Topical Fluoride to Prevent Root Caries: Systematic Review with Network Meta-analysis

2020 ◽  
Vol 65 (6) ◽  
pp. 396-397
2020 ◽  
Vol 99 (5) ◽  
pp. 506-513 ◽  
Author(s):  
J. Zhang ◽  
D. Sardana ◽  
K.Y. Li ◽  
K.C.M. Leung ◽  
E.C.M. Lo

The aim of this systematic review and network meta-analysis was to summarize the direct and indirect clinical evidence on the effectiveness of professionally applied and self-applied topical fluorides in preventing dental root caries. Controlled clinical trials with any follow-up duration were included. MEDLINE, PubMed, Embase, Scopus, and Cochrane Library were searched. Two reviewers independently carried out the selection of studies, data extraction, risk-of-bias assessments, and assessment of the certainty in the evidence using the Grading of Recommendations Assessment, Development, and Evaluation (GRADE) approach. Fixed effects model and frequentist approach were used in the network meta-analyses. Nine clinical trials involving 4,030 participants were included. Five professionally applied and 7 self-applied topical fluoride agents or combinations were included in the meta-analyses. Compared to control group, 38% silver diamine fluoride solution, 5% sodium fluoride varnish, and 1.2% acidulated phosphate fluoride reduced root caries increment after 2 y (ranging from 0.59 to 0.85 mean decayed or filled root [DF-root]). Fluoride mouth rinse and fluoride toothpaste, used alone or in combination, reduced root caries increment after 1 y (ranging from 0.29 to 1.90 mean DF-root). Among the professionally applied topical fluorides reviewed, an annually applied 38% silver diamine fluoride (SDF) solution combined with oral health education is most likely to be the most effective in preventing dental root caries. Among the reviewed self-applied topical fluoride methods, daily use of a 0.2% sodium fluoride (NaF) mouth rinse is most likely to be the most effective, followed by 1100 ppm to 1500 ppm fluoride toothpaste plus 0.05% NaF mouth rinse, and 1100 ppm to 1500 ppm fluoride toothpaste.


2020 ◽  
Vol 24 (11) ◽  
pp. 3801-3812
Author(s):  
Ana Karolina Almeida de Lima ◽  
Juliana Amorim dos Santos ◽  
Cristine Miron Stefani ◽  
Adriano de Almeida de Lima ◽  
Nailê Damé-Teixeira

2018 ◽  
Vol 77 ◽  
pp. 1-7 ◽  
Author(s):  
Ninuk Hariyani ◽  
Dini Setyowati ◽  
A. John Spencer ◽  
Liana Luzzi ◽  
Loc Giang Do

2021 ◽  
pp. 103885
Author(s):  
Sheetal Manchanda ◽  
Divesh Sardana ◽  
Pei Liu ◽  
Gillian HM Lee ◽  
Kar Yan Li ◽  
...  

2019 ◽  
Vol 8 (6) ◽  
Author(s):  
Ana Luzia Araújo Batista ◽  
Thamyres Maria Silva Simões ◽  
Maria das Graças Barbosa da Silva ◽  
Maria Helena Chaves de Vasconcelos Catão

Nas últimas décadas, um dos grandes avanços na Área da Saúde foi o desenvolvimento dos aparelhos de Laser, que possibilitou uma nova abordagem nos procedimentos odontológicos. A Laserterapia tem diversas aplicabilidades na Cariologia, seja como método de diagnóstico, como auxiliar nas medidas preventivas ou como tratamento da cárie dentária. Portanto, o objetivo desta revisão é proporcionar uma leitura atualizada da aplicabilidade da Laserterapia na Cariologia e, para tanto, foi realizada uma revisão literária sistematizada, na base de dados MEDLINE – Pubmed, abrangendo os últimos anos. Mediante esse estudo literário e considerando a evolução dos estudos científicos, ainda existem controvérsias a respeito da eficácia clínica do Laser na Cariologia.Descritores: Lasers; Cárie Dentária; Flúor.ReferênciasSichani AV, Javadinejad S, Ghafari R. Diagnostic value of DIAGNOdent in detecting caries under composite restorations of primary molars. Dent Res J. 2016;13(4):327-32.Montedori A, Abraha I, Orso M, D'errico PG, Pagano S, Lombardo G. Lasers for caries removal in deciduous and permanent teeth. Cochrane Database Syst Rev. 2016;26(9):CD010229.Nagata JY, Hioka N, Kimura E, Batistela VR, Terada RS, Graciano AX et al. Antibacterial photodynamic therapy for dental caries: evaluation of the photosensitizers used and light source properties. Photodiagnosis Photodyn Ther. 2012;9(2):122-31.Bahrololoomi Z, Fotuhi  Ardakani F, Sorouri M. In vitro comparison of the effects of diode laser and co2 laser on topical fluoride uptake in primary teeth. J Dent (Tehran). 2015;12(8):585-91.Nokhbatolfoghahaie H, Alikhasi M, Chiniforush N, Khoei F, Safavi N, Yaghoub Zadeh B. Evaluation of Accuracy of DIAGNOdent in Diagnosis of Primary and Secondary Caries in Comparison to Conventional Methods. J Lasers Med Sci. 2013; 4(4):159-67.Melo M, Pascual A, Camps I, Del Campo Á, Ata-Ali J. Caries diagnosis using light fluorescence devices in comparison with traditional visual and tactile evaluation: a prospective study in 152 patients. Odontology. 2017;105(3):283-90.Gimenez T, Braga MM, Raggio DP, Deery C, Ricketts DN, Mendes FM. Fluorescence-based methods for detecting caries lesions: systematic review, meta-analysis and sources of heterogeneity. PLoS One. 2013;8(4):e60421.Kositbowornchai S, Sukanya C, Tidarat T, Chanoggarn T. Caries detection under composite restorations by laser fluorescence and digital radiography. Clin Oral Investig. 2013; 17(9):2079-84.Rosa MI, Schambeck VS, Dondossola ER, Alexandre MC, Tuon L, Grande AJ, Hugo F. Laser fluorescence of caries detection in permanent teeth in vitro: a systematic review and meta-analysis. J Evid Based Med. 2016;  9(4):213-24.Heravi F, Ahrari F, Mahdavi M, Basafa S. Comparative evaluation of the effect of Er:YAG laser and low level laser irradiation combined with CPP-ACPF cream on treatment of enamel caries. J Clin Exp Dent. 2014;6(2):e121-26.Mang TS, Tayal DP, Baier R. Photodynamic therapy as an alternative treatment for disinfection of bacteria in oral biofilms. Lasers Surg Med. 2012;44(7):588-96.Fornaini C, Brulat N, Milia G, Rockl A, Rocca JP. The use of sub-ablative Er:YAG laser irradiation in  prevention of dental caries during orthodontic treatment. Laser Ther. 2014;23(3):173-81.Karandish M. The efficiency of laser application on the enamel surface: a systematic review. J Lasers Med Sci. 2014;5(3):108-14.Twetman S, Axelsson S, Dahlén G, Espelid I, Mejàre I, Norlund A et al. Adjunct methods for caries detection: a systematic review of literature. Acta Odontol Scand. 2013;71(3-4):388-97.Bahrololoomi Z, Lotfian M. Effect of diode laser irradiation combined with topical fluoride on enamel microhardness of primary teeth. J Dent (Tehran). 2015;12(2):85-9.Ramos-Oliveira TM, Ramos TM, Esteves-Oliveira M, Apel C, Fischer H, Eduardo CP et al. Potential of CO2 lasers (10.6 µm) associated with fluorides in inhibiting human enamel erosion. Braz Oral Res. 2014;28(1):1-6.Souza-Gabriel AE, Turssi CP, Colucci V, Tenuta LM, Serra MC, Corona SA. In situ study of the anticariogenic potential of fluoride varnish combined with CO2 laser on enamel. Arch Oral Biol. 2015;60(6):804-10.


2019 ◽  
Vol 31 (1) ◽  
pp. 3-15 ◽  
Author(s):  
Kalyana Chakravarthy Pentapati ◽  
Hanan Siddiq ◽  
Sravan Kumar Yeturu

2021 ◽  
Author(s):  
Yali Wei ◽  
Yan Meng ◽  
Na Li ◽  
Qian Wang ◽  
Liyong Chen

The purpose of the systematic review and meta-analysis was to determine if low-ratio n-6/n-3 long-chain polyunsaturated fatty acid (PUFA) supplementation affects serum inflammation markers based on current studies.


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