By R. Pignatello
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Extra resources for Biomaterials - Physics and Chemistry
260-267. , Honma, H. & Kohri, K. (2000). N-Glycan structures of an osteopontin from human bone. Biochemical and Biophysical Research Communications, 268, pp. 814-817. , Liu, F. , Semeraro, M. , Malorni, W. & Iacobelli, S. (2000). Galectin-3 overexpression protects from apoptosis by improving cell adhesion properties. International Journal of Cancer, 85, pp. 545-554. , Byrd, J. , Raz, A. & Bresalier, R. S. (2000). Phosphorylation of the beta-galactoside-binding protein galectin-3 modulates binding to its ligands.
M. Moricca, A. Leonardi, S. Buonaccorsi and V. Pellacchia La Sapienza/ Roma Italy 1. Introduction Maxillofacial prosthetics is considered in literature as ‘‘... ” 1. In the maxillofacial surgery where malformative, oncologic traumatologic pathology and the plastic surgery are treated, the maxillofacial prostheses, in selected cases, can reach a satisfactory therapeutic result from functional, aesthetic, psychologic, and social point of views. In a delicate district, such as the face, where a heavy deficit can determine huge psychologic and social problems, the conventional reconstructive surgery intervenes with reconstructive techniques and with the biomaterials insertion, often insufficient to guarantee the restoration of the harmony of the face.
Galectins and control of cell fate. Glycobiology, 12, pp. 127R-136. Hirabayashi, J. & Kasai, K. (1991). Effect of amino acid substitution by sited-directed mutagenesis on the carbohydrate recognition and stability of human 14-kDa betagalactoside-binding lectin. The Journal of Biological Chemistry, 266, pp. 23648-23653. Hirabayashi, J. & Kasai, K. (1993). The family of metazoan metal-independent betagalactoside-binding lectins: structure, function and molecular evolution. Glycobiology, 3, pp. 297-304.