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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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Klassische Diesel-Einspritzsystemeotografting. Photopolymerization can be performed in vivo, in a minimally invasive manner, and with spatial and temporal control permitting the fabrication of complex scaffolds. A number of natural as well as synthetic polymers have been photofunctionalized to engineer tissues such as bone, cartilag
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https://doi.org/10.1007/978-3-642-46268-9teraction between nanostructured materials and the tissues of the body can be used to alter cellular attachment and motility, detect analytes in vivo, and simulate tissue organization. These interactions may also lead to a variety of adverse immune responses, such as acute inflammation and fibrous e
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https://doi.org/10.1007/978-3-642-46268-9e 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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David A. Puleo,Rena BiziosProvides a comprehensive, single source of authoritative information on protein/cell/tissue-biomaterial interactions.Covers both conventional and nanophase materials, including functionalized material
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978-1-4939-3930-5Springer-Verlag New York 2009
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Growth Factors on Biomaterial Scaffolds,sible, and two are nondiffusible. Signal transduction of the diffusible growth factors is significantly different from that of the nondiffusible growth factors. It is important to design growth factors for tissue engineering, regenerative medicine, and cell culture systems by considering the mechani
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