1Beniash E,Smi mer JP,Margolis HC.The effect of recombinant mouse amelogenins on the formation and organization of hydroxyapatite crystals in vitro. J Struct Bio l . 2005
2Fan Y,Sun Z,Moradian-Oldak J.Controlled remineralization of enamel in the presence of amelogenin and fluoride. Biomaterials . 2009
3Iijima M,Du C,AbbottC,etal.Control of apatite crystal growth by the co-operative effect of a recombinant porcine amelogenin and fluoride. Eur J Oral Sc i . 2006
4Iijima M,Du C,Abbott C,etal.Controlofapatite crystal growth by the co-operative effect of a recombinant porcine amelogenin and fluoride. Eur J Oral Sc,i . 2006
3Hartgerink JD,Beniash E,Stupp SI.Self-assembly and mineralization of peptide-amphiphile nanofibers[J].Science,2001,294:1684-1688.
4Eiden-Assmann S,Viertelhaus M,Heiss A,et al.The influence of amino acids on the biomineralization of hydroxyapatite in gelatin[J].J Inorg Biochem,2002,91:481-486.
5Beniash E,Simmer JP,Margolis HC.The effect of recombinant mouse amelogenins on the formation and organization of hydroxyapatite crystals in vitro[J].J Struct Biol,2005,149:182-190.
6Mann S.The biomimetics of enamel:a paradigm for organized biomaterials synthesis[J].Ciba Found Symp,1997,205:261-274.
7Young CS,Terada S,Vacanti JP,et al.Tissue engineering of complex tooth structures on biodegradable polymer scaffolds[J].J Dent Res,2002,81(10):695-700.
8Chen HF,Clarkson BH,Sun K,et al.Self-assembly of synthetic hydroxyapatite nanorods into an enamel prism-like structure[J].J Colloid Ienterface Sci,2005,288:97-103.
9Chen HF,Tang ZY,Liu J,et al.Acellular synthesis of a human enamel-like microstructure[J].Advanced Mater,2006,18:1846-1851.
10Veis A.A windows on biomineralization.Science,2005,307 (5714):1419