By V Salih
Part one presents an outline of tools for telephone and tissue engineering and contains chapters at the basics of phone and matrix biology for tissue engineering, three-d collagen biomatrix improvement, tissue tradition tools for challenging and gentle tissue engineering, and vascularization of tissue engineered constructs. half starts off with a bankruptcy reviewing present foreign criteria in mobilephone and tissue engineering, sooner than relocating directly to spotlight problems with quality controls, standardized chemical research and checking out of biomaterials and ideas of fine laboratory perform (GLP) for in vitro mobilephone tradition applications.
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Extra resources for Standardisation in cell and tissue engineering: Methods and protocols
Sample text
Pachence JM (1996) Collagen-based devices for soft tissue repair. J Biomed Mater Res 33: 35–40. 21. McPherson T and Badylak SF (1998) Characterisation of fibronectin derived from porcine small intestinal submucosa. Tiss Eng 4: 75–83. 22. Miyamato T, Takahashi S, Ito H, Inagaki H and Noishiki Y (1989) Tissue biocompatibility of cellulose and its derivatives. J Biomed Mater Res 23: 125–133. 23. Schwarzbauer JE (1999) Basement membranes: putting up the barriers. Curr Biol 9: R242–R244. 24. Schwarzbauer JE (1991) Fibronectin: from gene to protein.
Nat Biotechnol 23: 47–55. © Woodhead Publishing Limited, 2013 2 Three-dimensional collagen biomatrix development and control U. 18 Abstract: Collagen is the predominant extracellular matrix protein in the mammalian body. In particular, collagen plays a critical role in providing matrix-rich tissues, predominantly the musculo-skeletal system, with appropriate mechanical properties. The density, orientation, packing and fibril diameter of collagen is well regulated in the body. This affects the mechanical properties, diffusion properties, presence of physical stiffness gradients and chemical gradients, which all exist within tissues.
Pachence JM (1996) Collagen-based devices for soft tissue repair. J Biomed Mater Res 33: 35–40. 14. Kadler KE, Holmes DF, Trotter JA and Chapman JA (1996) Collagen fibril formation. Biochem J 316: 1–11. 15. Yang C, Hillas PJ, Báez JA, Nokelainen M, Balan JA, Tang J, Spiro R and Polarek JW (2004) The application of recombinant human collagen in tissue engineering. BioDrugs 18: 103–119. 16. Roberts S, Menage J, Sandell LJ, Evans EH and Richardson JB (2009) Immunohistochemical study of collagen types I and II and procollagen IIA in human cartilage repair tissue following autologous chondrocyte implantation.