Biomedical Engineering Reference
In-Depth Information
[48] G.Y. Lv, Y.B. Li, A.P. Yang, X. Zhang, W.H. Yang, J.D. Li, Preparation and antibacterial activity of
silver ions-substituted hydroxyapatite/titania, Mater. Sci. Forum 510 511 (2006) 78 81.
[49] M. Vollenweider, T.J. Brunner, S. Knecht, R.N. Grass, M. Zehnder, T. Imfeld, et al., Remineralization
of human dentin using ultrafine bioactive glass particles, Acta Biomater. 3 (2007) 936 943.
[50] S.H. Jeong, S.O. Jang, K.N. Kim, H.K. Kwon, Y.D. Park, B.I. Kim, Remineralization potential of
new toothpaste containing nano-hydroxyapatite, Key Eng. Mater. 309
311 (Pts 1 and 2) (2006)
537 540.
[51] K. Najibfard, K. Ramalingam, I. Chedjieu, B.T. Amaechi, Remineralization of early caries by a nano-
hydroxyapatite dentifrice, J. Clin. Dent. 22 (2011) 139 143.
[52] C. Venegas, J.M. Palacios, M.C. Apella, P.J. Morando, M.A. Blesa, Calcium modulates interactions
between bacteria and hydroxyapatite, J. Dent. Res. 85 (2006) 1124 1128.
[53] K.-L. Lu, J.-X. Zhang, X.-C. Meng, G.-Z. Wie, M.-L. Zhou, Effects of nano-hydroxyapatite on the artifi-
cial caries, Mater. Sci. Technol. 14 (6) (2006) 633 636.
[54] K. Lu, X. Meng, J. Zhang, X. Li, M. Zhou, Inhibitory effect of synthetic nano-hydroxyapatite on dental
caries, Key Eng. Mater. 336 338 (2007) 1538 1541.
[55] X. Meng, K. Lv, J. Zhang, D. Qu, Caries inhibitory activity of the nano-HA in vitro, Key Eng. Mater.
330 332 (2007) 251 254.
[56] Y. Park, J. Kim, K. Hwang, Research about tooth whitening and bacteria sticking capability with using
dentifrice including nano-hydroxyapatite, sodium metaphosphate, Key Eng. Mater. 330 332 (2007)
283 286.
[57] T. Arakawa, T. Fujimaru, T. Ishizak, H. Takeuchi, M. Kageyama, T. Ikemi, et al., Unique functions of
hydroxyapatite with mutans streptococci adherence, Quintessence Int. 41 (2010) e11 e19.
[58] E.C. Reynolds, Remineralization of enamel subsurface lesions by casein phosphopeptide-stabilized
calcium phosphate solutions, J. Dent. Res. 76 (1997) 1587 1595.
[59] A.P. Erdem, E. Sepet, T. Avshalom, V. Gutkin, D. Steinberg, Effect of CPP-ACP and APF on
Streptococcus mutans biofilm: a laboratory study, Am. J. Dent. 24 (2011) 119 123.
[60] E.C. Reynolds, F. Cai, P. Shen, G.D. Walker, Retention in plaque and remineralization of enamel lesions
by various forms of calcium in a mouthrinse or sugar-free chewing gum, J. Dent. Res. 82 (2003)
206
211.
[61] C. Rahiotis, G. Vougiouklakis, G. Eliades, Characterization of oral films formed in the presence of a
CPP-ACP agent: an in situ study, J. Dent. 36 (2008) 272 280.
[62] C. Rahiotis, G. Vougiouklakis, Effect of a CPP ACP agent on the demineralization and remineralization
of dentin in vitro, J. Dent. 35 (2007) 695 698.
[63] C. Poggio, M. Lombardini, M. Colombo, S. Bianchi, Impact of two toothpastes on repairing enamel
erosion produced by a soft drink: an AFM in vitro study, J. Dent. 38 (2010) 868 874.
[64] C. Hannig, S. Basche, T. Burghardt, A. Al-Ahmad, M. Hannig, Influence of a mouthwash containing
hydroxyapatite microclusters on bacterial adherence in situ, Clin. Oral Invest. (2012) In press.
[65] A. Kovtun, D. Kozlova, K. Ganesan, C. Biewald, N. Seipold, P. Gaengler, et al., Chlorhexidine-loaded
calcium phosphate nanoparticles for dental maintenance treatment: combination of mineralising and anti-
bacterial effects, RSC Adv. 2 (2012) 870 875.
[66] V.A. Lee, R. Karthikeyan, H.R. Rawls, B.T. Amaechi, Anti-cariogenic effect of a cetylpyridinium
chloride-containing nanoemulsion, J. Dent. 38 (2010) 742 749.
[67] T. Akasaka, F. Watari, Capture of bacteria by flexible carbon nanotubes, Acta Biomater. 5 (2009)
607 612.
[68] A. Okada, T. Nikaido, M. Ikeda, K. Okada, J. Yamauchi, R.M. Foxton, et al., Inhibition of biofilm
formation using newly developed coating materials with self-cleaning properties, Dent. Mater. J. 27
(2008) 565 572.
Search WWH ::




Custom Search