Biomedical Engineering Reference
In-Depth Information
[61] F. Chen, W.M. Lam, C.J. Lin, G.X. Qiu, Z.H. Wu, K.D. Luk, et al., Biocompatibility of electrophoretical
deposition of nanostructured hydroxyapatite coating on roughen titanium surface: in-vitro evaluation using
mesenchymal stem cells, J. Biomed. Mater. Res. B. Appl. Biomater. 82 (1) (2007) 183.
[62] L. Meirelles, A Arvidsson, M. Andersson, P. Kjellin, T. Albrektsson, A. Wennerberg, Nano hydroxyapatite
structures influence early bone formation, J. Biomed. Mater. Res. A. 87A (2) (2008) 299.
[63] X. Zhu, O. Eibl, L. Scheideler, J. Geis-Gerstorfer, Characterization of nano hydroxyapatite/collagen sur-
faces and cellular behaviors, J. Biomed. Mater. Res. A. 79 (1) (2006) 114.
[64] M.C. Durrieu, S. Pallu, F. Guillemot, R. Bareille, J. Amédée, Ch. Baquey, et al., Grafting RGD containing
peptides onto hydroxyapatite to promote osteoblastic cells adhesion, J. Mater. Sci. Mater. Med. 15 (7) (2004)
779.
[65] J.F. Kay, Calcium phosphate coatings: understanding the chemistry and biology and their effective use,
Compendium (Suppl. 15) (1993) S520.
[66] C.P. Klein, P. Patka, J.G. Wolke, J.M. de Blieck-Hogervorst, K. de Groot, Long-term in-vivo study of
plasma-sprayed coatings on titanium alloys of tetracalcium phosphate, hydroxyapatite and alpha-tricalcium
phosphate, Biomaterials 15 (2) (1994) 146.
[67] C.P. Klein, P. Patka, H.B. van der Lubbe, J.G. Wolke, K. de Groot, Plasma-sprayed coatings of tetracal-
ciumphosphate, hydroxyl-apatite, and alpha-TCP on titanium alloy: an interface study, J. Biomed. Mater.
Res. 25 (1) (1991) 53.
[68] J.L. Arias, M.B. Mayor, J. Pou, Y. Leng, B. Leon, M. Perez-Amor, Micro- and nano-testing of calcium
phosphate coatings produced by pulsed laser deposition, Biomaterials 24 (20) (2003) 3403.
[69] A. Citeau, J. Guicheux, C. Vinatier, P. Layrolle, T.P. Nguyen, P. Pilet, et al., In-vitro biological effects of
titanium rough surface obtained by calcium phosphate grid blasting, Biomaterials 26 (2) (2005) 157.
[70] Y. Liu, K. de Groot, E.B. Hunziker, BMP-2 liberated from biomimetic implant coatings induces and sus-
tains direct ossification in an ectopic rat model, Bone 36 (5) (2005) 745.
[71] Y. Liu, R.O. Huse, K. de Groot, D. Buser, E.B. Hunziker, Delivery mode and efficacy of BMP-2 in associa-
tion with implants, J. Dent. Res. 86 (1) (2007) 84.
[72] Y. Liu, J.P. Li, E.B. Hunziker, K. de Groot, Incorporation of growth factors into medical devices via biomi-
metic coatings, Philos. Transact. A. Math. Phys. Eng. Sci. 364 (1838) (2006) 233.
[73] E. Gawalt, M.J. Avaltroni, N. Koch, J. Schwartz, Self-assembly and bonding of alkanephosphonic acids on
the native oxide surface of titanium, Langmuir 17 (19) (2001) 5736.
[74] R. Hofer, M. Textor, N.D. Spencer, Alkyl phosphate monolayers, self-assembled from aqueous solution
onto metal oxide surfaces, Langmuir 17 (13) (2001) 4014.
[75] M. Textor, S. Tosatti, M. Wieland, D.M. Brunnete, Use of Molecular Assembly Techniques for Tailoring the
Chemical Properties on Smooth and Rough Titanium Surfaces, CRC Press, Boca Raton, 2003.
[76] D.P. Liu, P. Majewski, B.K. O'Neill, Y. Ngothai, C.B. Colby, The optimal SAM surface functional group
for producing a biomimetic HA coating on Ti, J. Biomed. Mater. Res. A 77 (4) (2006) 763.
[77] P.J. Majewski, G. Allidi, Synthesis of hydroxyapatite on titanium coated with organic self-assembled mono-
layers, Mater. Sci. Eng. A. 420 (1-2) (2006) 13.
[78] F.J. Shannon, J.M. Cottrell, X.H. Deng, K.N. Crowder, S.B. Doty, M.J. Avaltroni, et al., A novel surface
treatment for porous metallic implants that improves the rate of bony ongrowth, J. Biomed. Mater. Res. A.
86 (4) (2008) 857.
[79] H. Huang, Y. Zhao, Z. Liu, Y. Zhang, H. Zhang, T. Fu, et al., Enhanced osteoblast functions on RGD immo-
bilized surface, J. Oral. Implantol. 29 (2) (2003) 73.
[80] A.S. Hoffman, Hydrogels for biomedical applications, Ann. N.Y. Acad. Sci. 944 (2001) 62.
[81] S. Srouji, A. Rachmiel, I. Blumenfeld, E. Livne, A simple soft lithographic route to fabrication of poly (eth-
ylene glycol) microstructures for protein and cell patterning, J. Craniomaxillofac. Surg. 33 (2) (2005) 79.
[82] R. Landers, U. Hübner, R. Schmelzeisen, R. Mülhaupt, Rapid prototyping of scaffolds derived from thermo-
reversible hydrogels and tailored for applications in tissue engineering, Biomaterials 23 (23) (2002) 4437.
Search WWH ::




Custom Search