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Original Article

Influence of extra- and intra-oral application of CPP-ACP and fluoride on re-hardening of eroded enamel

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Pages 177-183 | Received 21 Dec 2010, Accepted 15 Mar 2011, Published online: 25 Jul 2011

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Read on this site (2)

Mehmet Akin, Zeliha Muge Baka, Zehra Ileri & Faruk Ayhan Basciftci. (2014) Can demineralized enamel surfaces be bonded safely?. Acta Odontologica Scandinavica 72:4, pages 283-289.
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Florian J. Wegehaupt, Tobias T. Tauböck & Thomas Attin. (2013) Durability of the anti-erosive effect of surfaces sealants under erosive abrasive conditions. Acta Odontologica Scandinavica 71:5, pages 1188-1194.
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Articles from other publishers (27)

Ivan Salinovic, Zdravko Schauperl, Marijan Marcius & Ivana Miletic. (2021) The Effects of Three Remineralizing Agents on the Microhardness and Chemical Composition of Demineralized Enamel. Materials 14:20, pages 6051.
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Juliane de Paula Tavares, Camila Vieira da Silva, Yael Engel, Patricia Moreira de Freitas & Peter Rechmann. (2021) In situ Effect of CO<sub>2</sub> Laser (9.3 μm) Irradiation Combined with AmF/NaF/SnCl<sub>2</sub> Solution in Prevention and Control of Erosive Tooth Wear in Human Enamel. Caries Research 55:6, pages 617-628.
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Alana Machado, Leticia SAKAE, Samira Helena Niemeyer, Thiago Saads Carvalho, Bennett Amaechi & Taís Scaramucci. (2020) Anti-erosive effect of rinsing before or after toothbrushing with a Fluoride/Stannous Ions solution: an in situ investigation. Journal of Dentistry 101, pages 103450.
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Letícia Oba Sakae, Samira Helena Niemeyer, Sávio José Cardoso Bezerra, Alessandra Buhler Borges, Cecilia Pedroso Turssi & Taís Scaramucci. (2020) The Addition of Propylene Glycol Alginate to a Fluoride Solution to Control Enamel Wear: An in situ Study. Caries Research 54:5-6, pages 517-523.
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Philipp Körner, Jana A Schleich, Daniel B. Wiedemeier, Thomas Attin & Florian J. Wegehaupt. (2020) Effects of Additional Use of Bioactive Glasses or a Hydroxyapatite Toothpaste on Remineralization of Artificial Lesions in vitro. Caries Research 54:4, pages 336-342.
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Kevin Pirca & Gabriela Balbín-Sedano. (2019) Remineralizing Effect of Casein Phosphopeptide–Amorphous Calcium Phosphate and Sodium Fluoride on Artificial Tooth Enamel Erosion: An In Vitro Study. The Journal of Contemporary Dental Practice 20:11, pages 1254-1259.
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Fady Bou Chebel, Carina Mehanna Zogheib, Nadim Z. Baba & Karim A. Corbani. (2018) Clinical Comparative Evaluation of Nd:YAG Laser and a New Varnish Containing Casein Phosphopeptides-Amorphous Calcium Phosphate for the Treatment of Dentin Hypersensitivity: A Prospective Study. Journal of Prosthodontics 27:9, pages 860-867.
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Hao Yu, Neng-wu Jiang, Xin-yi Ye, Hai-yan Zheng, Thomas Attin & Hui Cheng. (2018) In situ effect of Tooth Mousse containing CPP-ACP on human enamel subjected to in vivo acid attacks. Journal of Dentistry 76, pages 40-45.
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Yu Yuan Zhang, Hai Ming Wong, Colman P. J. McGrath & Quan Li Li. (2018) In vitro and in vivo evaluation of electrophoresis-aided casein phosphopeptide-amorphous calcium phosphate remineralisation system on pH-cycling and acid-etching demineralised enamel. Scientific Reports 8:1.
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Taís Fonseca Mantilla, Camila Vieira da Silva, Thayanne Monteiro Ramos-Oliveira, Cecilia Pedroso Turssi, Martha Simões Ribeiro & Patricia Moreira de Freitas. (2017) TiF 4 gel effects on tubular occlusion of eroded/abraded human dentin . Microscopy Research and Technique 80:11, pages 1182-1188.
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Catarina Ribeiro Barros de ALENCAR, Gabriela Cristina de OLIVEIRA, Ana Carolina MAGALHÃES, Marília Afonso Rabelo BUZALAF, Maria Aparecida de Andrade Moreira MACHADO, Heitor Marques HONÓRIO & Daniela RIOS. (2017) In situ effect of CPP-ACP chewing gum upon erosive enamel loss. Journal of Applied Oral Science 25:3, pages 258-264.
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Till Dammaschke. (2022) Remineralisation initialer Zahnhart substanz - defekte durch Fluoride und CPP-ACP?. Oralprophylaxe & Kinderzahnheilkunde 39:1, pages 38-44.
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Andréa Dias Neves Lago, Patrícia Moreira de Freitas, Erika Michele dos Santos Araújo, Adriana Bona Matos & Narciso Garone-Netto. (2017) Is It Necessary to Prepare the Enamel before Dental Bleaching?. International Journal of Dentistry 2017, pages 1-6.
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Andressa Feitosa Bezerra de Oliveira, Luciana Vilar de Oliveira Diniz, Franklin Delano Soares Forte, Fabio Correia Sampaio, Renzo Alberto Ccahuana-Vásquez & Bennett Tochukwu Amaechi. (2016) In situ effect of a CPP-ACP chewing gum on enamel erosion associated or not with abrasion. Clinical Oral Investigations 21:1, pages 339-346.
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Mügem Aslı Gürel Ekici, Fehime Alkan, Hacer Deniz Arısu & Bağdagül Helvacıoğlu Kıvanç. (2016) Effects of casein phosphopeptide-amorphous calcium phosphate (CPP-ACP) and fluoride on the microhardness of enamel treated with a bleaching agent: ex vivo. Acta Odontologica Turcica.
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Catarina Ribeiro Barros de ALENCAR, Fernanda Lyrio MENDONÇA, Luísa Belluco GUERRINI, Maisa Camillo JORDÃO, Gabriela Cristina de OLIVEIRA, Heitor Marques HONÓRIO, Ana Carolina MAGALHÃES & Daniela RIOS. (2016) Effect of different salivary exposure times on the rehardening of acid-softened enamel. Brazilian Oral Research 30:1.
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M.C. Jordão, C.R.B. Alencar, I.M. Mesquita, M.A.R. Buzalaf, A.C. Magalhães, M.A.A.M. Machado, H.M. Honório & D. Rios. (2016) In situ Effect of Chewing Gum with and without CPP-ACP on Enamel Surface Hardness Subsequent to ex vivo Acid Challenge. Caries Research 50:3, pages 325-330.
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Graziela Ribeiro Batista, Carlos Rocha Gomes Torres, Beatrice Sener, Thomas Attin & Annette Wiegand. (2016) Artificial Saliva Formulations versus Human Saliva Pretreatment in Dental Erosion Experiments. Caries Research 50:1, pages 78-86.
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A. Kensche, S. Pötschke, C. Hannig, G. Richter, W. Hoth-Hannig & M. Hannig. (2016) Influence of Calcium Phosphate and Apatite Containing Products on Enamel Erosion. The Scientific World Journal 2016, pages 1-12.
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A. B. Nongonierma, M. B. O’Keeffe & R. J. FitzGerald. 2016. Advanced Dairy Chemistry. Advanced Dairy Chemistry 417 482 .
Adrian Lussi & Thiago Saads Carvalho. (2015) The Future of Fluorides and Other Protective Agents in Erosion Prevention. Caries Research 49:Suppl. 1, pages 18-29.
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Catarina Ribeiro Barros de Alencar, Ana Carolina Magalhães, Maria Aparecida de Andrade Moreira Machado, Thais Marchini de Oliveira, Heitor Marques Honório & Daniela Rios. (2014) In situ effect of a commercial CPP-ACP chewing gum on the human enamel initial erosion. Journal of Dentistry 42:11, pages 1502-1507.
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Annette Wiegand & Thomas Attin. (2014) Randomised in situ trial on the effect of milk and CPP-ACP on dental erosion. Journal of Dentistry 42:9, pages 1210-1215.
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Dusa Vukosavljevic, William Custodio, Marilia A.R. Buzalaf, Anderson T. Hara & Walter L. Siqueira. (2014) Acquired pellicle as a modulator for dental erosion. Archives of Oral Biology 59:6, pages 631-638.
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L Zheng, J Zheng, Y F Zhang, L M Qian & Z R Zhou. (2013) Effect of CPP-ACP on the remineralization of acid-eroded human tooth enamel: nanomechanical properties and microtribological behaviour study. Journal of Physics D: Applied Physics 46:40, pages 404006.
Crossref
Letícia Prestes, Beatriz M. Souza, Lívia P. Comar, Priscila A. Salomão, Daniela Rios & Ana Carolina Magalhães. (2013) In situ effect of chewing gum containing CPP–ACP on the mineral precipitation of eroded bovine enamel—A surface hardness analysis. Journal of Dentistry 41:8, pages 747-751.
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Ahmed Z. Abdullah, Anthony J. Ireland, Jonathan R. Sandy & Michele E. Barbour. (2012) A Nanomechanical Investigation of Three Putative Anti-Erosion Agents: Remineralisation and Protection against Demineralisation. International Journal of Dentistry 2012, pages 1-7.
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