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Titlebook: Biological Interactions on Materials Surfaces; Understanding and Co David A. Puleo,Rena Bizios Book 2009 Springer-Verlag New York 2009 Impl

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Development and Differentiation of Neural Stem and Progenitor Cells on Synthetic and Biologically Bcine for a number of reasons. It is thought that stem and progenitor cells may represent a new treatment option for diseases of large-scale cell loss or malfunction, particularly in the central nervous system, where the environment is not permissive of tissue regeneration. Before treatments with spe
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Toward Osteogenic Differentiation of Marrow Stromal Cells and In Vitro Production of Mineralized Ex, and/or bioactive factors. A temporary scaffold acts as an extracellular matrix analog to culture cells and guide the development of new tissue. In this chapter, we discuss the preparation of naturally derived scaffolds of polysaccharide origin, the osteogenic differentiation of mesenchymal stem ce
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Protein and Cell Interactions with Nanophase Biomaterials,re sizes of less than 100 nm in (at least) one dimension. Nanophase biomaterials promote select and specific interactions with biomolecules and, subsequently, support enhanced mammalian cell functions pertinent to new tissue formation. Although some advances have been made in elucidating aspects of
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Collagen I-Coated Titanium Surfaces for Bone Implantation,e I, the main extracellular matrix protein of bone tissue, has been widely investigated in biomolecular surface modification of bone-contacting titanium implant devices. Literature reports on the biological effects of collagen-based coatings are, however, often contradictory. From a biomolecular sur
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