Publication Cover
Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 36, 2020 - Issue 10
211
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Establishment of microcosm biofilm models that reproduce a cariogenic diet intake

ORCID Icon, , ORCID Icon & ORCID Icon
Pages 1196-1209 | Received 10 Jun 2020, Accepted 03 Dec 2020, Published online: 21 Dec 2020

References

  • Aas JA, Paster BJ, Stokes LN, Olsen I, Dewhirst FE. 2005. Defining the normal bacterial flora of the oral cavity. J Clin Microbiol. 43:5721–5732. doi:10.1128/JCM.43.11.5721-5732.2005
  • Albuquerque YE, Danelon M, Salvador MJ, Koga-Ito CY, Botazzo Delbem AC, Ramirez-Rueda RL, Gontijo AV, Brighenti FL. 2018. Mouthwash containing Croton doctoris essential oil: in vitro study using a validated model of caries induction. Future Microbiol. 13:631–643. doi:10.2217/fmb-2017-0209
  • Azeredo J, Azevedo NF, Briandet R, Cerca N, Coenye T, Costa AR, Desvaux M, Di Bonaventura G, Hébraud M, Jaglic Z, et al. 2017. Critical review on biofilm methods. Crit Rev Microbiol. 43:313–351. doi:10.1080/1040841X.2016.1208146
  • Bollen CM, Lambrechts P, Quirynen M. 1997. Comparison of surface roughness of oral hard materials to the threshold surface roughness for bacterial plaque retention: a review of the literature. Dent Mater. 13:258–269. doi:10.1016/S0109-5641(97)80038-3
  • Bowen WH. 2013. The Stephan Curve revisited. Odontology. 101:2–8. doi:10.1007/s10266-012-0092-z
  • Bowen WH, Koo H. 2011. Biology of Streptococcus mutans-derived glucosyltransferases: role in extracellular matrix formation of cariogenic biofilms. Caries Res. 45:69–86. doi:10.1159/000324598
  • Bradshaw DJ, Marsh PD. 1998. Analysis of pH-driven disruption of oral microbial communities in vitro. Caries Res. 32:456–462. doi:10.1159/000016487
  • Brecx M, Rönström A, Theilade J, Attström R. 1981. Early formation of dental plaque on plastic films. 2. Electron microscopic observations. J Periodontal Res. 16:213–227. doi:10.1111/j.1600-0765.1981.tb00969.x
  • Brecx M, Theilade J, Attström R. 1980. Influence of optimal and excluded oral hygiene on early formation of dental plaque on plastic films. A quantitative and descriptive light and electron microscopic study. J Clin Periodontol. 7:361–373. doi:10.1111/j.1600-051x.1980.tb02009.x
  • Carlsson J. 1984. Regulation of sugar metabolism in relation to the feast-and-famine existence of plaque. In: Guggenheim B, editor. Cariology today. International Congress in Honour of Professor Dr. H.R. Mühlemann, Zürich, September 1983. Karger: Basel; p. 205–211. doi:10.1159/000408740
  • Castillo Pedraza MC, Novais TF, Faustoferri RC, Quivey RG, Terekhov A, Hamaker BR, Klein MI. 2017. Extracellular DNA and lipoteichoic acids interact with exopolysaccharides in the extracellular matrix of Streptococcus mutans biofilms. Biofouling. 33:722–740. doi:10.1080/08927014.2017.1361412
  • Chuenarrom C, Benjakul P, Daosodsai P. 2009. Effect of indentation load and time on knoop and vickers microhardness tests for enamel and dentin. Mat Res. 12:473–476. doi:10.1590/S1516-14392009000400016
  • Dawes C. 2003. What is the critical pH and why does a tooth dissolve in acid? J Can Dent Assoc. 69:722–724.
  • de Carvalho FG, Silva DS, Hebling J, Spolidorio LC, Spolidorio DM. 2006. Presence of mutans streptococci and Candida spp. in dental plaque/dentine of carious teeth and early childhood caries. Arch Oral Biol. 51:1024–1028. doi:10.1016/j.archoralbio.2006.06.001
  • de Oliveira Duque CC, Soares DG, Basso FG, Hebling J, de Souza Costa CA. 2017. Influence of enamel/dentin thickness on the toxic and esthetic effects of experimental in-office bleaching protocols. Clin Oral Investig. 21:2509–2520. doi:10.1007/s00784-017-2049-7
  • Dowd FJ. 1999. Saliva and dental caries. Dent Clin North Am. 43:579–597.
  • Exterkate RA, Crielaard W, Ten Cate JM. 2010. Different response to amine fluoride by Streptococcus mutans and polymicrobial biofilms in a novel high-throughput active attachment model. Caries Res. 44:372–379. doi:10.1159/000316541
  • Featherstone JD, ten Cate JM, Shariati M, Arends J. 1983. Comparison of artificial caries-like lesions by quantitative microradiography and microhardness profiles. Caries Res. 17:385–391. doi:10.1159/000260692
  • Firestone AR, Schmid R, Mühlemann HR. 1982. Cariogenic effects of cooked wheat starch alone or with sucrose and frequency-controlled feedings in rats. Arch Oral Biol. 27:759–763. doi:10.1016/0003-9969(82)90026-7
  • Flemming HC, Wingender J. 2010. The biofilm matrix. Nat Rev Microbiol. 8:623–633. doi:10.1038/nrmicro2415
  • Flemming HC, Wingender J, Szewzyk U, Steinberg P, Rice SA, Kjelleberg S. 2016. Biofilms: an emergent form of bacterial life. Nat Rev Microbiol. 14:563–575. doi:10.1038/nrmicro.2016.94
  • Florez Salamanca EJ, Klein MI. 2018. Extracellular matrix influence in Streptococcus mutans gene expression in a cariogenic biofilm. Mol Oral Microbiol. 33:181–193. doi:10.1111/omi.12212
  • Franko DL, Striegel-Moore RH, Thompson D, Affenito SG, Schreiber GB, Daniels SR, Crawford PB. 2008. The relationship between meal frequency and body mass index in black and white adolescent girls: more is less. Int J Obes (Lond). 32:23–29. doi:10.1038/sj.ijo.0803654
  • Gao XJ, Fan Y, Kent RL, Jr, Van Houte J, Margolis HC. 2001. Association of caries activity with the composition of dental plaque fluid. J Dent Res. 80:1834–1839. doi:10.1177/00220345010800091201
  • Grippo JO, Simring M, Coleman TA. 2012. Abfraction, abrasion, biocorrosion, and the enigma of noncarious cervical lesions: a 20-year perspective. J Esthet Restor Dent. 24:10–23. doi:10.1111/j.1708-8240.2011.00487.x
  • Hannig C, Hannig M. 2009. The oral cavity-a key system to understand substratum-dependent bioadhesion on solid surfaces in man. Clin Oral Investig. 13:123–139. doi:10.1007/s00784-008-0243-3
  • Hannig M, Joiner A. 2006. The structure, function and properties of the acquired pellicle. Monogr Oral Sci. 19:29–64. doi:10.1159/000090585
  • Human Microbiome Project Consortium. 2012. Structure, function and diversity of the healthy human microbiome. Nature. 486:207–214. doi:10.1038/nature11234
  • Humphrey SP, Williamson RT. 2001. A review of saliva: normal composition, flow, and function. J Prosthet Dent. 85:162–169. doi:10.1067/mpr.2001.113778
  • Hwang G, Klein MI, Koo H. 2014. Analysis of the mechanical stability and surface detachment of mature Streptococcus mutans biofilms by applying a range of external shear forces. Biofouling. 30:1079–1091. doi:10.1080/08927014.2014.969249
  • Jenkins DJ, Wolever TM, Vuksan V, Brighenti F, Cunnane SC, Rao AV, Jenkins AL, Buckley G, Patten R, Singer W. 1989. Nibbling versus gorging: metabolic advantages of increased meal frequency. N Engl J Med. 321:929–934. doi:10.1056/NEJM198910053211403
  • Jung DJ, Al-Ahmad A, Follo M, Spitzmüller B, Hoth-Hannig W, Hannig M, Hannig C. 2010. Visualization of initial bacterial colonization on dentine and enamel in situ. J Microbiol Methods. 81:166–174. doi:10.1016/j.mimet.2010.03.002
  • Kidd EA, Fejerskov O. 2004. What constitutes dental caries? Histopathology of carious enamel and dentin related to the action of cariogenic biofilms. J Dent Res. 83 Spec No C:C35–C38. doi:10.1177/154405910408301s07
  • Klein MI, Duarte S, Xiao J, Mitra S, Foster TH, Koo H. 2009. Structural and molecular basis of the role of starch and sucrose in Streptococcus mutans biofilm development. Appl Environ Microbiol. 75:837–841. doi:10.1128/AEM.01299-08
  • Kolenbrander PE, Andersen RN, Blehert DS, Egland PG, Foster JS, Palmer RJ Jr. 2002. Communication among oral bacteria. Microbiol Mol Biol Rev. 66:486–505. doi:10.1128/mmbr.66.3.486-505.2002
  • Koo H, Falsetta ML, Klein MI. 2013. The exopolysaccharide matrix: a virulence determinant of cariogenic biofilm. J Dent Res. 92:1065–1073. doi:10.1177/0022034513504218
  • Kuchma SL, O’Toole GA. 2000. Surface-induced and biofilm-induced changes in gene expression. Curr Opin Biotechnol. 11:429–433. doi:10.1016/S0958-1669(00)00123-3
  • Lemos JA, Abranches J, Koo H, Marquis RE, Burne RA. 2010. Protocols to study the physiology of oral biofilms. Methods Mol Biol. 666:87–102. doi:10.1007/978-1-60761-820-1_7
  • Mark Welch JL, Rossetti BJ, Rieken CW, Dewhirst FE, Borisy GG. 2016. Biogeography of a human oral microbiome at the micron scale. Proc Natl Acad Sci USA. 113:E791–E800. doi:10.1073/pnas.1522149113
  • Marsh PD. 1994. Microbial ecology of dental plaque and its significance in health and disease. Adv Dent Res. 8:263–271. doi:10.1177/08959374940080022001
  • Marsh PD. 2003. Are dental diseases examples of ecological catastrophes? Microbiology (Reading). 149:279–294. doi:10.1099/mic.0.26082-0
  • Maske TT, van de Sande FH, Arthur RA, Huysmans M, Cenci MS. 2017. In vitro biofilm models to study dental caries: a systematic review. Biofouling. 33:661–675. doi:10.1080/08927014.2017.1354248
  • McBain AJ. 2009. Chapter 4: in vitro biofilm models: an overview. Adv Appl Microbiol. 69:99–132. doi:10.1016/S0065-2164(09)69004-3
  • McBain AJ, Sissons C, Ledder RG, Sreenivasan PK, De Vizio W, Gilbert P. 2005. Development and characterization of a simple perfused oral microcosm. J Appl Microbiol. 98:624–634. doi:10.1111/j.1365-2672.2004.02483.x
  • Nyström T. 1993. Global systems approach to the physiology of the starved cell. In: Kjelleberg S, editor. Starvation in bacteria. Boston (MA): Springer; p. 129–146. doi:10.1007/978-1-4899-2439-1_6
  • Parisotto TM, Stipp R, Rodrigues LK, Mattos-Graner RO, Costa LS, Nobre-Dos-Santos M. 2015. Can insoluble polysaccharide concentration in dental plaque, sugar exposure and cariogenic microorganisms predict early childhood caries? A follow-up study. Arch Oral Biol. 60:1091–1097. doi:10.1016/j.archoralbio.2015.04.003
  • Paster BJ, Boches SK, Galvin JL, Ericson RE, Lau CN, Levanos VA, Sahasrabudhe A, Dewhirst FE. 2001. Bacterial diversity in human subgingival plaque. J Bacteriol. 183:3770–3783. doi:10.1128/JB.183.12.3770-3783.2001
  • Ribeiro CC, Tabchoury CP, Del Bel Cury AA, Tenuta LM, Rosalen PL, Cury JA. 2005. Effect of starch on the cariogenic potential of sucrose. Br J Nutr. 94:44–50. doi:10.1079/BJN20051452
  • Richardson CF, Johnsson M, Raj PA, Levine MJ, Nancollas GH. 1993. The influence of histatin-5 fragments on the mineralization of hydroxyapatite. Arch Oral Biol. 38:997–1002. doi:10.1016/0003-9969(93)90113-z
  • Rickard AH, Gilbert P, High NJ, Kolenbrander PE, Handley PS. 2003. Bacterial coaggregation: an integral process in the development of multi-species biofilms. Trends Microbiol. 11:94–100. doi:10.1016/s0966-842x(02)00034-3
  • Rosier BT, Marsh PD, Mira A. 2018. Resilience of the oral microbiota in health: mechanisms that prevent dysbiosis. J Dent Res. 97:371–380. doi:10.1177/0022034517742139
  • Rudney JD. 2000. Saliva and dental plaque. Adv Dent Res. 14:29–39. doi:10.1177/08959374000140010401
  • Selwitz RH, Ismail AI, Pitts NB. 2007. Dental caries. Lancet. 369:51–59. doi:10.1016/S0140-6736(07)60031-2
  • Sim CP, Dashper SG, Reynolds EC. 2016. Oral microbial biofilm models and their application to the testing of anticariogenic agents. J Dent. 50:1–11. doi:10.1016/j.jdent.2016.04.010
  • Simmer JP, Papagerakis P, Smith CE, Fisher DC, Rountrey AN, Zheng L, Hu JCC. 2010. Regulation of dental enamel shape and hardness. J Dent Res. 89:1024–1038. doi:10.1177/0022034510375829
  • Siqueira WL, Helmerhorst EJ, Zhang W, Salih E, Oppenheim FG. 2007. Acquired enamel pellicle and its potential role in oral diagnostics. Ann N Y Acad Sci. 1098:504–509. doi:10.1196/annals.1384.023
  • Takahashi N. 2015. Oral microbiome metabolism: from "Who are they?" to "What are they doing?" J Dent Res. 94:1628–1637. doi:10.1177/0022034515606045
  • Takahashi N, Nyvad B. 2011. The role of bacteria in the caries process: ecological perspectives. J Dent Res. 90:294–303. doi:10.1177/0022034510379602
  • Tang G, Yip HK, Cutress TW, Samaranayake LP. 2003. Artificial mouth model systems and their contribution to caries research: a review. J Dent. 31:161–171. doi:10.1016/S0300-5712(03)00009-5
  • Teruel JdD, Alcolea A, Hernández A, Ruiz AJO. 2015. Comparison of chemical composition of enamel and dentine in human, bovine, porcine and ovine teeth. Arch Oral Biol. 60:768–775. doi:10.1016/j.archoralbio.2015.01.014
  • Thylstrup A, Bruun C, Holmen L. 1994. In vivo caries models-mechanisms for caries initiation and arrestment. Adv Dent Res. 8:144–157. doi:10.1177/08959374940080020401
  • Valm AM, Mark Welch JL, Rieken CW, Hasegawa Y, Sogin ML, Oldenbourg R, Dewhirst FE, Borisy GG. 2011. Systems-level analysis of microbial community organization through combinatorial labeling and spectral imaging. Proc Natl Acad Sci U S A. 108:4152–4157. doi:10.1073/pnas.1101134108
  • Viana PS, Orlandi MO, Pavarina AC, Machado AL, Vergani CE. 2018. Chemical composition and morphology study of bovine enamel submitted to different sterilization methods. Clin Oral Invest. 22:733–744. doi:10.1007/s00784-017-2148-5

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.