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Titlebook: Biomaterials for Tissue Engineering Applications; A Review of the Past Jason A. Burdick,Robert L. Mauck Book 2011 Springer-Verlag/Wien 2011

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https://doi.org/10.1007/3-540-27547-9ll function and tissue development. Further, many engineered soft-tissue constructs such as vascular grafts, cardiac patches, and cartilage are implanted in a mechanically dynamic environment, thus successful implants must sustain and recover from various deformations without mechanical irritations
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https://doi.org/10.1007/3-540-27547-9er, we present an overview of these technologies and their applications in controlling the cellular microenviroment for tissue engineering applications. We focus on concepts and techniques that can be used to create two- and three-dimensional tissue engineering substrates and scaffolds. Common to th
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Konzepte siliziumbasierter MOS-Bauelementeons impart distinctive properties compared to micron sized materials. In this chapter, we will review techniques for creation of micron and nanometer features on 2D substrates and 3D nanomaterials which have been used in tissue engineering applications. In the first half, we will review the latest a
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https://doi.org/10.1007/3-540-27547-9ls may be harvested from a wide range of sources and possess an equally wide range of physical and biological properties. This chapter focuses upon seven of these materials, namely collagen, fibrin, elastin, hyaluronic acid, alginate, chitosan, and silk. These materials are first discussed with resp
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https://doi.org/10.1007/978-3-658-04954-6matrix (ECM) is comprised mainly of type II collagen and proteoglycans which are maintained by chondrocytes, the resident cell population. Cartilage is a structurally complex tissue, with zones that exhibit different cell morphologies and extracellular matrix structure depending on distance from the
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Johann Bacher,Marina Hahn-Bleibtreuo undergo endogenous repair following injury leads to significant joint instability, injury of other tissues, and the development of degenerative joint disease. To restore their normal structure and function and address these clinical challenges, biomaterial scaffolds are being developed that incorp
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