1. Al Dehailan, L., E.A. Martinez-Mier, and F. Lippert, The effect of fluoride varnishes on caries lesions: an in vitro investigation. Clin Oral Investig, 2016. 20(7): p. 1655-62. [ DOI:10.1007/s00784-015-1648-4] 2. Zheng, F.M., et al., Recommendations on Topical Fluoride Usage for Caries Management in East Asia. Int Dent J, 2024. ISSN: 0020-6539. 3. Abdoli, E., S. Javadinejad, and B. Khosravanifard, Comparison of fluoride uptake into dental enamel from two types of sodium fluoride varnishes (in vitro). J Res Dent Sci, 2015. 11(4): p. 215-20. 4. Manchanda, S., et al., Randomized Clinical Trial to Compare Three Fluoride Varnishes in Preventing Early Childhood Caries. J Dent, 2024: p. 105141. [ DOI:10.1016/j.jdent.2024.105141] 5. Alazmah, A., Assessment of Remineralization Ability of Different Fluoride Varnishes on Artificial Enamel Lesion of Primary Teeth - A Comparative Study. J Pharm Bioallied Sci, 2024. 16(Suppl 2): p. S1594-s1597. [ DOI:10.4103/jpbs.jpbs_1090_23] 6. Maas, J.R., et al., Differences in loosely bound fluoride formation and anticaries effect of resin-based fluoride varnishes. Int J Paediatr Dent, 2013. 23(3): p. 166-72. [ DOI:10.1111/j.1365-263X.2012.01240.x] 7. Carvalho, D.M., et al., Fluoride varnishes and decrease in caries incidence in preschool children: a systematic review. Rev Bras Epidemiol, 2010. 13(1): p. 139-49. 8. Salman, N.R., et al., Comparison of remineralization by fluoride varnishes with and without casein phosphopeptide amorphous calcium phosphate in primary teeth. Acta Odontol Scand, 2019. 77(1): p. 9-14. [ DOI:10.1080/00016357.2018.1490967] 9. Mainente, M.P., et al., Inhibition of incipient caries lesion progression by different fluoridated varnishes. Braz Dent J, 2024. 35: p. e245616. [ DOI:10.1590/0103-6440202405616] 10. Hattab, F.N., Remineralisation of carious lesions and fluoride uptake by enamel exposed to various fluoride dentifrices in vitro. Oral Health Prev Dent, 2013. 11(3): p. 281-90. 11. Jafari A, Shafagh P, Mighani Gh. Comparison of fluoride uptake of three fluoride varnishes on primary teeth enamel. Iran J Pediatr Dent, 2016. 11: p.89-101. [ DOI:10.29252/ijpd.11.2.17] 12. Lee, Y.E., et al., Comparison of remineralization effect of three topical fluoride regimens on enamel initial carious lesions. J Dent, 2010. 38(2): p. 166-71. [ DOI:10.1016/j.jdent.2009.10.002] 13. Lee, J., et al., Remineralization Effects of Silver Fluoride, Silver Diamine Fluoride, and Sodium Fluoride Varnish. J Korean Acad Oral Health, 2024. 20(1): p. 19-26. [ DOI:10.15236/ijcpd.2024.20.1.19] 14. Fathollah, S., et al., Cold plasma enamel surface treatment to increase fluoride varnish uptake. Scientific Reports, 2022. 12(1): p. 4657. [ DOI:10.1038/s41598-022-08069-4] 15. Nozari, A., et al., Impact of nano hydroxyapatite, nano silver fluoride and sodium fluoride varnish on primary teeth enamel remineralization: an in vitro study. J Clin Diagn Res, 2017. 11(9): p. ZC97. [ DOI:10.7860/JCDR/2017/30108.10694] 16. Klimuszko E, Orywal K, Sierpinska T, Sidun J, Golebiewska M. Evaluation of calcium and magnesium contents in tooth enamel without any pathological changes: in vitro preliminary study. Odontology, 2018. 106: p. 369-76. [ DOI:10.1007/s10266-018-0353-6] 17. Feroz, S. and F. Moeen, Protective effect of two different remineralizing agents on artificially induced dental erosion in primary and permanent teeth: an in-vitro analysis. Pak Oral Dental J, 2017. 37(4): p. 657-666 18. Schemehorn, B.R., et al., Comparison of fluoride varnishes containing different calcium uptake into tooth enamel from two fluoride phosphate sources. J Clin Dent, 2011. 22(2): p. 51-4. 19. Thakkar, P.J., et al., An in vitro comparison of casein phosphopeptide-amorphous calcium phosphate paste, casein phosphopeptide-amorphous calcium phosphate paste with fluoride and casein phosphopeptide-amorphous calcium phosphate varnish on the inhibition of demineralization and promotion of remineralization of enamel. J Indian Soc Pedod Prev Dent, 2017. 35(4): p. 312-318. [ DOI:10.4103/JISPPD.JISPPD_308_16]
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