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Collective Cell Migration on Artificial Extracellular Matrix Proteins Containing Full‐Length Fibronectin Domains [PDF]

open access: yesAdvanced Materials, 2010
Protein-based biomaterials that promote rapid wound healing are prepared by expression of artificial genes in bacterial cells. Artificial extracellular matrix proteins containing full-length fibronectin domains 9 and 10 exhibit strong α_5β_1 integrin ...
Eileen Fong, David A Tirrell
exaly   +1 more source
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MOLECULAR BIOLOGY OF THE EXTRACELLULAR MATRIX PROTEINS

Biological Reviews, 1988
Summary1. Extracellular matrices are organized networks of diverse macromolecules, secreted and deposited in the vicinity of cells. They not only play structural roles but are also involved in dynamic processes such as cell migration and differentiation, embryo development, wound healing and cancerous transformation.
A R, Kornblihtt, A, Gutman
openaire   +2 more sources

Proteins of the extracellular matrix in vitreoretinal membranes

Graefe's Archive for Clinical and Experimental Ophthalmology, 1988
Epiretinal and vitreous membranes of different etiology, e.g., in diabetic retinopathy, following retinal detachment, trauma or inflammatory processes, show a similar morphology. The exact composition of the extracellular matrix and the pathogenesis of these membranes remain uncertain.
O F, Scheiffarth   +3 more
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Binding of extracellular matrix proteins by lactobacilli

Folia Microbiologica, 2001
Ten gut and ten vaginal Lactobacillus strains were investigated for their ability to bind type I collagen (Cn-I) and four selected gut lactobacilli were investigated for their binding to other extracellular matrix (ECM) molecules. Immobilized Cn-I (100 mg/L) in wells of microtitre plates was bound by all 10 autoaggregating vaginal strains and by 3 ...
I, Styriak, B, Zatkovic, S, Marsalková
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Interactions of bacteria with extracellular matrix proteins

Cell Differentiation and Development, 1990
Cell adhesion is a critical factor in microbial life. For commensal or saprophytic bacteria, attachment is a question of survival, while in pathogenic bacteria adherence to a particular site may initiate an infection. In addition to nonspecific forces, which seem to play some role, adhesion of bacteria is predominantly dependent upon specific ...
Magnus Hook   +8 more
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Binding of Enterococci to Extracellular Matrix Proteins

1997
Enterococci are a frequent cause of a wide variety of infections in humans. A rational approach to the control of these infections requires an understanding of enterococcal pathogenicity. Adherence of bacteria to host tissues is generally an early step in the establishment of many infections.
T W, Zareba   +3 more
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Binding of Extracellular Matrix Proteins by Enterococci

Current Microbiology, 1997
Forty-four enterococcal strains isolated from human clinical specimens were investigated for binding of 125I-labeled fibronectin, vitronectin, thrombospondin, lactoferrin, and collagen type I and IV, and for cell surface hydrophobicity. Most strains expressed low binding of iodine-labeled human fibronectin, collagen I and IV, and higher binding of ...
T W, Zareba   +3 more
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Fibulins: a versatile family of extracellular matrix proteins

Nature Reviews Molecular Cell Biology, 2003
Fibulins are a newly recognized family of extracellular matrix proteins. The five known members of the family share an elongated structure and many calcium-binding sites, owing to the presence of tandem arrays of epidermal growth factor-like domains.
Timpl, R.   +3 more
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Extracellular matrix proteins of dentine.

Ciba Foundation symposium, 1997
Bone and dentine extracellular matrix proteins are similar, consisting primarily of type I collagen, acidic proteins and proteoglycans. Although collagen forms the lattice for deposition of calcium and phosphate for formation of carbonate apatite, the non-collagenous proteins are believed to control initiation and growth of the crystals.
W T, Butler   +2 more
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The role of the extracellular matrix protein TGFBI in cancer

Cellular Signalling, 2021
The secreted extracellular protein, transforming growth factor beta induced (TGFBI or βIGH3), has roles in regulating numerous biological functions, including cell adhesion and bone formation, both during embryonic development and during the pathogenesis of human disease.
Armando, Corona, Gerard C, Blobe
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