1. Hannig M, Hannig C. Nanomaterials
in preventive dentistry. Nat Nanotechnol,
2010; 5(8): 565-69.
2. Elliott JC. Structure, crystal chemistry
and density of enamel apatites. Ciba Found
Symp, 1997; 205: 54-67.
3. Featherstone JD. The continuum of
dental caries-evidence for a dynamic disease
process. J Dent Res, 2004; 83 Spec No C:
C39-42.
4. Featherstone JD. The science and practice
of caries prevention. J Am Dent Assoc,
2000; 131(7): 887-99.
5. Silverstone M, Jahnson NW, Hardie
JM, Williams R. Dental caries: aetiology,
pathology and prevention. Hong Kong: The
Mac Millian Press, 1981, p.71-97.
6. Thylstrup A, Feverskov O, Larsen MJ.
Polarized light microscopy of enamel structure
in incisors from newborn infants. Scand
J Dent Res, 1976; 84(5): 243-54.
7. Hicks J, Garcia-Godoy F, Flaitz C.
Biological factors in dental caries: role of
remineralization and fluoride in the dynamic
process of demineralization and remineralization:
part 3. J Clin Ped Dent, 2004; 28(3):
203-14.
8. Ten Cate JM. In vitro studies on the
effects of fluoride on de- and remineralization.
J Dent Res, 1990; 69 Spec No: 614-19.
9. Featherstone JD. Prevention and reversal
of dental caries: role of low level fluoride.
Community Dent Oral Epidemiol, 1999;
27(1): 31-40.
10. Erickson RL, Glasspoole EA. Model
investigations of caries inhibition by fluoride
releasing dental materials. Adv Dent Res,
1995; 3(9): 315-23.
11. Shen P, Cai F, Nowicki A, Vincent J,
Reynolds EC. Remineralization of enamel
subsurface lesions by sugar-free chewing
gum containing casein phosphopeptideamorphous
calcium phosphate. J Dent Res,
2001; 80(12): 2066-70.
12. Sjögren K, Birkhed D, Ruben J,
Arends J. Effect of post-brushing water
rinsing on caries-like lesions at approximal
and buccal sites. Caries Res, 1995; 29(5):
337-42.
13. Featherstone JD. Remineralization,
the natural caries repair process-the need
for new approaches. Adv Dent Res 2009;
21(1): 4-7.
14. Silverstone LM, Hicks MJ, Featherstone
MJ. Dynamic factors affecting lesion
initiation and progression in human dental
enamel. Part I. The dynamic nature of enamel
caries. Quintessence Int, 1988; 19(10):
683-711.
15. Walker G, Cai F, Shen P, Reynolds C,
Ward B, Fone C, Honda S, Koganei M, Oda
M, Reynolds E. Increased remineralization
of tooth enamel by milk containing added
casein phosphopeptide- amorphus calcium
phosphate. J Diary Res, 2006; 73(1): 74-78.
16. Tschoppe P, Zandim DL, Martus P,
Kielbassa AM. Enamel and dentine remineralization
by nano-hydroxyapatite toothpastes.
J Dent, 2011; 39(6): 430-37.
17. Peters MC. Strategies for noninvasive
demineralized tissue repair. Dent Clin North
Am, 2010; 54(3): 507-25.
18. Pearce EI, Moore AJ. RemineralizaF.
N. Görken, A. Pınar Erdem, G. İkikarakayalı, E. Sepet
87
tion of softened bovine enamel following
tretment of overlying plaque with a mineralenriching
solution. J Dent Res,1985; 64(3):
416-21.
19. Murray JJ, Rugg-Gunn AJ, Jenkins
GN. Fluoride in caries prevention. 3rd ed.,
Oxford: Buttrtworth-Heinemann,1991.
20. Brambilla E. Fluoride - is it capable
of fighting old and new dental diseases? An
overview of existing fluoride compounds
and their clinical applications. Caries Res,
2001; 35 Suppl 1: 6-9.
21. US Department of Health and Human
Services, Public and Health Service. Washington:
DC Government Printing Office,
1991.
22. Newbrun E. Current regulations and
recommendations concerning water fluoridation,
fluoride supplements, and topical
fluoride agents. J Dent Res, 1992; 71(5):
1255-65.
23. Bowen WH, Pearson SK. The effects
of sucralose, xylitol, and sorbitol on remineralization
of caries lesions in rats. J Dent
Res, 1992; 71(5): 1166-68.
24. Featherstone JD. Delivery challenges
for fluoride, chlorhexidine and xylitol. BMC
Oral Health, 2006; 6 Suppl 1: S8.
25. Gmür R, Giertsen E, van der Veen
MH, de Josselin de Jong E, Ten Cate JM,
Guggenheim B. In vitro quantitative lightinduced
fluorescence to measure changes in
enamel mineralization. Clin Oral Investig,
2006; 10(3): 187-95.
26. Tanzer JM. Xylitol chewing gum and
dental caries. Int Dent J, 1995; 45(1 Suppl
1): 65-76.
27. Zhao H, He W, Wang Y, Zhang X,
Li Z, Yan S, Zhou W, Wang G. Biomineralization
of large hydroxyapatite particles
using ovalbumin as biosurfactant. Mater
Lett, 2008; 62: 3603–05.
28. Roveri N, Foresti E, Lelli M, Lesci
IG. Recent advances in preventing teeth health
hazard: The daily use of hydroxyapatite
instead of fluoride. Recent Pat Biomed Eng,
2009; 2: 197–215.
29. Lu KL, Zhang JX, Meng XC, Li XY.
Remineralization effect of the nano-HA toothpaste
on artificial caries. Key Eng Mater,
2007; 330-332: 267-70.
30. Yamagishi K, Onuma K, Suzuki T,
Okada F, Tagami J, Otsuki M, Senawangse P.
Materials chemistry: a synthetic enamel for
rapid tooth repair. Nature, 2005; 433(7028):
819.
31. Chiu CY, Ruan L, Huang Y. Biomolecular
specificity controlled nanomaterial
synthesis. Chem Soc Rev, 2013; 42(7):
2512-27.
32. King NM, Itthagarun A, Cheung M.
Remineralization by nanohydroxyapatitecontaining
dentifrice: a pH cycling study
using slurry. J Dent Res, 2006; 85 (Spec Iss
B) Abstract no:0186.
33. Mielnik-Błaszczak M, Krawczyk D,
Pels E. The application of synthetic hydroxyapatite
in children and adolescents in various
clinical cases. Ann Univ Mariae Curie
Sklodowska Med, 2001; 56: 95-98.
34. Gao W. The remineralization research
of nano-hydroxypatite. MsD Thesis, Sichuan
University West China College of Stomatology,
2004, p.4-11.
35. Kınsun S. Nano-hidroksiapatit esaslı
materyallarin mine remineralizasyonu üzerine
etkilerinin incelenmesi. Doktora Tezi,
İstanbul Üniversitesi Sağlık Bilimleri Enstitüsü
Pedodonti Anabilim Dalı, 2007.
36. Nishimura K, Yamaguchi Y, Yoshitake
K. Demineralized enamel surface microstructure
after brushing using toothpaste
Nano-Hidroksiapatitli (n-HAp) Diş Macunlarının Mine Remineralizasyonu Üzerine Etkileri
88
containing medical hydroxyapatite under
FE-SEM observation. J Japan Stomatolog
Soc, 1999; 48(3): 199-210.
37. Najibfard K, Ramalingam K, Chedjieu
I, Amaechi BT. Remineralization of early
caries by a nano-hydroxyapatite dentifrice.
J Clin Dent, 2011; 22(5): 139-43.
38. Roveri N, Battistella E, Bianchi
CL, Foltran I, Foresti E, Iafisco M, Lelli
M, Naldoni A, Palazzo B, Rimondini
L. Surface enamel remineralization: biomimetic
apatite nanocrystals and fluoride
ions different effects. J Nanomater, 2009;
doi:10.1155/2009/746383.
39. Huang S, Gao S, Cheng L, Yu H. Remineralization
potential of nano-hydroxyapatite
on initial enamel lesions: an in vitro
study. Caries Res, 2011; 45(5): 460-68.
40. Yamazaki H, Margolis HC. Enhanced
enamel remineralization under acidic
conditions in vitro. J Dent Res, 2008; 87(6):
569-74.
41. Li L, Pan H, Tao J, Xu X, Mao C,
Gu X, Tang R. Repair of enamel by using
hydroxyapatite nanoparticles as the building
blocks. J Mater Chem, 2008; 18: 4079-84.
42. Onuma K, Yamagishi K, Oyane A.
Nucleation and growth of hydroxyapatite
nanocrystals for nondestructive repair of
early caries lesions. J Cryst Growth, 2005;
282(1-2): 199-207.
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