Literature DB >> 8690037

Spatial and temporal variations in extracellular matrix of periocular and corneal regions during corneal stromal development.

K J Doane1, W H Ting, J S McLaughlin, D E Birk.   

Abstract

The development of the avian corneal stroma occurs in discrete developmental stages. During this sequence of events, the neural crest-derived corneal fibroblast precursor cells are surrounded by distinct extracellular matrices which change both spatially and temporally. To elucidate the role of these matrices, extracellular matrix components in the periocular mesenchyme and cornea were analysed prior to and during migration and differentiation of corneal fibroblasts using antibodies against collagens, proteoglycans and glycoproteins. Previous work has concentrated on the matrix of the corneal stroma rather than the matrix of the periocular mesenchyme. Since the precursors of the corneal fibroblasts are present within the must migrate through the periocular mesenchyme prior to entry into the cornea proper, this environment was fully evaluated. The present study documents the matrix composition of both the cornea and periocular mesenchyme at developmental stages that are prior to and after initiation of corneal invasion by the corneal fibroblast precursors. Variations in matrix molecules comprising both the periocular mesenchyme and cornea were demonstrated. These include changes in the distribution of collagen types I, II, III, IV and VI; the proteoglycans decorin and lumican; as well as the adhesive glycoproteins tenascin, fibronectin and laminin. It is hypothesized that the variations in matrix localization are important in the regulation of cell migration and differentiation during normal corneal development. Any regulation is likely to involve a combination of components found in the extracellular matrices and therefore, a consideration of the matrix rather than isolated components is required.

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Year:  1996        PMID: 8690037     DOI: 10.1006/exer.1996.0033

Source DB:  PubMed          Journal:  Exp Eye Res        ISSN: 0014-4835            Impact factor:   3.467


  9 in total

1.  A simple material model to generate epidermal and dermal layers in vitro for skin regeneration.

Authors:  Ching-Ting Tsao; Matthew Leung; Julia Yu-Fong Chang; Miqin Zhang
Journal:  J Mater Chem B       Date:  2014-08-28       Impact factor: 6.331

2.  Keratocan, a cornea-specific keratan sulfate proteoglycan, is regulated by lumican.

Authors:  Eric C Carlson; Chia-Yang Liu; Tai-ichiro Chikama; Yasuhito Hayashi; Candace W-C Kao; David E Birk; James L Funderburgh; James V Jester; Winston W-Y Kao
Journal:  J Biol Chem       Date:  2005-04-22       Impact factor: 5.157

Review 3.  The regulatory roles of small leucine-rich proteoglycans in extracellular matrix assembly.

Authors:  Shoujun Chen; David E Birk
Journal:  FEBS J       Date:  2013-02-14       Impact factor: 5.542

4.  Corneal sulfated glycosaminoglycans and their effects on trigeminal nerve growth cone behavior in vitro: roles for ECM in cornea innervation.

Authors:  Tyler Schwend; Ryan J Deaton; Yuntao Zhang; Bruce Caterson; Gary W Conrad
Journal:  Invest Ophthalmol Vis Sci       Date:  2012-12-13       Impact factor: 4.799

5.  Pax 6 Controls Neural Crest Potential of Limbal Niche Cells to Support Self-Renewal of Limbal Epithelial Stem Cells.

Authors:  Szu-Yu Chen; Anny M S Cheng; Yuan Zhang; Ying-Ting Zhu; Hua He; Megha Mahabole; Scheffer C G Tseng
Journal:  Sci Rep       Date:  2019-07-05       Impact factor: 4.379

6.  Nephronectin-integrin α8 signaling is required for proper migration of periocular neural crest cells during chick corneal development.

Authors:  Justin Ma; Lian Bi; James Spurlin; Peter Lwigale
Journal:  Elife       Date:  2022-03-03       Impact factor: 8.140

7.  A comparison of glycosaminoglycan distributions, keratan sulphate sulphation patterns and collagen fibril architecture from central to peripheral regions of the bovine cornea.

Authors:  Leona T Y Ho; Anthony M Harris; Hidetoshi Tanioka; Naoto Yagi; Shigeru Kinoshita; Bruce Caterson; Andrew J Quantock; Robert D Young; Keith M Meek
Journal:  Matrix Biol       Date:  2014-07-11       Impact factor: 11.583

8.  Three-dimensional imaging of the extracellular matrix and cell interactions in the developing prenatal mouse cornea.

Authors:  Eleanor M Feneck; Philip N Lewis; Keith M Meek
Journal:  Sci Rep       Date:  2019-08-02       Impact factor: 4.379

Review 9.  Corneal Opacity: Cell Biological Determinants of the Transition From Transparency to Transient Haze to Scarring Fibrosis, and Resolution, After Injury.

Authors:  Steven E Wilson; Lycia Pedral Sampaio; Thomas Michael Shiju; Guilherme S L Hilgert; Rodrigo Carlos de Oliveira
Journal:  Invest Ophthalmol Vis Sci       Date:  2022-01-03       Impact factor: 4.799

  9 in total

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