Laminins in normal, keratoconus, bullous keratopathy and scarred human corneas

被引:0
作者
Berit Byström
Ismo Virtanen
Patricia Rousselle
Kaoru Miyazaki
Christina Lindén
Fatima Pedrosa Domellöf
机构
[1] Umeå University,Department of Integrative Medical Biology, Section for Anatomy
[2] Umeå University,Department of Clinical Sciences, Ophthalmology
[3] University of Helsinki,Institute of Biomedicine/Anatomy
[4] Université Lyon,Institut de Biologie et Chimie des Protéines, CNRS
[5] IFR128 BioSciences,Division of Cell Biology, Kihara Institute for Biological Research
[6] Yokohama City University,undefined
来源
Histochemistry and Cell Biology | 2007年 / 127卷
关键词
Laminin; Cornea; Human; Keratoconus; Basement membrane;
D O I
暂无
中图分类号
学科分类号
摘要
The laminin composition (LMα1-α5, β1–β3, γ1 and γ2 chains) of normal corneas and corneal buttons from keratoconus, bullous keratopathy (BKP), Fuchs’ dystrophy + BKP, Fuchs’ dystrophy without BKP and scar after deep lamellar keratoplasty (DLKP) was investigated with immunohistochemistry. The epithelial basement membranes (BMs) of both normal and diseased corneas contained LMα3, α5, β1, β3, γ1 and γ2 chains. The epithelial BM morphology was altered in the different diseases. Scarring was associated with irregular BM and ectopic stromal localization of different laminin chains. The Descemet’s membrane (DM) contained LMα5, β1 and γ1 chains in all cases and additionally LMβ3 and γ2 chains in the majority of keratoconus corneas. The interface in the DLKP cornea had patches of LMα3, α4, α5, β1 and β2 chains, and an extra BM-like structure under the Bowman’s membrane. These results suggest that laminin chains participate in the process of corneal scarring and in the pathogenesis of some corneal diseases. The novel finding of LMα3, β3 and γ2 in the DM of keratoconus buttons indicates that this membrane is also involved in the disease and that some cases of keratoconus may have a congenital origin, without normal downregulation of the LMβ3 chain.
引用
收藏
页码:657 / 667
页数:10
相关论文
共 270 条
  • [1] Anwar M(2002)Big-bubble technique to bare Descemet’s membrane in anterior lamellar keratoplasty J Cataract Refract Surg 28 398-403
  • [2] Teichmann KD(2005)A simplified laminin nomenclature Matrix Biol 24 326-332
  • [3] Aumailley M(1996)Laminin-5 and hemidesmosomes: role of the a3 chain subunit in hemidesmosome stability and assembly J Cell Sci 109 2509-2520
  • [4] Bruckner-Tuderman L(1999)Fuch’s endothelial dystrophy: a fresh look at an aging disease Ophthalmic Physiol Opt 19 210-222
  • [5] Carter WG(2003)Sequesterede viscoelastic after deep lamellar keratoplasty using viscodissection Cornea 22 371-373
  • [6] Deutzmann R(2006)Distribution of laminins in the developing human eye Invest Ophthalmol Vis Sci 47 777-785
  • [7] Edgar D(1992)Deep lamellar keratoplasty on air with lyophilised tissue Br J Ophthalmol 76 646-650
  • [8] Ekblom P(2000)Form and function: the laminin family of heterotrimers Dev Dyn 218 213-234
  • [9] Engel J(2001)The expression of laminin-5 and ultrastructure of the interface between basal cells and underlying stroma in the keratoconus cornea Jpn J Ophthalmol 45 209-215
  • [10] Engvall E(2003)Expression and biological role of laminin-1 Matrix Biol 22 35-47