Biomedical Engineering Reference
In-Depth Information
40. Uchida, T., Fukae, M., Tanabe, T., Yamakoshi, Y., Satoda, T., Murakami, C., Takahashi, O.,
Shimizu, M.: Immnolchemical and immnocytochemical study of a 15 kDa non-amelogenin
and related proteins in the porcine immature enamel: Proposal of a new group of enamel
proteins sheath proteins. Biomed Res 16 , 131-140 (1995)
41. Hu, C.C., Fukae, M., Uchida, T., Qian, Q., Zhang, C.H., Ryu, O.H., Tanabe, T., Ya-
makoshi, Y., Murakami, C., Dohi, N., Shimizu, M., Simmer, J.P. : Sheathlin cloning,
cDNA/polypeptide sequences, and immunolocalization of porcine enamel sheath proteins. J
Dent Res 76 , 648-657 (1997)
42. Fearnhead, R.W.: Mineralization of rat enamel. Nature 188 , 509-600 (1960)
43. Reith, E.J.: The early stage of amelogenesis as observed in molar teeth of young rats. J
Ultrastruct Res 17 , 503-526 (1967)
44. Beniash, E., Metzler, R.A., Lam, R.S.K., Gilbert, P.U.P.A.: Transient amorphous calcium
phosphate in forming enamel. J Struct Biol 166 , 133-143 (2009)
45. Brown, W.E., Lehr, J.R., Smith, J.P., Frazier, A.W.: Octacalcium phosphate and hydroxyap-
atite. Nature 196 , 1048-1055 (1962)
46. Brown, W.E.: Crystal Growth of bone mineral. Clin. Orthop. 44 , 205-220 (1966)
47. Cuisinier, F.J.G., Steuer, P., Senger, B., Vogel, J.C., Frank, R.M.: Human amelogenesis—
high resolution electron microscopy of nanometer sized particles. Cell Tissue Res 273 ,
175-182 (1993)
48. Bodier-Houlle, P., Steuer, P., Meyer, J.M., Bigeard, L., Cuisinier, F.J.G.: High resolution
electron microscopic study of the relationship between human enamel and dentin crystals at
the dentimo-enamel junction. Cell Tissue Res 301 , 389-395 (2000)
49. R onnholm, E.: The amelogenesis of human teeth as revealed by electron microscopy. (II)
The development of the enamel crystallites. J Ultrastruct Res 6 , 249-303 (1962)
50. Nylen, M.U., Eanes, E.D., Omnell, K.A.: Crystal growth in rat enamel. J Cell Biol 18 ,
109-123 (1963)
51. Travis, D.F., Glimcher, M.J.: The structure and organization of, and the relationship between
the organic matrix and the inorganic crystals of embryonic bovine enamel. J Cell Biol 23 ,
447-497 (1964)
52. Weiss, M.P., Vogel, J.C., Frank, R.M.: Enamel crystallite growth: width and thickness study
related to the possible presence of octacalcium phosphate during amelogenesis. J Ultrastruct
Res 76 , 286-292 (1981)
53. Daculci, G., Menanteau, J., Kerevel, L.M., Mitre, D.: Enamel crystals: size Shape, length
and growing process; High resolution TEM and biochemical study. In: Fearnhead, R.W.,
Suga, S. (eds.) Tooth Enamel IV, pp. 14-23. Elsevier Sci. Pub, Amsterdam (1984)
54. Kerebel, B., Daculsi, G., Kerebel, L.M.: Ultrastructural studies of enamel crystallites. J Dent
Res 58 , 844-850 (1979)
55. Nylen, M.U.: Matrix-mineral relationships—a morphologist's viewpoint. J Dent Res 58 (B),
922-926 (1979)
56. Pain, M.L., Snead, M.L.: Protein interactions during assembly of the enamel organic
extracellular matrix. J Bone Miner Res 12 , 221-227 (1997)
57. Lakshminarayanan, R., Fan, D., Du, C., Moradian-Oldak, J.: The role of secondary structre
in the entropically driven amelogenin self-assembly. Biophys J 93 , 3664-3674 (2007)
58. Wen, H.B., Moradian-Oldak, J., Leung, W., Bringas Jr., P., Fincham, A.G.: Microstructures
of an amelogenin gel matrix. J Struct Biol 126 , 42-51 (1999)
59. Wiedemann-Bidlack, F.B., Beniash, E., Yamakoshi, Y., Simmer, J.P., Margolis, H.C.: PH
triggered self-assembly of native and recombinant amelogenins under physiological pH and
temperature. J Struct Biol 160 , 57-69 (2007)
60. Moradian-Oldak, J., Du, C., Falini, G.: On the formation of amelogenin Microribbons. Eur
JOralSci 114 , 289-296 (2006)
61. Fincham, A.G., Moradian-Oldak, J., Diekwisch, T.G.H., Lyaruu, D.M., Wright, J.T., Bringas
Jr., P., Slavkin, H.C.: Evidence for amelogenin “nanospheres” as functional components of
secretory-stage enamel matrix. J Struct Biol 115 , 50-59 (1995)
Search WWH ::




Custom Search