References
- Kauko K, Makinen KK. Sugar Alcohols, Caries Incidence, and Remineralization of Caries Lesions: A Literature Review. Int J Dent, 981072, 2010
- Makinen KK, Isotupa KP, Kivilompolo T, Makinen P-L, Murtomaa S, Petaja J, Toivanen J, Soderling E. The effect of poly-combinant saliva stimulants on S. mutans levels in plaque and saliva of patients with mental retardation. Spec Care Dent, Vol. 22, pp. 187-193, 2002 https://doi.org/10.1111/j.1754-4505.2002.tb00269.x
- Makinen KK, Isotupa KP, Kivilompolo T, Makinen P-L, Toivanen J, Soderling E. Comparision of erythritol and xylitol saliva stimulants in the control of dental plaque and mutans streptococci. Caries Res, Vol. 35, pp. 129-135, 2005
- Makinen KK, Soderling E, Hurttia H, Lehtonen OP, Luukkala E. Biochemical, microbiological, and clinical comparisions between two dentifrices that contain different mixtures of sugar alcohols. J Am Dent Assoc, Vol. 111, No. 7, pp. 45-751, 1985
- Clark JBK, Graham EF, Lewis BA, Smith F. D-Mannitol, sorbitol and glycerol in bovine serum. J Reprod Fertil, Vol. 13, pp. 189-197, 1967 https://doi.org/10.1530/jrf.0.0130189
- Cock P, Bechert C-L. Erythritol : Functionality in noncaloric functional beverages. Pure Appl chem, Vol. 74, pp. 1281-1289, 2002
- Kawanabe J, Hirasawa M, Takeuchi T, Oda T, Ikeda T. Noncariogenicity of erythritol as a substrate. Caries Res, Vol. 26, pp. 358-362. 1992 https://doi.org/10.1159/000261468
- Y.H .No, K.U. Lee, K.Y. Jang. Inhibittory effects of erythritol on the growth and adsorption to saliva -coated HA beads of some oral bacteria. Korean academy of oral health, Vol. 24, pp. 69-83, 2000
- Dodds MJ, Hiseh SC, Johnson DA. The effect of increased mastication by d aily gum-chewing on salivary gland output and dental acidogenicity. J Dent Res, Vol. 70, pp. 1474-1478, 1991 https://doi.org/10.1177/00220345910700120101
- Hanada N. Current understanding of the cause of dental caries. Jpn J Infect Dis, Vol. 53, pp. 1-5, 2000
- Gibbons RJ, Fitzgerald RJ. Dectran-induced agglutination of streptococcus mutans and its potential role in the formation of microbial dental plaques. J Bacteriol, Vol. 98, pp. 341-346, 1969
- Rolla G, Scheie AA, Ciardi JE. Role of sucrose in plaque formation. Scand J Dent Res, Vol. 93, pp. 105-111, 1985
- Dibdin GH, Shellis RP. Physical and biochemical studies of streptococcus mutans sediments suggest new factors linking the cariogenicity of plaque with it's extracellular polysaccharide content. J Dent Res, Vol. 67, pp. 890-895, 1988 https://doi.org/10.1177/00220345880670060101
- Vacca-Smith AM, Bowen WH. Binding properties of streptococcal glucosyltransferase for hydroxyl apatite, saliva-coated hydroxylapatite and bacteri al surfaces. Arch Oral Biol, Vol. 43, pp. 103-110, 1988
- Ooshima T, Matsumura M, Hoshino T, Kawabata S, Sobue S, Fujiwara T. Conrtibutions of three glycosyltransferase to sucrose-dependent adherence of streptococcus mutans. J Dent Res, Vol. 80, pp. 1672-1677, 2001 https://doi.org/10.1177/00220345010800071401
- Fujiwara T, Sasada E, Mima N, Ooshima T. Caries prevalence and salivary mutans streptococci in 0-2-year-old children of Japen. Community Dent Oral Epidemiol, Vol. 19, pp. 151-154, 1991 https://doi.org/10.1111/j.1600-0528.1991.tb00131.x
- Kuramitsu HK. Virulence factors of mutans streptococci: role of molecular genetics. Crit Rec Oral Biol and Med, Vol. 4, pp. 159-176, 1993 https://doi.org/10.1177/10454411930040020201
- Makinen KK, Alanen P, Isokangas P, Isotupa K, Soderling E, Makinen PL. Thirty-nine-month xylitol chewing-gum program in initially 8-year-old school children : a feasibility study focusing on mutans streptococci and lactobacilli. Int Dent J, Vol. 58, pp. 41-50, 2008 https://doi.org/10.1111/j.1875-595X.2008.tb00175.x
- Thaweboon S, Thaweboon B, Soo-Ampon S. The effect of xylitol chewing gum on mutans streptococci in saliva and dental plaque. Southeast Asian J Trop Med Public Health, Vol. 35, pp. 1024-1027, 2004
- Soderling E, Makinen KK, Chen CY, Pape HR Jr, Loesche W, Makinen PL. Effect of sorbitol, xylitol and xylitol/sorbitol chewing gums on dental plaque. Caries Res, Vol. 23, pp. 378-384, 1989 https://doi.org/10.1159/000261212
- Haresaku S, Hanioka T, Tsutsui A, Yamamoto M, Chou T, Gunjishima Y. Long-term effect of xylitol gum use on mutans streptococci in adult. Caries Res, Vol. 41, pp. 198-203, 2007 https://doi.org/10.1159/000099318
- Birkhed D, Bar A. Sorbitol and dental caries. World Rev Nutr Diet, Vol. 65, pp. 1-37, 1991
- K.H Kim, B.C. Jeong, J.S. Oh, G.H. Yang. The effect of xylitol and carbohydrates on streptococcus. Korean academy of pediatric dentistry, Vol. 29, pp. 561-567, 2002
- K.H. Shin, G.H. Yang, N.G. Choi, S.M. Kim, J.S. Oh. The effect of xylitol on the lactose fermentation of streptococcus. Korean academy of pediatric dentistry, Vol. 31, pp. 202-211, 2004
- Eva S, Aija-Maaria H-L. Xylitol and erythritol decrease adherence of polysaccharide-producing oral Streptococci. Curr Microbiol, Vol. 60, pp. 25-29, 2010 https://doi.org/10.1007/s00284-009-9496-6
- Zucca M, Cenna S, Berzioli S, Gariglio M, Fagnoni V. Streptococcus mutans and dental caries : micro biological aspects. G Bacteriol Virol Immunol, Vol. 83, pp. 108-117, 1990
- Jean Claude MP. Anti-cariogenic activity of erythritol. US Patent, 2001