Safe use of fluoride-containing toothpastes for caries prevention in children
https://doi.org/10.33925/1683-3031-2024-840
Abstract
Relevance. Following environmental rehabilitation efforts in Chapayevsk, Samara Region, an increase in the prevalence and severity of dental caries has been observed, particularly among preschool-aged children.
Objective. To evaluate the safety of fluoride use for preventing dental caries in children.
Material and methods. A survey was conducted among 124 parents of children aged 5–6 years attending preschools and 361 adolescents aged 12 and 15 years, using the WHO questionnaire (2013). Responses regarding oral hygiene habits were analyzed. Fluoride ion concentrations were measured in drinking water using the potentiometric method (GOST 4386-89 S.6), in urine according to GOST 8.563-96, and in toothpastes following GOST 7983-2016. The availability and popularity of fluoride-containing toothpastes in pharmacies and supermarkets were also assessed. Statistical analysis was performed using IBM SPSS Statistics v.26 (IBM Corporation).
Results. Over the past 15 years, the fluoride content in drinking water decreased from 0.78–0.91 mg/L to 0.49– 0.71 mg/L following the city’s environmental rehabilitation efforts, remaining suboptimal for caries prevention. Analysis of fluoride excretion via the kidneys indicated low overall fluoride intake from water, toothpaste, and food. A weak correlation was found between the DMFT (decayed, missing, and filled teeth) index and urinary fluoride levels (ρ = 0.35), as well as estimated systemic fluoride levels (ρ = 0.36). These results indicate low fluoride intake, eliminating concerns about toxic effects on health. An analysis of toothpaste preferences showed that the population primarily chooses fluoride-free toothpastes or those with fluoride levels below 1000 ppm. This trend is influenced by the product range available, low adherence to preventive dental care, and misinformation from online sources that often attribute negative effects to fluoridation or raise safety concerns. The actual fluoride content in toothpastes was found to be within acceptable technological limits.
About the Authors
A. M. KhamadeevaRussian Federation
Alfiia M. Khamadeeva, DMD, PhD, DSc, Professor, Department of the Pediatric Dentistry and Orthodontics
Samara
N. V. Popov
Russian Federation
Nicolai V. Popov, DMD, PhD, Docent, Professor, Department of the Pediatric Dentistry and Orthodontic
Samara
L. R. Baimuratova
Russian Federation
Liliya R. Baimuratova, DMD, PhD student, Department of the Pediatric Dentistry and Orthodontics
89 Chapaevskaya Str., Samara, 443099
G. S. Kozupitsa
Russian Federation
Gennady S. Kozupitsa, PhD, DSc, Professor, Department of the Physical Education and Sports
Samara
I. K. Petrukhina
Russian Federation
Irina K. Petrukhina, PhD, DSc, Docent, Director of the Institute of Pharmacy, Head of the Department of Management and Economics of Pharmacy – Basic Department of Apteki Plus
Samara
K. N. Sazanova
Russian Federation
Ksenia N. Sazanova, PhD, Senior Lecture, Department of the Management and Economics of Pharmacy – Basic Department of Apteki Plus
Samara
N. V. Nogina
Russian Federation
Natalya V. Nogina, PhD, Associate Professor, Department of the Dentistry IPO
Samara
D. R. Marsykaeva
Russian Federation
Dinara R. Marsykaeva, Medical Psychologist
Samara
References
1. World Dental Federation FDI. Promoting oral health through fluoride: Adopted by the FDI General Assembly: August 2017, Madrid, Spain. Int Dent J. 2018;68(1):16-17. doi: 10.1111/idj.12372.
2. Sergeev OV, Revich BA, Li M, Williams P, Korrick S, Burns J, et al. Results of longitudinal epidemiological study of factors affecting the growth, physical and sexual development of boys in Chapaevsk, the Samara Region. Population health and life environment. 2012;9(234):20-23. (In Russ.). Available from: https://elibrary.ru/item.asp?id=18760321
3. World Health Organization. Oral Health Surveys: Basic Methods. 5th ed. Geneva: WHO; 2013. p. 125. Available from: https://www.who.int/publications/i/item/9789241548649
4. Idowu OS, Duckworth RM, Valentine RA, Zohoori FV. Biomarkers for the Assessment of Exposure to Fluoride in Adults. Caries Res. 2021;55(4):292-300 doi: 10.1159/000516091.
5. Kumah EA, Eskandari F, Azevedo LB, John S, Zohoori FV. Mapping the evidence for monitoring fluoride exposure in community prevention programmes for oral health using nail clippings and spot urine samples: a scoping review. BMC Oral Health. 2022 8;22(1):575. doi: 10.1186/s12903-022-02615-2
6. Eskandari F, Kumah EA, Azevedo LB, Stephenson J, John S, Zohoori FV. Fluoride Exposure in Community Prevention Programmes for Oral Health Using Nail Clippings and Spot Urine Samples: A Systematic Review and Meta-Analysis. Caries Res. 2023;57(3):197-210. doi: 10.1159/000533721
7. Idowu OS, Azevedo LB, Valentine RA, Swan J, Vasantavada PV, Maguire A, et al. The use of urinary fluoride excretion to facilitate monitoring fluoride intake: A systematic scoping review. PLoS One. 2019;14(9):e0222260. doi: 10.1371/journal.pone.0222260
8. Burgette JM, Dahl ZT, Yi JS, Weyant RJ, McNeil DW, Foxman B, et al. Mothers’ Sources of Child Fluoride Information and Misinformation From Social Connections. JAMA Netw Open. 2022;5(4):e226414. doi: 10.1001/jamanetworkopen.2022.6414.
9. Pereira M, Dombrowski PA, Losso EM, Chioca LR, Da Cunha C, Andreatini R. Memory impairment induced by sodium fluoride is associated with changes in brain monoamine levels. Neurotox Res. 2011;19(1):55-62. doi: 10.1007/s12640-009-9139-5.
10. Toxicological Profile for Fluorides, Hydrogen Fluoride, and Fluorine. Atlanta (GA): Agency for Toxic Substances and Disease Registry (US); 2003. Available from: https://pubmed.ncbi.nlm.nih.gov/38079503/
11. He H, Cheng Z, Liu W. Effects of fluorine on the human fetus. Fluoride. 2008;41(4):321-326. Available from: https://fluoridealert.org/wp-content/uploads/han-1989.pdf
12. Du L. [The effect of fluorine on the developing human brain]. Zhonghua Bing Li Xue Za Zhi. 1992 Aug;21(4):218-20. Chinese. Available from: https://www.yiigle.com/LinkIn.do?linkin_type=pubmed&issn=0529-5807&year=1992&vol=21&issue=4&fpage=218
13. Kjellevold M, Kippler M. Fluoride - a scoping review for Nordic Nutrition Recommendations 2023; Food Nutr Res. 2023;67:67. doi: 10.29219/fnr.v67.10327
14. Fluorides and oral health. Report of a WHO Expert Committee on Oral Health Status and Fluoride Use. World Health Organ Tech Rep Ser. 1994;846:1-37. Available from: https://pubmed.ncbi.nlm.nih.gov/7975675/
15. Petersen PE, Lennon MA. Effective use of fluorides for the prevention dental caries in the 21st century: the WHO approach. Community Dent Oral Epidemiol. 2004;32(5):319-321. doi: 10.1111/j.1600-0528.2004.00175.x
16. World Health Organization Expert Committee. Fluorides and oral health: WHO Technical Report Series. Geneva: World Health Organization; 1994.
17. Papruzhenka TV. Opportunities and conditions for safe consumption of fluoride supplements to prevent dental caries in Belarus. Voennaya medicina. 2012;(3):55-58. (In Russ.). Available from: https://www.bsmu.by/zhurnaly/zhurnal-voennaya-meditsina/2012-3/
18. Nogina NV, Khamadeeva AM. The analysis of dental care administration in Chapaevsk children. Dental Forum. 2011;(5):91-92. Available from: https://www.elibrary.ru/item.asp?id=17009882
19. Skripkina GI, Solonenko AP, Garifullina AZ, Romanova YG, Burnashova TI. Fill the deficit of fluoride filters for water purification. The Dental Institute. 2019; (3):106-107. Available from: https://www.elibrary.ru/item.asp?id=40872550
20. Zohoori FV, Duckworth RM. Chapter 5: Microelements: Part II: F, Al, Mo and Co. Monogr Oral Sci. 2020;28:48-58. doi: 10.1159/000455370
21. Belyaev VA, Borisinsky UN, Davydov BN. Conference: Epidemiology, prevention and treatment of major dental diseases in children, Tver, 2004 Clearance and tolerance to fluoride in patients with dental caries and dental fluorosis. Pediatric dentistry and dental prophylaxis. 2005;4(1-2):79-81. (In Russ.). Available from: https://elibrary.ru/item.asp?id=9477897
22. Papruzhenka TV. Fluoridation programs as means of dental caries prevention: rationale of the advisability and conditions for secure implementation. Stomatolog. 2014;(1):42-49. Available from: https://www.elibrary.ru/item.asp?id=21999122
23. Khamadeeva AM, Goryacheva VV, Nogina NV. The results of the 30years implementation of the preventive programs in dentistry and prospects for conservation of dental health of children in Samara region. Pediatric dentistry and dental prophylaxis. 2016;15(2):4-6. Available from: https://www.elibrary.ru/item.asp?id=27178220
24. Toumba KJ, Twetman S, Splieth C, Parnell C, van Loveren C, Lygidakis NA. Guidelines on the use of fluoride for caries prevention in children: an updated EAPD policy document. Eur Arch Paediatr Dent. 2019;20(6):507-516. doi: 10.1007/s40368-019-00464-2
25. Leite Filho AM, Valdivia-Tapia AC, Costa RCNP, Espinoza EV, Ricomini Filho AP, Cury JA. Fluoride concentration in toothpaste marketed to children in Brazil and Mexico, and discussion on current regulations. Braz Dent J. 2022;33(2):52-60. doi: 10.1590/0103-6440202204522
26. Khudanov B, Khalilov I, Muksamedova M, Toraev K, Abduraksimova F, Akhmedov A. Caries prevention effectiveness of concentration of free fluoride ions in tooth pastes. Dentistry. 2019;1(1):11-13. Available from: https://inlibrary.uz/index.php/stomatologiya/article/view/1268.
27. Philip N, Suneja B, Walsh LJ. Ecological Approaches to Dental Caries Prevention: Paradigm Shift or Shibboleth. Caries Res. 2018;52(1-2):153-165. doi: 10.1159/000484985
Supplementary files
Review
For citations:
Khamadeeva A.M., Popov N.V., Baimuratova L.R., Kozupitsa G.S., Petrukhina I.K., Sazanova K.N., Nogina N.V., Marsykaeva D.R. Safe use of fluoride-containing toothpastes for caries prevention in children. Pediatric dentistry and dental prophylaxis. 2024;24(4):358-367. (In Russ.) https://doi.org/10.33925/1683-3031-2024-840