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- W2240598650 abstract "The successful development of tissue engineering scaffolds usually requires proper substrates for cell survival and differentiation. The attachment of the tissue cells to these biomedical materials can be improved by using adhesion molecules. The adhesion molecules are generally extracellular matrix substances, such as fibronectin, vitronectin, or laminin, that regulate the adhesion, migration and growth of cells by binding to integrin receptors located on the outer cellular membranes. In many cases, Arg-Gly-Asp (RGD) was found to be the major functional amino acid sequence responsible for cellular adhesion. In the present study, we have explored a biomaterial based on bacterial cellulose (BC). BC is secreted by Gluconacetobacter xylinus (=Acetobacter xylinum) and has unique properties including high water holding capacity, high crystallinity, a fine fiber network, and high tensile strength. A method for producing chimerics proteins, RGD-CBM with functions similar to fibronectin, which contains a cellulose-binding domain (CBM), was developed. A CBM from the cellulosoma of the bacteria Clostridium thermocellum, was used. The genes encoding these CBM-containing chimeric proteins were cloned, and the proteins expressed. Bacterial cellulose, “coated” with these RGD-containing proteins, was then used in preliminary adhesion/biocompatibility tests, using a mouse embryo fibroblasts culture." @default.
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- W2240598650 date "2007-01-01" @default.
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- W2240598650 title "Development of structures for fibroblast culture based on bacterial cellulose" @default.
- W2240598650 hasPublicationYear "2007" @default.
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