- Sälzer S, Rosema M, Martin ECJ, Slot DE, Timmer C, Dörfer C, et al. The effectiveness of dentifrices without and with sodium lauryl sulfate on plaque, gingivitis and gingival abrasion-a randomized clinical trial. lin Oral Investig. 2016; 20: 443-450.
- Qiang D, Gunn JA, Schultz L, Li ZJ. Evaluation of the impact of sodium lauryl sulfate source variability on solid oral dosage form development. Drug Dev Ind Pharm. 2010; 36: 1486-1496.
- Guo Y, Wang C, Dun J, Du L, Hawley M, Sun CC. Mechanism for the Reduced Dissolution of Ritonavir Tablets by Sodium Lauryl Sulfate. J Pharm Sci. 2019; 108: 516-524.
- Freitas R, Silvestro S, Coppola F, Costa S, Meucci V, Battaglia F, et al. Toxic impacts induced by Sodium lauryl sulfate in Mytilus galloprovincialis. Comp Biochem Physiol A Mol Integr Physiol. 2020; 242: 110656.
- Shim Y, Choi JH, Ahn HJ, Kwon JS. Effect of sodium lauryl sulfate on recurrent aphthous stomatitis: a randomized controlled clinical trial. Oral Diseases. 2012; 18: 655-660.
- Chen Y, Wang S, Wang S, Liu C, Su C, Hageman M, et al. Sodium Lauryl Sulfate Competitively Interacts with HPMC-AS and Consequently Reduces Oral Bioavailability of Posaconazole/HPMC-AS Amorphous Solid Dispersion. Mol Pharm. 2016; 13: 2787-2795.
- Rubright WC, Walker JA, Karlsson UL, Diehl DL. Oral slough caused by dentifrice detergents and aggravated by drugs with antisialic activity. J Am Dent Assoc (1939). 1978; 97: 215-220.
- Ahlfors EE, Lyberg T. Contact sensitivity reactions in the oral mucosa. Acta Odontol Scand. 2001; 59: 248-254.
- Rantanen I, Tenovuo J, Pienihakkinen K, Soderling E. Effects of a betaine-containing toothpaste on subjective symptoms of dry mouth: a randomized clinical trial. J Contemp Dent Pract. 2003; 4: 11-23.
- Macdonald JB, Tobin CA, Hurley MY. Oral leukoedema with mucosal desquamation caused by toothpaste containing sodium lauryl sulfate. Cutis. 2016; 97: E4-E5.
- Jensena JL, Barkvoll P. Clinical implications of the dry mouth: oral mucosal diseases. Ann N Y Acad Sci. 1998; 842: 156-162.
- Chen L, Arbieva ZH, Guo S, Marucha PT, Mustoe TA, DiPietro LA. Positional differences in the wound transcriptome of skin and oral mucosa. BMC Genomics. 2010; 11: 471.
- Politis C, Schoenaers J, Jacobs R, Agbaje JO. Wound healing problems in the mouth. Front Physiol. 2016; 7: 507.
- Chuang AH, Bordlemay J, Goodin JL, McPherson JC. Effect of Sodium Lauryl Sulfate (SLS) on Primary Human Gingival Fibroblasts in an In Vitro Wound Healing Model. Mil Med. 2019; 184(Suppl 1): 97-101.
- Griessmann K, Breitkreutz J, Schubert-Zsilavecz M, Abdel-Tawab M. Dosing accuracy of measuring devices provided with antibiotic oral suspensions. Paediatric Perinatal Drug Therapy. 2007; 8: 61-70.
- Pein M, Preis M, Eckert C, Kiene FE. Taste-masking assessment of solid oral dosage forms--a critical review. Int J Pharm. 2014; 465: 239-254.
- Immohr LI, Hedfeld C, Lang A, Pein-Hackelbusch M. Suitability of E-tongue Sensors to Assess Taste-Masking of Pediatric Liquids by Different Beverages Considering Their Physico-chemical Properties. AAPS Pharm Sci Tech. 2017; 18: 330-340.
- Waszkiel D, Zalewska A, Knaś M, Choromańska M, Klimiuk A. Activity of lysosomal exoglycosidases in saliva of patients with HIV infection. Adv Med Sci. 2006; 51 Suppl 1: 230-232.
- Vogel GL, Schumacher GE, Chow LC, Tenuta LM. Oral fluoride levels 1 h after use of a sodium fluoride rinse: effect of sodium lauryl sulfate. Caries Res. 2015; 49: 291-296.
- Koo H, Falsetta ML, Klein MI. The exopolysaccharide matrix: a virulence determinant of cariogenic biofilm. J Dent Res. 2013; 92: 1065-1073.
- Marsh PD, Moter A, Devine DA. Dental plaque biofilms: communities, conflict and control. Periodontol 2000. 2011; 55: 16-35.
- Abdul Razak F, Baharuddin BA, Akbar EFM, Norizan AH, Ibrahim NF, Musa MY. Alternative sweeteners influence the biomass of oral biofilm. Arch Oral Biol. 2017; 80: 180-184.
- Weiger R, Netuschil L, von Ohle C, Brecx M. Microbial vitality of supragingival dental plaque during initial stages of experimental gingivitis in humans. J Periodontal Res. 1995; 30: 204-209.
- Bowden GH, Hamilton IR. Survival of oral bacteria. Crit Rev Oral Biol Med. 1998; 9: 54-85.
- Steinberg D, Bachrach G, Gedalia I, Abu-Ata S, Rozen R. Effects of various antiplaque agents on fructosyltransferase activity in solution and immobilized onto hydroxylapatite. Eur J Oral Sci. 2002; 110: 374-379.
- Jeong HY, Kim YS, Jeong MA. Variations of Oral Cavity Environment according to Sodium Lauryl Sulfate Con-centration of Toothpaste. J Korean Content Assoc. 2010; 10: 240-248.
- Sälzer S, Rosema NA, Martin EC, Slot DE, Timmer CJ, Dörfer CE, et al. The effectiveness of dentifrices without and with sodium lauryl sulfate on plaque, gingivitis and gingival abrasion--a randomized clinical trial. Clin Oral Investig. 2016; 20: 443-450.
- Featherstone JD. The science and practice of caries prevention. J Am Dent Assoc. 2000; 131: 887-899.
- Alli BY, Erinoso OA, Olawuyi AB. Effect of sodium lauryl sulfate on recurrent aphthous stomatitis: A systematic review. J Oral Pathol Med. 2019; 48: 358-364.
- Altenburg A, El-Haj N, Micheli C, Puttkammer M, Abdel-Naser MB, Zouboulis CC. The treatment of chronic recurrent oral aphthous ulcers. Dtsch Arztebl Int. 2014; 111: 665-673.
- Phillips M, Cataneo RN, Greenberg J, Munawar M, Nachnani S, Samtani S. Pilot study of a breath test for volatile organic compounds associated with oral malodor: evidence for the role of oxidative stress. Oral Dis. 2005; 11 Suppl 1: 32-34.
- Aydin M, Harvey-Woodworth CN. Halitosis: a new definition and classification. Br Dent J. 2014; 217: E1.
- Takaesu Y, Suzuki N, Naito M, Watanabe T, Shimazu A, Yatabe N, et al. Novel oral biomarkers predicting oral malodor. Oral Surg Oral Med Oral Pathol Oral Radiol. 2020; 130: 667-674.
- Jeong HY, Jeong SH, Jeong MA. A Study on Variations of Halitosis According to Sodium Lauryl Sulfate Content of Toothpaste. The Korea Academia-Industrial cooperation Society (kais). 2010; 11: 2935-2941.
- Peruzzo DC, Salvador SL, Sallum AW, da*Nogueira-Filho GR. Effects of sodium lauryl sulphate (SLS), present in dentifrice, on volatile sulphur compound (VSC) formation in morning bad breath. J Int Acad Periodontol. 2008; 10: 130-136.
- Yu ZF, Kong LD, Chen Y. Antidepressant activity of aqueous extracts of Curcuma longa in mice. J Ethnopharmacol. 2002; 83: 161-165.
- Kerns EH, Di L, Carter GT. In vitro solubility assays in drug discovery. Current Drug Metabolism. 2008; 9: 879-885.
- Dangi JS, Vyas SP, Dixit VK. Effect of various lipid-bilesalt mixed micelles on the intestinal absorption of amphotericin-B in rat. Drug Dev Ind Pharm. 1998; 24: 631-635.
- Isoglu IA, Ozsoy Y, Isoglu SD. Advances in Micelle-based Drug Delivery: Cross-linked Systems. Curr Top Med Chem. 2017; 17: 1469-1489.
- Bahr MN, Modi D, Patel S, Campbell G, Stockdale G. Understanding the Role of Sodium Lauryl Sulfate on the Biorelevant Solubility of a Combination of Poorly Water-Soluble Drugs Using High Throughput Experimentation and Mechanistic Absorption Modeling. J Pharm Pharm Sci. 2019; 22: 221-246.
- Alizadeh M, Shayanfar A, Jouyban A. Solubilization of drugs using sodium lauryl sulfate: Experimental data and modeling. Journal of Molecular Liquids. 2018; 268: 410-414.
- Shelar DB, Pawar SK, Vavia PR. Fabrication of isradipine nanosuspension by anti-solvent microprecipitation-high-pressure homogenization method for enhancing dissolution rate and oral bioavailability. Drug Deliv Transl Res. 2013; 3: 384-391.
- Shidhaye SS, Thakkar PV, Dand NM, Kadam VJ. Buccal drug delivery of pravastatin sodium. AAPS Pharm Sci Tech. 2010; 11: 416-424.
- Ates M, Kaynak MS, Sahin S. Effect of permeability enhancers on paracellular permeability of acyclovir. J Pharm Pharmacol. 2016; 68: 781-790.
- Kasashima Y, Yoshihara K, Yasuji T, Sako K, Uchida S, Namiki N. Oral Sustained Release of a Hydrophilic Drug Using the Lauryl Sulfate Salt/Complex. Chem Pharm Bull (Tokyo). 2016; 64: 1304-1309.
- Kasashima Y, Uchida S, Yoshihara K, Yasuji T, Sako K, Namiki N. Oral sustained-release suspension based on a lauryl sulfate salt/complex. Int J Pharm. 2016; 515: 677-683.
- Hernández-Monjaraz B, Santiago-Osorio E, Monroy-García A, Ledesma-Martínez E, Mendoza-Núñez VM. Mesenchymal stem cells of dental origin for inducing tissue regeneration in periodontitis: A mini-review. Int J Mol Sci. 2018; 19: 944.
- Siegel IA, Gordon HP. Surfactant-induced alterations of permeability of rabbit oral mucosa in vitro. Exp Mol Pathol. 1986; 44: 132-137.
- Okte E, Bal B. Topography of periodontally involved human root surfaces after different chemical treatment modalities: an in vitro scanning electron microscopic study. J Oral Sci. 2000; 42: 139-146.
- Daley TD, Gupta AK. Exfoliative cheilitis. J Oral Pathol Med. 1995; 24: 177-179.
- Neville BW, Damm DD, Allen CM, Chi AC. Oral and maxillofacial pathology. 4th ed. WB Saunders: Elsevier Health Sciences; 2015. p. 604-605
- Thongprasom K. Glycerin borax treatment of exfoliative cheilitis induced by sodium lauryl sulfate: a case report. Acta Stomatologica Croatica. 2016; 50: 158-161.
- Agar N, Freeman S. Cheilitis caused by contact allergy to cocamidopropyl betaine in ‘2-in-1 toothpaste and mouthwash’. Australas J Dermatol. 2005; 46: 15-17.
- Holmes G, Freeman S. Cheilitis caused by contact urticaria to mint flavoured toothpaste. Australas J Dermatol. 2001; 42: 43-45.
- Neppelberg E, Costea DE, Vintermyr OK, Johannessen AC. Dual effects of sodium lauryl sulphate on human oral epithelial structure. Exp Dermatol. 2007; 16: 574-579.
- Brown RS, Smith L, Glascoe AL. Inflammatory reaction of the anterior dorsal tongue presumably to sodium lauryl sulfate within toothpastes: a triple case report. Oral Surg Oral Med Oral Patho Oral Radio. 2018; 125: e17-e21.
- Ersoy M, Tanalp J, Ozel E, Cengizlier R, Soyman M. The allergy of toothpaste: a case report. Allergol Immunopathol (Madr). 2008; 36: 368-370.
- Rantanen I, Jutila K, Nicander I, Tenovuo J, Söderling E. The effects of two sodium lauryl sulphate-containing toothpastes with and without betaine on human oral mucosa in vivo. Swedish Dent J. 2003; 27: 31.
- Dewi TS. Lesi Erosif Mukosa Oral Sebagai Akibat Penggunaan Pasta Gigi Mengandung Sodium Lauryl Sulfate. J Material Kedokteran Gigi. 2013; 2: 75-82.
- Mustafa M, Bakhiet M, Wondimu B, Modéer T. Effect of triclosan on interferon‐γ production and major histocompatibility complex class II expression in human gingival fibroblasts. J Clin Periodontol. 2000; 27: 733-737.
- Bondi CA, Marks JL, Wroblewski LB, Raatikainen HS, Lenox SR, Gebhardt KE. Human and Environmental Toxicity of Sodium Lauryl Sulfate (SLS): Evidence for Safe Use in Household Cleaning Products. Environ Health Insights. 2015; 9: 27-32.
- Ganss C, Lussi A. Diagnosis of erosive tooth wear. Monogr Oral Sci. 2006; 20: 32-43.
- Buzalaf MA, Hannas AR, Kato MT. Saliva and dental erosion. J Appl Oral Sci. 2012; 20: 493-502.
- Hannig C, Hamkens A, Becker K, Attin R, Attin T. Erosive effects of different acids on bovine enamel: release of calcium and phosphate in vitro. Arch Oral Biol. 2005; 50: 541-552.
- Vukosavljevic D, Hutter JL, Helmerhorst EJ, Xiao Y, Custodio W, Zaidan FC, et al. Nanoscale adhesion forces between enamel pellicle proteins and hydroxyapatite. J Dent Res. 2014; 93: 514-519.
- Barkvoll P, Embery G, Rølla G. Studies on the interaction between sodium lauryl sulfate and hydroxyapatite using Fourier transformed infrared spectroscopy. J Biol Buccale. 1988; 16: 75-79.
- Magalhães AC, Levy FM, Rios D, Buzalaf MA. Effect of a single application of TiF(4) and NaF varnishes and solutions on dentin erosion in vitro. J Dent. 2010; 38: 153-157.
- Magalhães AC, Levy FM, Rizzante FA, Rios D, Buzalaf MA. Effect of NaF and TiF(4) varnish and solution on bovine dentin erosion plus abrasion in vitro. Acta Odontol Scand. 2012; 70: 160-164.
- Zanatta RF, Ávila D, Miyamoto KM, Torres CRG, Borges AB. Influence of Surfactants and Fluoride against Enamel Erosion. Caries Res. 2019; 53: 1-9.
- Binney A, Addy M, Newcombe RG. The plaque removal effects of single rinsings and brushings. J Periodontol. 1993; 64: 181-185.
- Cvikl B, Lussi A, Gruber R. The in vitro impact of tooth paste extracts on cell viability. Eur J Oral Sci. 2015; 123: 179-185.
- Healy C, Cruchley A, Thornhill M, Williams D. The effect of sodium lauryl sulphate, triclosan and zinc on the permeability of normal oral mucosa. Oral Diseases. 2000; 6: 118-123.
- Herlofson BB, Barkvoll P. Oral mucosal desquamation of pre- and post-menopausal women. A comparison of response to sodium lauryl sulphate in toothpastes. J Clin Periodontol. 1996; 23: 567-571.
- Tabatabaei MH, Mahounak FS, Asgari N, Moradi Z. Cytotoxicity of the Ingredients of Commonly Used Toothpastes and Mouthwashes on Human Gingival Fibroblasts. Front Dent. 2019; 16: 450-457.
- Piret J, Laforest G, Bussières M, Bergeron MG. Subchronic (26- and 52-week) toxicity and irritation studies of a novel microbicidal gel formulation containing sodium lauryl sulfate in animal models. J Appl Toxicol. 2008; 28: 164-174.
- Mortazavi H, Baharvand M, Movahhedian A, Mohammadi M, Khodadoustan A. Xerostomia due to systemic disease: a review of 20 conditions and mechanisms. Ann Med Health Sci Res. 2014; 4: 503-510.
- Tanasiewicz M, Hildebrandt T, Obersztyn I. Xerostomia of Various Etiologies: A Review of the Literature. Adv Clin Exp Med. 2016; 25: 199-206.
- Van*der Reijden WA, Vissink A, Veerman EC, Amerongen AV. Treatment of oral dryness related complaints (xerostomia) in Sjögren's syndrome. Ann Rheum Dis. 1999; 58: 465-474.
- Söderling E, Le*Bell A, Kirstilä V, Tenovuo J. Betaine-containing toothpaste relieves subjective symptoms of dry mouth. Acta Odontol Scand. 1998; 56: 65-69.
- Van*Strydonck DA, Timmerman MF, Van*der*Velden U, Van*der*Weijden GA. Chlorhexidine mouthrinse in combination with an SLS-containing dentifrice and a dentifrice slurry. J Clin Periodontol. 2006; 33: 340-344.
- Elkerbout TA, Slot DE, Bakker EW, Van*der*Weijden GA. Chlorhexidine mouthwash and sodium lauryl sulphate dentifrice: do they mix effectively or interfere? Int J Dent Hyg. 2016; 14: 42-52.
- Barkvoll P, Rølla G, Svendsen K. Interaction between chlorhexidine digluconate and sodium lauryl sulfate in vivo. J Clin Periodontol. 1989; 16: 593-595.
- Kolahi J, Soolari A. Rinsing with chlorhexidine gluconate solution after brushing and flossing teeth: a systematic review of effectiveness. Quintessence Int. 2006; 37: 605-612.
- Ranjani GIS, Ramamurthy K. Analysis of the foam generated using surfactant sodium lauryl sulfate. Int J Concre Structures Materials. 2010; 4: 55-62.
- Ghosh S, Banerjee A. A multitechnique approach in protein/surfactant interaction study: physicochemical aspects of sodium dodecyl sulfate in the presence of trypsin in aqueous medium. Biomacromolecules. 2002; 3: 9-16.
- Esimone CO, Adikwu MU, Nwafor SV, Okolo CO. Potential use of tea extract as a complementary mouthwash: comparative evaluation of two commercial samples. J Alter Complemen Med. 2001; 7: 523-527.
- Moore C, Addy M, Moran J. Toothpaste detergents: a potential source of oral soft tissue damage? Int J Dent Hyg. 2008; 6: 193-198.
- Aykul S, Martinez-Hackert E. Determination of half-maximal inhibitory concentration using biosensor-based protein interaction analysis. Anal Biochem. 2016; 508: 97-103.
- Matsuda S, Hisama M, Shibayama H, Itou N, Iwaki M. In vitro eye irritancy test of lauryl derivatives and polyoxyethylene alkyl derivatives with the reconstructed rabbit corneal epithelium model. J Oleo Sci. 2009; 58: 437-442.
- Roll EB, Dahl JE, Runningen G, Morisbak E. In vitro cell death induced by irradiation and chemicals relevant for dental applications; dose-response and potentiation effects. Eur J Oral Sci. 2004; 112: 273-279.
- Wei SY, Wu JM, Kuo YY, Chen HL, Yip BS, Tzeng SR, et al. Solution structure of a novel tryptophan-rich peptide with bidirectional antimicrobial activity. J Bacteriol. 2006; 188: 328-334.
- Kowitz G, Lucatorto F, Bennett W. Effects of dentifrices on soft tissues of the oral cavity. J Oral Med. 1973; 28: 105-109.
- Fakhry‐Smith S, Din C, Nathoo S, Gaffar A. Clearance of sodium lauryl sulphate from the oral cavity. J Clin Periodontol. 1997; 24: 313-317.
- Müller RH, Shegokar R, Gohla S, Keck CM. Nanocrystals: Production, Cellular Drug Delivery, Current and Future Products, in Intracellular Delliver. 1th ed. Springer: Netherlands, Dordrecht; 2011. p. 411-432.
- Bednarkiewicz A, Rodrigues RM, Whelan MP. Non-invasive monitoring of cytotoxicity based on kinetic changes of cellular autofluorescence. Toxicol In Vitro. 2011; 25: 2088-2094.
|