretinopathy, alpha 2 beta 1 integrin-mediated contraction of the vitreous and tension at the site of vitreoretinal attachments contribute to the terminal event of tractional retinal detachment. By extension, we propose that alpha 2 beta 1 integrin is a centrally important molecule in human diseases characterized by remodeling and contraction of collagenous tissue (i.e., fibrocontractive diseases).

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Year:  1993        PMID: 8224612     DOI: 10.1096/fasebj.7.14.8224612

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  8 in total

1.  The alpha1beta1 integrin is expressed during neointima formation in rat arteries and mediates collagen matrix reorganization.

Authors:  P J Gotwals; G Chi-Rosso; V Lindner; J Yang; L Ling; S E Fawell; V E Koteliansky
Journal:  J Clin Invest       Date:  1996-06-01       Impact factor: 14.808

Review 2.  Unraveling the role of genetics in the pathogenesis of diabetic retinopathy.

Authors:  Ashok Sharma; Maria L Valle; Connor Beveridge; Yutao Liu; Shruti Sharma
Journal:  Eye (Lond)       Date:  2019-01-24       Impact factor: 3.775

3.  The integrin needle in the stromal haystack: emerging role in corneal physiology and pathology.

Authors:  Sunil K Parapuram; William Hodge
Journal:  J Cell Commun Signal       Date:  2014-03-07       Impact factor: 5.782

4.  Rewiring integrin-mediated signaling and cellular response with the peripheral myelin protein 22 and epithelial membrane protein 2 components of the tetraspan web.

Authors:  Shawn A Morales; David Telander; Lucia Notterpek; Madhuri Wadehra; Jonathan Braun; Lynn K Gordon
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-07-23       Impact factor: 4.799

5.  Matrix metalloproteinases: a role in the contraction of vitreo-retinal scar tissue.

Authors:  C M Sheridan; N L Occleston; P Hiscott; C H Kon; P T Khaw; I Grierson
Journal:  Am J Pathol       Date:  2001-10       Impact factor: 4.307

6.  A three-dimensional collagen lattice activates NF-kappaB in human fibroblasts: role in integrin alpha2 gene expression and tissue remodeling.

Authors:  J Xu; M M Zutter; S A Santoro; R A Clark
Journal:  J Cell Biol       Date:  1998-02-09       Impact factor: 10.539

7.  Cell-mediated contraction of vitreous explants from chicken embryo: possibility of screening for therapeutic agents against proliferative vitreoretinal diseases.

Authors:  Keitaro Oki; Yoshiki Miyata; Arata Shimada; Terumasa Nagase; Yoshiya Katsura; Hiroshi Kosano
Journal:  Mol Vis       Date:  2013-11-23       Impact factor: 2.367

8.  Extracellular matrix alters PDGF regulation of fibroblast integrins.

Authors:  J Xu; R A Clark
Journal:  J Cell Biol       Date:  1996-01       Impact factor: 10.539

  8 in total

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