5,376
Views
11
CrossRef citations to date
0
Altmetric
Review Article

Cost-effectiveness of caries preventive interventions – a systematic review

, , , , , & show all
Pages 309-320 | Received 06 Jul 2020, Accepted 02 Dec 2020, Published online: 28 Dec 2020

References

  • Baelum V, Fejerskov O. Chapter 4. How big is the problem? Epidemiological features of dental caries. In Fejerskov O, Nyvad B, Kidd E, editors. Dental Caries: The disease and its clinical management. 3rd ed. Copenhagen: Wiley-Blackwell; 2015.
  • Global Burden Disease Collaborators Global, regional, and national incidence, prevalence, and years lived with disability for 354 diseases and injuries for 195 countries and territories, 1990–2017: a systematic analysis for the Global Burden of Disease Study 2017. Lancet. 2018;392:1789–1858.
  • Horst JA, Tanzer JM, Milgrom PM. Fluorides and other preventive strategies for tooth decay. Dent Clin North Am. 2018;62:207–234.
  • Marinho VC, Higgins JP, Logan S, et al. Topical fluoride (toothpastes, mouthrinses, gels or varnishes) for preventing dental caries in children and adolescents. Cochrane Database Syst Rev. 2003:CD002782.
  • Moynihan PJ, Kelly SA. Effect on caries of restricting sugars intake: systematic review to inform WHO guidelines. J Dent Res. 2014;93:8–18.
  • Isaksson H, Alm A, Koch G, et al. Caries prevalence in Swedish 20-year-olds in relation to their previous caries experience. Caries Res. 2013;47:234–242.
  • Listl S, Galloway J, Mossey PA, et al. Global economic impact of dental diseases. J Dent Res. 2015;94:1355–1361.
  • Costa SM, Martins CC, Bonfim Mde L, et al. A systematic review of socioeconomic indicators and dental caries in adults. Int J Environ Res Public Health. 2012;9:3540–3574.
  • Schwendicke F, Dorfer CE, Schlattmann P, et al. Socioeconomic inequality and caries: a systematic review and meta-analysis. J Dent Res. 2015;94:10–18.
  • André Kramer A. On dental caries and socioeconomy in Swedish children and adolescents – clinical and register-based studies. University of Gothenburg; 2018.
  • Lambert MJ, Vanobbergen JSN, Martens LC, et al. Socioeconomic inequalities in caries experience, care level and dental attendance in primary school children in Belgium: a cross-sectional survey. BMJ Open. 2017;7:e015042.
  • Drummond M, Sculpher M, Claxton K, et al. Methods for the economic evaluation of health care programmes. 4th ed. Oxford (UK): Oxford University Press; 2015.
  • Eow J, Duane B, Solaiman A, et al. What evidence do economic evaluations in dental care provide? A scoping review. Community Dent Health. 2019;36:118–125.
  • Anderson R. Systematic reviews of economic evaluations: utility or futility? Health Econ. 2010;19:350–364.
  • Moher D, Liberati A, Tetzlaff J, et al., PRISMA Group. Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. BMJ. 2009;339:b2535.
  • Page MJ, Shamseer L, Tricco AC. Registration of systematic reviews in PROSPERO: 30,000 records and counting. Syst Rev. 2018;7:32.
  • Swedish Food A. [accessed 2020 May 31]. Available from: https://www.livsmedelsverket.se/en
  • Swedish Agency for Health Technology Assessment and Assessment of Social Services. Assessment of methods in health care – A handbook. 2018 [accessed 2020 May 31]. Available from: https://wwwsbuse/contentassets/76adf07e270c48efaf67e3b560b7c59c/eng_metodbokenpdf, https://wwwsbuse/contentassets/14570b8112c5464cbb2c256c11674025/checklist_trialbased-economic-studypdf, https://wwwsbuse/contentassets/14570b8112c5464cbb2c256c11674025/checklist_modelbased-economic-studypdf
  • Anderson M, Davidson T, Dahllöf G, et al. Economic evaluation of an expanded caries-preventive program targeting toddlers in high-risk areas in Sweden. Acta Odontol Scand. 2019;77:303–309.
  • Bergstrom EK, Davidson T, Moberg SU. Cost-effectiveness through the Dental-Health FRAMM Guideline for caries prevention among 12- to 15-year-olds in Sweden. Caries Res. 2019;53:339–346.
  • Hietasalo P, Seppa L, Lahti S, et al. Cost-effectiveness of an experimental caries-control regimen in a 3.4-yr randomized clinical trial among 11-12-yr-old Finnish schoolchildren. Eur J Oral Sci. 2009;117:728–733.
  • O’Neill C, Worthington HV, Donaldson M, et al. Cost-effectiveness of caries prevention in practice: a randomized controlled trial. J Dent Res. 2017;96:875–880.
  • Oscarson N, Kallestal C, Fjelddahl A, et al. Cost-effectiveness of different caries preventive measures in a high-risk population of Swedish adolescents. Community Dent Oral Epidemiol. 2003;31:169–178.
  • Petersson LG, Westerberg I. Intensive fluoride varnish program in Swedish adolescents: economic assessment of a 7-year follow-up study on proximal caries incidence. Caries Res. 1994;28:59–63.
  • Pienihakkinen K, Jokela J, Alanen P. Risk-based early prevention in comparison with routine prevention of dental caries: a 7-year follow-up of a controlled clinical trial; clinical and economic aspects. BMC Oral Health. 2005;5:2.
  • Samnaliev M, Wijeratne R, Kwon EG, et al. Cost-effectiveness of a disease management program for early childhood caries. J Public Health Dent. 2015;75:24–33.
  • Skold L, Sundquist B, Eriksson B, et al. Four-year study of caries inhibition of intensive Duraphat application in 11-15-year-old children. Community Dent Oral Epidemiol. 1994;22:8–12.
  • Vermaire JH, van Loveren C, Brouwer WB, et al. Value for money: economic evaluation of two different caries prevention programmes compared with standard care in a randomized controlled trial. Caries Res. 2014;48:244–253.
  • Bertrand E, Mallis M, Bui NM, et al. Cost-effectiveness simulation of a universal publicly funded sealants application program. J Public Health Dent. 2011;71:38–45.
  • Chestnutt IG, Hutchings S, Playle R, et al. Seal or varnish? A randomised controlled trial to determine the relative cost and effectiveness of pit and fissure sealant and fluoride varnish in preventing dental decay. Health Technol Assess. 2017;21:1–256.
  • Chi DL, van der Goes DN, Ney JP. Cost-effectiveness of pit-and-fissure sealants on primary molars in Medicaid-enrolled children. Am J Public Health. 2014;104:555–561.
  • Davenport C, Elley K, Salas C, et al. The clinical effectiveness and cost-effectiveness of routine dental checks: a systematic review and economic evaluation. Health Technol Assess. 2003;7:iii–v, 1–127.
  • Espinoza-Espinoza G, Corsini G, Rojas R, et al. The cost-utility of school-based first permanent molar sealants programs: a Markov model. BMC Oral Health. 2019;19:293.
  • Jevdjevic M, Trescher AL, Rovers M, et al. The caries-related cost and effects of a tax on sugar-sweetened beverages. Public Health. 2019;169:125–132.
  • Kay E, Owen L, Taylor M, et al. The use of cost-utility analysis for the evaluation of caries prevention: an exploratory case study of two community-based public health interventions in a high-risk population in the UK. Community Dent Health. 2018;35:30–36.
  • Koh R, Pukallus M, Kularatna S, et al. Relative cost-effectiveness of home visits and telephone contacts in preventing early childhood caries. Community Dent Oral Epidemiol. 2015;43:560–568.
  • Nguyen TM, Tonmukayakul U, Warren E, et al. A Markov cost-effective analysis of biannual fluoride varnish for preventing dental caries in permanent teeth over a 70-year time horizon. Health Promot J Austr. 2019;31:177–183.
  • Palacio R, Shen J, Vale L, et al. Assessing the cost-effectiveness of a fluoride varnish programme in Chile: the use of a decision analytic model in dentistry. Community Dent Oral Epidemiol. 2019;47:217–224.
  • Schwendicke F, Gostemeyer G. Cost-effectiveness of root caries preventive treatments. J Dent. 2017;56:58–64.
  • Schwendicke F, Splieth CH, Thomson WM, et al. Cost-effectiveness of caries-preventive fluoride varnish applications in clinic settings among patients of low, moderate and high risk. Community Dent Oral Epidemiol. 2018;46:8–16.
  • Schwendicke F, Stolpe M. In-office application of fluoride gel or varnish: cost-effectiveness and expected value of perfect information analysis. Caries Res. 2017;51:231–239.
  • Schwendicke F, Thomson WM, Broadbent JM, et al. Effects of taxing sugar-sweetened beverages on caries and treatment costs. J Dent Res. 2016;95:1327–1332.
  • Splieth CH, Flessa S. Modelling lifelong costs of caries with and without fluoride use. Eur J Oral Sci. 2008;116:164–169.
  • Warren E, Curtis B, Jia N, et al. The caries management system: updating cost-effectiveness with 4-year posttrial data. Int J Technol Assess Health Care. 2016;32:107–115.
  • Fraihat N, Madae'en S, Bencze Z, et al. Clinical effectiveness and cost-effectiveness of oral-health promotion in dental caries prevention among children: systematic review and meta-analysis. Int J Environ Res Public Health. 2019;16:2668.
  • Rogers HJ, Rodd HD, Vermaire JH, et al. A systematic review of the quality and scope of economic evaluations in child oral health research. BMC Oral Health. 2019;19:132.
  • Qu Z, Zhang S, Krauth C, et al. A systematic review of decision analytic modeling techniques for the economic evaluation of dental caries interventions. PLoS One. 2019;14:e0216921.
  • Hettiarachchi RM, Kularatna S, Downes MJ, et al. The cost-effectiveness of oral health interventions: a systematic review of cost-utility analyses. Community Dent Oral Epidemiol. 2018;46:118–124.
  • Guyatt GH, Oxman AD, Vist GE, et al., GRADE Working Group. GRADE: an emerging consensus on rating quality of evidence and strength of recommendations. BMJ. 2008;336:924–926.
  • Schünemann H, Brożek J, Guyatt G, et al. Introduction to GRADE handbook. 2013. Available from: https://gdtgradeproorg/app/handbook/handbookhtml
  • Marino R, Zaror C. Economic evaluations in water-fluoridation: a scoping review. BMC Oral Health. 2020;20:115.
  • Matsuo G, Aida J, Osaka K, et al. Effects of community water fluoridation on dental caries disparities in adolescents. IJERPH. 2020;17:2020.
  • Marino R, Morgan M, Weitz A, et al. The cost-effectiveness of adding fluorides to milk-products distributed by the National Food Supplement Programme (PNAC) in rural areas of Chile. Community Dent Health. 2007;24:75–81.
  • Marino R, Traub F, Lekfuangfu P, et al. Cost-effectiveness analysis of a school-based dental caries prevention program using fluoridated milk in Bangkok, Thailand. BMC Oral Health. 2018;18:24.
  • Marino RJ, Fajardo J, Arana A, et al. Modeling an economic evaluation of a salt fluoridation program in Peru. J Public Health Dent. 2011;71:125–130.