Improving Oral Health with Fluoride-Free Calcium-Phosphate-Based Biomimetic Toothpastes: An Update of the Clinical Evidence
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[1] B. Amaechi,et al. Caries-preventing effect of a hydroxyapatite-toothpaste in adults: a 18-month double-blinded randomized clinical trial , 2023, Frontiers in Public Health.
[2] Soram Oh,et al. A randomized clinical trial for comparing the efficacy of desensitizing toothpastes on the relief of dentin hypersensitivity , 2023, Scientific Reports.
[3] R. Jain,et al. Comparative Evaluation of White Spot Lesion incidence between NovaMin, Probiotic, And Fluoride containing Dentifrices during Orthodontic treatment Using Laser Fluorescence - A Prospective Randomized Controlled Clinical Trial , 2023, Clinical and Investigative Orthodontics.
[4] B. Amaechi,et al. Remineralization Strategies for Teeth with Molar Incisor Hypomineralization (MIH): A Literature Review , 2023, Dentistry journal.
[5] H. Limeback,et al. Tooth Whitening with Hydroxyapatite: A Systematic Review , 2023, Dentistry journal.
[6] H. Limeback,et al. Clinical Evidence of Biomimetic Hydroxyapatite in Oral Care Products for Reducing Dentin Hypersensitivity: An Updated Systematic Review and Meta-Analysis , 2023, Biomimetics.
[7] B. Amaechi,et al. Remineralization of molar incisor hypomineralization (MIH) with a hydroxyapatite toothpaste: an in-situ study , 2022, BDJ open.
[8] M. Epple,et al. On the Application of Calcium Phosphate Micro- and Nanoparticles as Food Additive , 2022, Nanomaterials.
[9] Matteo Pellegrini,et al. Biomimetic hydroxyapatite paste for Molar-Incisor Hypomineralization: a Randomized Clinical Trial. , 2022, Oral diseases.
[10] B. Kargul,et al. The effect of a novel toothpaste in children with white spot lesions. , 2022, JPMA. The Journal of the Pakistan Medical Association.
[11] A. Fawzy,et al. Long-term evaluation of early-enamel lesions treated with novel experimental tricalcium silicate paste: A 2-year randomized clinical trial. , 2022, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].
[12] A. Scribante,et al. Home Oral Care with Biomimetic Hydroxyapatite vs. Conventional Fluoridated Toothpaste for the Remineralization and Desensitizing of White Spot Lesions: Randomized Clinical Trial , 2022, International journal of environmental research and public health.
[13] A. Kiesow,et al. Influence of the Amount of Toothpaste on Cleaning Efficacy: An In Vitro Study , 2022, European Journal of Dentistry.
[14] S. Sharda,et al. Effectiveness-of Calcium Phosphate derivative agents on the prevention and remineralization of caries among children- A systematic review & meta-analysis of randomized controlled trials. , 2022, The journal of evidence-based dental practice.
[15] B. Kargul,et al. Effect of Remineralization Agents on Molar-Incisor Hypomineralization-Affected Incisors: A Randomized Controlled Clinical Trial. , 2022, The Journal of clinical pediatric dentistry.
[16] D. Bourgeois,et al. Effect of casein phosphopeptide amorphous calcium fluoride phosphate and calcium glycerophosphate on incisors with molar-incisor hypomineralization: A cross-over, randomized clinical trial. , 2022, Bio-medical materials and engineering.
[17] R. Salah,et al. EFFICACY OF NOVEL BIOACTIVE GLASS IN THE TREATMENT OF ENAMEL WHITE SPOT LESIONS: A RANDOMIZED CONTROLLED TRIAL✰. , 2022, The journal of evidence-based dental practice.
[18] V. Doroshina,et al. The Effect of Toothpastes Containing Hydroxyapatite, Fluoroapatite, and Zn-Mg-hydroxyapatite Nanocrystals on Dentin Hypersensitivity: A Randomized Clinical Trial , 2022, Journal of International Society of Preventive & Community Dentistry.
[19] A. Danilina,et al. Clinical efficacy of hydroxyapatite toothpaste containing Polyol Germanium Complex (PGC) with threonine in the treatment of dentine hypersensitivity , 2022, The Saudi dental journal.
[20] M. Fabbro,et al. EFFICACY OF 67% SODIUM BICARBONATE TOOTHPASTE FOR PLAQUE AND GINGIVITIS CONTROL: A SYSTEMATIC REVIEW AND META-ANALYSIS. , 2022, The journal of evidence-based dental practice.
[21] Shilpa Philip,et al. Management of Post Orthodontic White Spot Lesions Using Resin Infiltration and CPP-ACP Materials- A Clinical Study. , 2022, The Journal of clinical pediatric dentistry.
[22] T. Bezgin,et al. Effects of different remineralization agents on MIH defects: a randomized clinical study , 2021, Clinical oral investigations.
[23] Purva Verma,et al. Bionic effects of nano hydroxyapatite dentifrice on demineralised surface of enamel post orthodontic debonding: in-vivo split mouth study , 2021, Progress in orthodontics.
[24] Hafiz Mian Muhammad Adil,et al. Comparison of Casein Phosphopeptide with Potassium Nitrate and Sodium Monofluorophosphate Desensitizing Efficacy after In-Office Vital Bleaching—A Randomized Trial , 2021, Applied Sciences.
[25] B. Amaechi,et al. Anti-caries evaluation of a nano-hydroxyapatite dental lotion for use after toothbrushing: An in situ study. , 2021, Journal of dentistry.
[26] E. Brauner,et al. Efficacy of bio-activated anti-calculus toothpaste on oral health: a single-blind, parallel-group clinical study. , 2021, Minerva dental and oral science.
[27] M. Tostes,et al. Effectiveness of CPP-ACP and Fluoride Products in Tooth Remineralization. , 2021, International journal of dental hygiene.
[28] A. Scribante,et al. SEM/EDS Evaluation of the Mineral Deposition on a Polymeric Composite Resin of a Toothpaste Containing Biomimetic Zn-Carbonate Hydroxyapatite (microRepair®) in Oral Environment: A Randomized Clinical Trial , 2021, Polymers.
[29] D. Ashour,et al. Effect of CPP-ACP pastes with/without fluoride on white spot lesion progression, salivary pH, and fluoride release in high caries risk patients: A randomized clinical trial , 2021 .
[30] Minh N Luong,et al. Clinical efficacy of nanohydroxyapatite-containing toothpaste at relieving dentin hypersensitivity: an 8 weeks randomized control trial , 2021, BDJ open.
[31] Attawood Lertpimonchai,et al. Bioactive glass and arginine dentifrices immediately relieved dentine hypersensitivity following non-surgical periodontal therapy: A randomized controlled trial. , 2021, Journal of periodontology.
[32] Anuj Kumar Goyal,et al. An evaluation of remineralised MIH using CPP-ACP and fluoride varnish: An in-situ and in-vitro study , 2021, European Archives of Paediatric Dentistry.
[33] R. Hornung,et al. Critical windows of fluoride neurotoxicity in Canadian children , 2021, Environmental research.
[34] B. Dikmen,et al. Effectiveness of Remineralization Agents on the Prevention of Dental Bleaching Induced Sensitivity: A Randomized Clinical Trial. , 2021, International journal of dental hygiene.
[35] Lin Chen,et al. Recent Development of Active Ingredients in Mouthwashes and Toothpastes for Periodontal Diseases , 2021, Molecules.
[36] P. Deepika,et al. Comparative Evaluation of Fluorinol and Calcium Sodium Phosphosilicate containing Toothpastes in the Treatment of Dentin Hypersensitivity. , 2021, International journal of dental hygiene.
[37] B. Amaechi,et al. Impact of a toothpaste with microcrystalline hydroxyapatite on the occurrence of early childhood caries: a 1-year randomized clinical trial , 2021, Scientific reports.
[38] I. Schmidtmann,et al. Efficacy of a Toothpaste Based on Microcrystalline Hydroxyapatite on Children with Hypersensitivity Caused by MIH: A Randomised Controlled Trial. , 2021, Oral health & preventive dentistry.
[39] M. Al-Omari,et al. Clinical efficacy of single application of plain nano-hydroxyapatite paste in reducing dentine hypersensitivity - A randomized clinical trial , 2021 .
[40] I. Lamster,et al. Current concepts in the management of periodontitis. , 2020, International dental journal.
[41] Andrell Hosein,et al. Can Desensitizing Toothpastes Also Have an Effect on Gingival Inflammation? A Double-Blind, Three-Treatment Crossover Clinical Trial , 2020, International Journal of Environmental Research and Public Health.
[42] J. Enax,et al. Whitening Effects of a Novel Oral Care Gel with Biomimetic Hydroxyapatite: A 4-Week Observational Pilot Study , 2020, Biomimetics.
[43] S. Y. Kim,et al. Clinical and Microbiological Efficacy of Pyrophosphate Containing Toothpaste: A Double-Blinded Placebo-Controlled Randomized Clinical Trial. , 2020 .
[44] R. El Dib,et al. Protective effect of fluorides on erosion and erosion/abrasion in enamel: a systematic review and meta-analysis of randomized in situ trials. , 2020, Archives of oral biology.
[45] S. Kasraei,et al. Comparison of the effects of toothpastes containing nanohydroxyapatite and fluoride on white spot lesions in orthodontic patients: A randomized clinical trial , 2020, Dental research journal.
[46] K. Grocholewicz,et al. Effect of nano-hydroxyapatite and ozone on approximal initial caries: a randomized clinical trial , 2020, Scientific Reports.
[47] A. Abdou,et al. Effect of calcium sodium phosphosilicate–containing compared to nanohydroxyapatite-containing toothpastes on dentinal tubule occlusion: A randomized clinical in situ study , 2020 .
[48] M. Tostes,et al. Effect of CPP-ACP on remineralization of artificial caries-like lesion: an in situ study. , 2020, Brazilian oral research.
[49] C. Silva,et al. Effect of nanohydroxyapatite associated with photobiomodulation in the control of dentin hypersensitivity: A randomized, double-blind, placebo-controlled clinical trial. , 2020, American journal of dentistry.
[50] C. Till,et al. Controversy: The evolving science of fluoride: when new evidence doesn’t conform with existing beliefs , 2020, Pediatric Research.
[51] J. Enax,et al. Daily Application of a Toothpaste with Biomimetic Hydroxyapatite and Its Subjective Impact on Dentin Hypersensitivity, Tooth Smoothness, Tooth Whitening, Gum Bleeding, and Feeling of Freshness , 2020, Biomimetics.
[52] A. Talapaneni,et al. Evaluation of Three Commercially Available Materials in Reducing the White Spot Lesions During Fixed Orthodontic Treatment: A Prospective Randomized Controlled Trial , 2020 .
[53] S. Al-Khateeb,et al. Assessment of the effects of a fluoride dentifrice and GC Tooth Mousse on early caries lesions in primary anterior teeth using quantitative light-induced fluorescence: a randomised clinical trial , 2020, European archives of paediatric dentistry : official journal of the European Academy of Paediatric Dentistry.
[54] B. Amaechi,et al. Comparative efficacy of a hydroxyapatite and a fluoride toothpaste for prevention and remineralization of dental caries in children , 2019, BDJ Open.
[55] A. Murariu,et al. Comparative Evaluation of Casein Phosphopeptide - Amorphous Calcium Phosphate and Fluoride in Managing Early Caries Lesions , 2019, Revista de Chimie.
[56] Lili Chen,et al. Efficacy of nano-carbonate apatite dentifrice in relief from dentine hypersensitivity following non-surgical periodontal therapy: a randomized controlled trial , 2019, BMC oral health.
[57] M. K. Khan,et al. Evaluate Efficacy of Desensitizing Toothpaste Containing Zinc-carbonate Hydroxyapatite Nanocrystals: Non-comparative Eight-week Clinical Study , 2019, Journal of International Society of Preventive & Community Dentistry.
[58] C. van Loveren,et al. Guidelines on the use of fluoride for caries prevention in children: an updated EAPD policy document , 2019, European Archives of Paediatric Dentistry.
[59] C. Heumann,et al. Effect of toothpaste containing amine fluoride and stannous chloride on the reduction of dental plaque and gingival inflammation. A randomized controlled 12-week home-use study. , 2019, International journal of dental hygiene.
[60] Zsuzsa Bencze,et al. Clinical Effectiveness and Cost-Effectiveness of Oral-Health Promotion in Dental Caries Prevention among Children: Systematic Review and Meta-Analysis , 2019, International journal of environmental research and public health.
[61] H. Limeback,et al. Dental Fluorosis Trends in US Oral Health Surveys: 1986 to 2012 , 2019, JDR clinical and translational research.
[62] H. Worthington,et al. Fluoride toothpastes of different concentrations for preventing dental caries. , 2019, The Cochrane database of systematic reviews.
[63] L. Espinoza,et al. Use of Toothpaste and Toothbrushing Patterns Among Children and Adolescents — United States, 2013–2016 , 2019, MMWR. Morbidity and mortality weekly report.
[64] P. Proff,et al. Impact of a non‐fluoridated microcrystalline hydroxyapatite dentifrice on enamel caries progression in highly caries‐susceptible orthodontic patients: A randomized, controlled 6‐month trial , 2019, Journal of investigative and clinical dentistry.
[65] M. S. Sarto,et al. Enamel remineralization and repair results of Biomimetic Hydroxyapatite toothpaste on deciduous teeth: an effective option to fluoride toothpaste , 2019, Journal of Nanobiotechnology.
[66] E. Reynolds,et al. Importance of bioavailable calcium in fluoride dentifrices for enamel remineralization. , 2018, Journal of dentistry.
[67] D. Cummins,et al. The Effects of Two New Dual Zinc plus Arginine Dentifrices in Reducing Oral Bacteria in Multiple Locations in the Mouth: 12-Hour Whole Mouth Antibacterial Protection for Whole Mouth Health. , 2018, The Journal of clinical dentistry.
[68] B. Amaechi,et al. Clinical Efficacy in Relieving Dentin Hypersensitivity of Nanohydroxyapatite-containing Cream: A Randomized Controlled Trial , 2018, The open dentistry journal.
[69] H. Milly,et al. Effect of CPP-ACP on efficacy and postoperative sensitivity associated with at-home vital tooth bleaching using 20% carbamide peroxide , 2018, Clinical Oral Investigations.
[70] F. Liu,et al. [Impact assessment on enamel remineralization after orthodontic treatment with casein phosphopeptide calcium phosphate complex]. , 2018, Shanghai kou qiang yi xue = Shanghai journal of stomatology.
[71] K. Kunzelmann,et al. Hydroxyapatite and Self-Assembling Peptide Matrix for Non-Oxidizing Tooth Whitening. , 2018, The Journal of clinical dentistry.
[72] B. Amaechi,et al. Overview of Calcium Phosphates used in Biomimetic Oral Care , 2018, The open dentistry journal.
[73] T. Attin,et al. In situ effect of Tooth Mousse containing CPP-ACP on human enamel subjected to in vivo acid attacks. , 2018, Journal of dentistry.
[74] J. Enax,et al. Early Childhood Caries: Epidemiology, Aetiology, and Prevention , 2018, International journal of dentistry.
[75] R. Gatto,et al. Molar incisor hypomineralization treatment with casein phosphopeptide and amorphous calcium phosphate in children. , 2018, Minerva stomatologica.
[76] S. Şener,et al. Treatment of post-orthodontic white spot lesions with CPP-ACP paste: A three year follow up study. , 2017, Dental materials journal.
[77] G. Burnside,et al. A Randomised Controlled Trial to Investigate the Remineralising Potential of Tooth Mousse™ in Orthodontic Patients , 2017, Journal of orthodontics.
[78] S. Mason,et al. Exploratory randomised controlled clinical study to evaluate the comparative efficacy of two occluding toothpastes - a 5% calcium sodium phosphosilicate toothpaste and an 8% arginine/calcium carbonate toothpaste - for the longer-term relief of dentine hypersensitivity. , 2017, Journal of dentistry.
[79] A. Owais,et al. Effect of CPP-ACP or a Potassium Nitrate Sodium Fluoride Dentifrice on Enamel Erosion Prevention. , 2017, The Journal of clinical pediatric dentistry.
[80] S. Nagarakanti,et al. Evaluation and comparison of efficacy of three desensitizing dentifrices on dentinal hypersensitivity and salivary biochemical characteristics: A randomized controlled trial , 2017, Dental research journal.
[81] E. Esenlik,et al. Efficacy of a casein phosphopeptide amorphous calcium phosphate (CPP-ACP) paste in preventing white spot lesions in patients with fixed orthodontic appliances: A prospective clinical trial. , 2016, European journal of paediatric dentistry.
[82] N. J. Coleman,et al. A 12-Week Assessment of the Treatment of White Spot Lesions with CPP-ACP Paste and/or Fluoride Varnish , 2016, BioMed research international.
[83] K. Murthy,et al. Clinical efficacy of four interventions in the reduction of dentinal hypersensitivity: A 2-month study , 2016, Indian journal of dental research : official publication of Indian Society for Dental Research.
[84] A. Goyal,et al. Effects of various remineralizing agents on the outcome of post-orthodontic white spot lesions (WSLs): a clinical trial , 2016, Progress in orthodontics.
[85] K. Prior,et al. Impact of the Daily Use of a Microcrystal Hydroxyapatite Dentifrice on De Novo Plaque Formation and Clinical/Microbiological Parameters of Periodontal Health. A Randomized Trial , 2016, PloS one.
[86] M. Polyakova,et al. Effect of long term application of toothpaste Apadent Total Care Medical nano-hydroxyapatite. , 2016, Stomatologiia.
[87] G. Sidhu,et al. Assessment of White Spot Lesions and In-Vivo Evaluation of the Effect of CPP-ACP on White Spot Lesions in Permanent Molars of Children. , 2016, Journal of clinical and diagnostic research : JCDR.
[88] Jyothi Kashi Nanjundasetty,et al. Efficacy of desensitizing agents on postoperative sensitivity following an in-office vital tooth bleaching: A randomized controlled clinical trial , 2016, Journal of conservative dentistry : JCD.
[89] J. Milleman,et al. Efficacy of an experimental toothpaste containing 5% calcium sodium phosphosilicate in the relief of dentin hypersensitivity: An 8-week randomized study (Study 2). , 2016, American journal of dentistry.
[90] S. Mason,et al. Efficacy of an experimental toothpaste containing 5% calcium sodium phosphosilicate in the relief of dentin hypersensitivity: An 8-week randomized study (Study 1). , 2016, American journal of dentistry.
[91] A. Barone,et al. Tooth bleaching with hydrogen peroxide and nano-hydroxyapatite: a 9-month follow-up randomized clinical trial. , 2015, International journal of dental hygiene.
[92] Edgar Dutra Zanotto,et al. A clinical, randomized, controlled study on the use of desensitizing agents during tooth bleaching. , 2015, Journal of dentistry.
[93] Amit Jena,et al. Comparison of efficacy of three different desensitizing agents for in-office relief of dentin hypersensitivity: A 4 weeks clinical study , 2015, Journal of conservative dentistry : JCD.
[94] C. Llena,et al. CPP-ACP and CPP-ACFP versus fluoride varnish in remineralisation of early caries lesions. A prospective study. , 2015, European journal of paediatric dentistry.
[95] S. Acharya,et al. Evaluation of instant desensitization after a single topical application over 30 days: a randomized trial. , 2015, Australian dental journal.
[96] J. John,et al. Evaluation of Dentifrice Containing Nano-hydroxyapatite for Dentinal Hypersensitivity: A Randomized Controlled Trial , 2015, Journal of international oral health : JIOH.
[97] M. Kambara,et al. Effect of CPP-ACP Paste on Enamel Carious Lesion of Primary Upper Anterior Teeth Assessed by Quantitative Light-Induced Fluorescence: A One-Year Clinical Trial , 2015, Caries Research.
[98] Y. Cheung,et al. Anti-caries effect of CPP-ACP in irradiated nasopharyngeal carcinoma patients , 2015, Clinical Oral Investigations.
[99] M. Vossoughi,et al. Efficacy of Fluoride Varnish and Casein Phosphopeptide-Amorphous Calcium Phosphate for Remineralization of Primary Teeth: A Randomized Clinical Trial , 2015, Medical Principles and Practice.
[100] V. Radojević,et al. Efficacy of pastes containing CPP-ACP and CPP-ACFP in patients with Sjögren’s syndrome , 2015, Clinical Oral Investigations.
[101] S. Thakur,et al. An In-Vivo Comparative Study of the Efficacy of Propolis, Nano-Hydroxyapatite and Potassium Nitrate Containing Desensitizing Agents. , 2014 .
[102] Savita Singh,et al. The effect of pro-argin technology vs nano technology using commercially available dentifrice: A comparative study , 2014 .
[103] A. Barone,et al. Effectiveness of nano-hydroxyapatite toothpaste in reducing dentin hypersensitivity: a double-blind randomized controlled trial. , 2014, Quintessence international.
[104] N. Roveri,et al. Remineralization and repair of enamel surface by biomimetic Zn-carbonate hydroxyapatite containing toothpaste: a comparative in vivo study , 2014, Front. Physiol..
[105] M. Ateş,et al. Does casein phosphopeptid amorphous calcium phosphate provide remineralization on white spot lesions and inhibition of Streptococcus mutans? , 2014, The Journal of clinical pediatric dentistry.
[106] G. Maghaireh,et al. Assessment of the effect of casein phosphopeptide-amorphous calcium phosphate on postoperative sensitivity associated with in-office vital tooth whitening. , 2014, Operative dentistry.
[107] Eun-Suk Jeon,et al. Comparison of the whitening effect of toothpastes containing 0.25% hydroxyapatite and 0.75% hydrogen peroxide , 2014 .
[108] H. Ulukapı,et al. The investigation of non-invasive techniques for treating early approximal carious lesions: an in vivo study. , 2014, International dental journal.
[109] R. Lynch. The primary and mixed dentition, post-eruptive enamel maturation and dental caries: a review. , 2013, International dental journal.
[110] L. Manzoli,et al. A 3-day randomized clinical trial to investigate the desensitizing properties of three dentifrices. , 2013, Journal of periodontology.
[111] P. Nadanovsky,et al. Effects of Low and Standard Fluoride Toothpastes on Caries and Fluorosis: Systematic Review and Meta-Analysis , 2013, Caries Research.
[112] Anirudh B Acharya,et al. A clinical study of the effect of calcium sodium phosphosilicate on dentin hypersensitivity , 2013, Journal of clinical and experimental dentistry.
[113] A. Pradeep,et al. Comparison of efficacy of three commercially available dentifrices [corrected] on dentinal hypersensitivity: a randomized clinical trial. , 2012, Australian dental journal.
[114] Yan Yan,et al. Clinical evaluation of remineralization potential of casein phosphopeptide amorphous calcium phosphate nanocomplexes for enamel decalcification in orthodontics. , 2012, Chinese medical journal.
[115] Anirudh B Acharya,et al. Efficacy of calcium sodium phosphosilicate in managing dentinal hypersensitivity. , 2012, General dentistry.
[116] W. Browning,et al. Effect of a nano-hydroxyapatite paste on bleaching-related tooth sensitivity. , 2012, Journal of esthetic and restorative dentistry : official publication of the American Academy of Esthetic Dentistry ... [et al.].
[117] C. Huebner,et al. Effect of CPP-ACP Paste on Dental Caries in Primary Teeth , 2012, Journal of dental research.
[118] K. S. Rajesh,et al. Evaluation of the efficacy of a 5% calcium sodium phosphosilicate (Novamin) containing dentifrice for the relief of dentinal hypersensitivity: a clinical study. , 2012, Indian journal of dental research : official publication of Indian Society for Dental Research.
[119] F. A. Başçiftçi,et al. Can white spot lesions be treated effectively? , 2012, The Angle orthodontist.
[120] B. Borges,et al. Efficacy of a novel at-home bleaching technique with carbamide peroxides modified by CPP-ACP and its effect on the microhardness of bleached enamel. , 2011, Operative dentistry.
[121] Xuedong Zhou,et al. Remineralization effects of casein phosphopeptide-amorphous calcium phosphate crème on artificial early enamel lesions of primary teeth. , 2011, International journal of paediatric dentistry.
[122] B. Kristensen,et al. Treatment of post-orthodontic white spot lesions with casein phosphopeptide-stabilised amorphous calcium phosphate , 2011, Clinical Oral Investigations.
[123] Shreya Shetty,et al. Hydroxyapatite as an in-office agent for tooth hypersensitivity: a clinical and scanning electron microscopic study. , 2010, Journal of periodontology.
[124] D. Birkhed,et al. Effect of whitening toothpastes on tooth staining using two different colour-measuring devices--a 12-week clinical trial. , 2010, International dental journal.
[125] T. Uysal,et al. Effects of different topical agents on enamel demineralization around orthodontic brackets: an in vivo and in vitro study. , 2010, Australian dental journal.
[126] Thirayu Boonroung,et al. The effectiveness of a calcium sodium phosphosilicate desensitizer in reducing cervical dentin hypersensitivity: a pilot study. , 2010, Journal of the American Dental Association.
[127] Anuj Sharma,et al. Comparison of clinical efficacy of a dentifrice containing calcium sodium phosphosilicate to a dentifrice containing potassium nitrate and to a placebo on dentinal hypersensitivity: a randomized clinical trial. , 2010, Journal of periodontology.
[128] M. Kavitha,et al. Comparison of the remineralization potential of CPP-ACP and CPP-ACP with 900 ppm fluoride on eroded human enamel: An in situ study. , 2010, Archives of oral biology.
[129] L. Manzoli,et al. A double-blind randomized-controlled trial comparing the desensitizing efficacy of a new dentifrice containing carbonate/hydroxyapatite nanocrystals and a sodium fluoride/potassium nitrate dentifrice. , 2010, Journal of clinical periodontology.
[130] E. Reynolds,et al. Regression of Post-orthodontic Lesions by a Remineralizing Cream , 2009, Journal of dental research.
[131] M. Bhat,et al. Study of the Efficacy of Toothpaste Containing Casein Phosphopeptide in the Prevention of Dental Caries: a Randomized Controlled Trial in 12- to 15-Year-Old High Caries Risk Children in Bangalore, India , 2009, Caries Research.
[132] Su-Hwan Kim,et al. The clinical effects of a hydroxyapatite containing toothpaste for dentine hypersensitivity , 2009 .
[133] Young-Hyuk Kwon,et al. The effects of hydroxyapatite toothpaste on tooth hypersensitivity , 2009 .
[134] Z. Bian,et al. Clinical evaluation of a dentifrice containing calcium sodium phosphosilicate (novamin) for the treatment of dentin hypersensitivity. , 2008, American journal of dentistry.
[135] Min-Soo Kim,et al. Effect of Hydroxyapatite containing dentifrice on teeth hypersensitivity after periodontal therapy , 2008 .
[136] Young-Hyuk Kwon,et al. The effects of microcrystalline hydroxyapatite containing toothpaste in the control of tooth hypersensitivity , 2005 .
[137] Judith A. Cochran,et al. Fluoride ingestion from toothpaste: fluoride recovered from the toothbrush, the expectorate and the after-brush rinses. , 2004, Community dentistry and oral epidemiology.
[138] H. Aoki,et al. Polishing and whitening properties of toothpaste containing hydroxyapatite , 2001, Journal of materials science. Materials in medicine.
[139] R. Newcombe,et al. A 6-month home usage trial of a 1% chlorhexidine toothpaste (1). Effects on plaque, gingivitis, calculus and toothstaining. , 1993, Journal of clinical periodontology.
[140] T. Ohashi,et al. Effect to Apatite-containing Dentifrices on Dental Caries in School Children , 1989 .
[141] H. Limeback. Biomimetic hydroxyapatite and caries prevention: a systematic review and meta-analysis , 2021 .
[142] B. Petrović,et al. Clinical efficacy of casein phosphopeptide - amorphous calcium phosphate and casein phosphopeptide-amorphous calcium fluoride phosphate and their influence on the quality of life in patients with Sjögren’s syndrome , 2020, Srpski arhiv za celokupno lekarstvo.
[143] Kondyurova Evgenia,et al. Clinical Evaluation of a Dentifrice Containing Nhap for the Reduction of Dentin Hypersensitivity , 2019 .
[144] F. Sufi,et al. An Exploratory Randomised Study to Evaluate the Efficacy of an Experimental Occlusion-based Dentifrice in the Relief of Dentin Hypersensitivity. , 2019, Oral health & preventive dentistry.
[145] R. Awan,et al. Vital Tooth Bleaching and Management of Post Operative Sensitivity : A Clinical Trial Evaluating the Efficacy of Different Desensitizing Materials , 2018 .
[146] M. Polyakova,et al. [Efficiency of paste and suspension with nano-hydroxyapatite on the sensitivity of teeth with gingival recession]. , 2018, Stomatologiia.
[147] D. Bussaneli,et al. Use of Casein Amorphous Calcium Phosphate (CPP-ACP) on White-spot Lesions: Randomised Clinical Trial. , 2018, Oral health & preventive dentistry.
[148] P. Usai,et al. Reducing dentine hypersensitivity with nano-hydroxyapatite toothpaste: a double-blind randomized controlled trial , 2017, Clinical Oral Investigations.
[149] F. Rejula,et al. Comparative Evaluation of Effect of Nano-hydroxyapatite and 8% Arginine Containing Toothpastes in Managing Dentin Hypersensitivity: Double Blind Randomized Clinical Trial. , 2017, Acta medica.
[150] M. Amin,et al. Evaluation of the Efficacy of Commercially Available Nano- Hydroxyapatite Paste as a Desensitizing Agent , 2015 .
[151] Darshana Bennadi,et al. A Clinical Study to assess the Effectiveness of CPPACP (Casein Phosphopeptide-Amorphous calcium phosphate) versus Potassium-nitrate (KNO3) on cervical dentine hypersensitivity , 2015 .
[152] H. Kwon,et al. Desensitizing efficacy of nano-carbonate apatite dentifrice and Er,Cr:YSGG laser: a randomized clinical trial. , 2015, Photomedicine and laser surgery.
[153] C. Trairatvorakul,et al. SIMILAR 1-YEAR CARIES INCREMENT AFTER USE OF FLUORIDE OR NON-FLUORIDE TOOTHPASTE IN INFANTS AND TODDLERS , 2014 .
[154] B. Matis,et al. Short-term Efficacy of Agents Containing KNO3 or CPP-ACP in Treatment of Dentin Hypersensitivity. , 2014, The Chinese journal of dental research : the official journal of the Scientific Section of the Chinese Stomatological Association.
[155] N. Mumbai,et al. A Comparison of Clinical Efficacy of Dentifrices Containing Calcium Sodium Phosphosilicate, Nanoparticle Hydroxyapatite and a Dentifrice Containing Casein Phosphopeptide Amorphous Calcium Phosphate on Dentinal Hypersensitivity- A Comparative Triple Blind Randomized Study , 2014 .
[156] AmericAn DentAl. Fluoride toothpaste use for young children. , 2014, Journal of the American Dental Association.
[157] D. Kandaswamy,et al. Remineralisation of occlusal white spot lesion with a combination of 10% CPP-ACP and 0.2% sodium fluoride evaluated using Diagnodent: a pilot study. , 2013, Oral health & preventive dentistry.
[158] H. Sönmez,et al. Clinical evaluation of desensitizing treatment for incisor teeth affected by molar-incisor hypomineralization. , 2013, The Journal of clinical pediatric dentistry.
[159] A. Barnett,et al. Randomized controlled trial: a randomized controlled clinical trial comparing a remineralizing paste with an antibacterial gel to prevent early childhood caries. , 2013, Pediatric dentistry.
[160] N. West,et al. Randomized in situ clinical study comparing the ability of two new desensitizing toothpaste technologies to occlude patent dentin tubules. , 2011, The Journal of clinical dentistry.
[161] B. Amaechi,et al. Remineralization of early caries by a nano-hydroxyapatite dentifrice. , 2011, The Journal of clinical dentistry.
[162] S. Thakur,et al. A randomized controlled clinical study evaluating the efficacy of two desensitizing dentifrices. , 2010, The Journal of clinical dentistry.
[163] Neeru M. Sharma,et al. A clinical study comparing oral formulations containing 7.5% calcium sodium phosphosilicate (NovaMin), 5% potassium nitrate, and 0.4% stannous fluoride for the management of dentin hypersensitivity. , 2010, The Journal of clinical dentistry.
[164] D. Greenspan,et al. A clinical study of the effect of calcium sodium phosphosilicate on dentin hypersensitivity--proof of principle. , 2010, The Journal of clinical dentistry.
[165] S. Twetman,et al. Effect of a dental cream containing amorphous cream phosphate complexes on white spot lesion regression assessed by laser fluorescence. , 2007, Oral health & preventive dentistry.
[166] M. Barone,et al. [Clinical trial of a 15% supermicronized hydroxyapatite gel for dentin hypersensitivity]. , 1991, Giornale italiano di endodonzia.