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Research Articles

Effect of pH-sensitive nanoparticles on inhibiting oral biofilms

, , , , , , , , & ORCID Icon show all
Pages 561-573 | Received 17 Nov 2021, Accepted 25 Jan 2022, Published online: 14 Feb 2022

References

  • Azzimonti B, Cochis A, Beyrouthy ME, et al. (2015). Essential oil from berries of Lebanese Juniperus excelsa M. Bieb displays similar antibacterial activity to chlorhexidine but higher cytocompatibility with human oral primary cells. Molecules 20:9344–57.
  • Babich H, Wurzburger BJ, Rubin YL, et al. (1995). An in vitro study on the cytotoxicity of chlorhexidine digluconate to human gingival cells. Cell Biol Toxicol 11:79–88.
  • Balamurali V, Pramodkuma TM, Srujana N, et al. (2010). pH sensitive drug delivery systems: a review. Am J Drug Discov Dev 1:24–48.
  • Baliga S, Muglikar S, Kale R. (2013). Salivary pH: a diagnostic biomarker. J Indian Soc Periodontol 17:461–5.
  • Bowen WH. (2013). The Stephan Curve revisited. Odontology 101:2–8.
  • Brahim S, Narinesingh D, Guiseppi-Elie A. (2003). Synthesis and hydration properties of pH-sensitive p(HEMA)-based hydrogels containing 3-(trimethoxysilyl)propyl methacrylate. Biomacromolecules 4:497–503.
  • Burne RA. (2018). Getting to know "The Known Unknowns": heterogeneity in the oral microbiome. Adv Dent Res 29:66–70.
  • Cheng L, Exterkate RA, Zhou X, et al. (2011). Effect of Galla chinensis on growth and metabolism of microcosm biofilms. Caries Res 45:87–92.
  • Cheng L, Weir MD, Zhang K, et al. (2012). Antibacterial nanocomposite with calcium phosphate and quaternary ammonium. J Dent Res 91:460–6.
  • Davis IJ, Richards H, Mullany P. (2005). Isolation of silver- and antibiotic-resistant Enterobacter cloacae from teeth. Oral Microbiol Immunol 20:191–4.
  • Du Q, Ren B, He J, et al. (2021). Candida albicans promotes tooth decay by inducing oral microbial dysbiosis. ISME J 15:894–908.
  • Duran-Pinedo AE, Frias-Lopez J. (2015). Beyond microbial community composition: functional activities of the oral microbiome in health and disease. Microbes Infect 17:505–16.
  • Featherstone JD. (2006). Delivery challenges for fluoride, chlorhexidine and xylitol. BMC Oral Health 6:S8.
  • Flötra L, Gjermo P, Rölla G, et al. (1971). Side effects of chlorhexidine mouth washes. Scand J Dent Res 79:119–25.
  • Gadallah L, Hamdy M, El Bardissy A, et al. (2018). Pulpotomy versus pulpectomy in the treatment of vital pulp exposure in primary incisors. A systematic review and meta-analysis. F1000Res 7:1560.
  • Goldberg S, Cardash H, Browning H, 3rd, et al. (1997). Isolation of Enterobacteriaceae from the mouth and potential association with malodor. J Dent Res 76:1770–5.
  • González-Henríquez CM, Galleguillos-Guzmán SC, Sarabia-Vallejos MA, et al. (2019). Microwrinkled pH-sensitive hydrogel films and their role on the cell adhesion/proliferation. Mater Sci Eng C Mater Biol Appl 103:109872.
  • Gulsen D, Chauhan A. (2005). Dispersion of microemulsion drops in HEMA hydrogel: a potential ophthalmic drug delivery vehicle. Int J Pharm 292:95–117.
  • Gumustas SA, Yilmaz I, Isyar M, et al. (2016). Assessing the negative impact of phenyl alkanoic acid derivative, a frequently prescribed drug for the suppression of pain and inflammation, on the differentiation and proliferation of chondrocytes. J Orthop Surg Res 11:70.
  • Guo YJ, Zhang B, Feng XS, et al. (2016). Human cathelicidin LL-37 enhance the antibiofilm effect of EGCG on Streptococcus mutans. BMC Oral Health 16:101.
  • Hajishengallis E, Parsaei Y, Klein MI, et al. (2017). Advances in the microbial etiology and pathogenesis of early childhood caries. Mol Oral Microbiol 32:24–34.
  • Hamada S, Slade HD. (1980). Biology, immunology, and cariogenicity of Streptococcus mutans. Microbiol Rev 44:331–84.
  • Horev B, Klein MI, Hwang G, et al. (2015). pH-activated nanoparticles for controlled topical delivery of farnesol to disrupt oral biofilm virulence. ACS Nano 9:2390–404.
  • Huang X, Zhou W, Zhou X, et al. (2019). Effect of novel micro-arc oxidation implant material on preventing peri-implantitis. Coatings 9.
  • Jones CG. (1997). Chlorhexidine: is it still the gold standard? Periodontol 2000 15:55–62.
  • Kabani FA, Stockbridge EL, Berly Varghese B, et al. (2020). Acculturation and the oral health of a nationally representative sample of Hispanic children in the United States: an analysis of 2011–2012 National Survey of Children's Health data. BMC Public Health 20:111.
  • Khara P, Mohapatra SS, Biswas I. (2018). Role of CovR phosphorylation in gene transcription in Streptococcus mutans. Microbiology 164:704–15.
  • Kim MJ, You YO, Kang JY, et al. (2020). Weissella cibaria CMU exerts an anti‐inflammatory effect by inhibiting Aggregatibacter actinomycetemcomitans‐induced NF‐κB activation in macrophages. Mol Med Rep 22:4143–50.
  • Kumar Tiwari S, Guo X, Huang Y, et al. (2019). The inhibitory effect of quaternary ammonium salt on bacteria in root canal. Sci Rep 9:12463.
  • Kuramitsu HK. (1993). Virulence factors of mutans streptococci: role of molecular genetics. Crit Rev Oral Biol Med 4:159–76.
  • Lemos JA, Palmer SR, Zeng L, et al. (2019). The biology of Streptococcus mutans. Microbiol Spectr 7.
  • Li F, Weir MD, Fouad AF, et al. (2013). Time-kill behaviour against eight bacterial species and cytotoxicity of antibacterial monomers. J Dent 41:881–91.
  • Li X, Zheng B-Y, Ke M-R, et al. (2017). A tumor-pH-responsive supramolecular photosensitizer for activatable photodynamic therapy with minimal in vivo skin phototoxicity. Theranostics 7:2746–56.
  • Liang H, Zhou B, He Y, et al. (2017). Tailoring stimuli-responsive delivery system driven by metal-ligand coordination bonding. Int J Nanomedicine 12:3315–30.
  • Liang J, Liu F, Zou J, et al. (2020). pH-responsive antibacterial resin adhesives for secondary caries inhibition. J Dent Res 99:1368–76.
  • Liang J, Peng X, Zhou X, et al. (2020). Emerging applications of drug delivery systems in oral infectious diseases prevention and treatment. Molecules 25:516.
  • Liu S, Chen M, Wang Y, et al. (2020). Effect of Veillonella parvula on the physiological activity of Streptococcus mutans. Arch Oral Biol 109:104578.
  • Lu MM, Ge Y, Qiu J, et al. (2018). Redox/pH dual-controlled release of chlorhexidine and silver ions from biodegradable mesoporous silica nanoparticles against oral biofilms. Int J Nanomedicine 13:7697–709.
  • Mai HN, Kim DY, Hyun DC, et al. (2019). A new antibacterial agent-releasing polydimethylsiloxane coating for polymethyl methacrylate dental restorations. J Clin Med 8:1831.
  • Makowski M, Silva ÍC, Pais Do Amaral C, et al. (2019). Advances in lipid and metal nanoparticles for antimicrobial peptide delivery. Pharmaceutics 11:588.
  • Marsh PD. (1994). Microbial ecology of dental plaque and its significance in health and disease. Adv Dent Res 8:263–71.
  • Mitwalli H, Balhaddad AA, Alsahafi R, et al. (2020). Novel CaF(2) nanocomposites with antibacterial function and fluoride and calcium ion release to inhibit oral biofilm and protect teeth. J Funct Biomater 11:56.
  • Müller HD, Eick S, Moritz A, et al. (2017). Cytotoxicity and antimicrobial activity of oral rinses in vitro. Biomed Res Int 2017:4019723.
  • Naha PC, Liu Y, Hwang G, et al. (2019). Dextran-coated iron oxide nanoparticles as biomimetic catalysts for localized and pH-activated biofilm disruption. ACS Nano 13:4960–71.
  • Pucher JJ, Daniel JC. (1992). The effects of chlorhexidine digluconate on human fibroblasts in vitro. J Periodontol 63:526–32.
  • Reyes E, Martin J, Moncada G, et al. (2014). Caries-free subjects have high levels of urease and arginine deiminase activity. J Appl Oral Sci 22:235–40.
  • Roointan A, Farzanfar J, Mohammadi-Samani S, et al. (2018). Smart pH responsive drug delivery system based on poly(HEMA-co-DMAEMA) nanohydrogel. Int J Pharm 552:301–11.
  • Rosier BT, Marsh PD, Mira A. (2018). Resilience of the oral microbiota in health: mechanisms that prevent dysbiosis. J Dent Res 97:371–80.
  • Scharnow AM, Solinski AE, Wuest WM. (2019). Targeting S. mutans biofilms: a perspective on preventing dental caries. Medchemcomm 10:1057–67.
  • Simon-Soro A, Mira A. (2015). Solving the etiology of dental caries. Trends Microbiol 23:76–82.
  • Simon-Soro A, Sherriff A, Sadique S, et al. (2018). Combined analysis of the salivary microbiome and host defence peptides predicts dental disease. Sci Rep 8:1484–4.
  • Sizova MV, Chilaka A, Earl AM, et al. (2015). High-quality draft genome sequences of five anaerobic oral bacteria and description of Peptoanaerobacter stomatis gen. nov., sp. nov., a new member of the family Peptostreptococcaceae. Stand Genomic Sci 10:37.
  • Takahashi N, Nyvad B. (2011). The role of bacteria in the caries process: ecological perspectives. J Dent Res 90:294–303.
  • Tefiku U, Popovska M, Cana A, et al. (2020). Determination of the role of Fusobacterium nucleatum in the pathogenesis in and out the mouth. Pril (Makedon Akad Nauk Umet Odd Med Nauki) 41:87–99.
  • Van De Wetering P, Moret EE, Schuurmans-Nieuwenbroek NM, et al. (1999). Structure–activity relationships of water-soluble cationic methacrylate/methacrylamide polymers for nonviral gene delivery. Bioconjug Chem 10:589–97.
  • Velliyagounder K, Ganeshnarayan K, Velusamy SK, et al. (2012). In vitro efficacy of diallyl sulfides against the periodontopathogen Aggregatibacter actinomycetemcomitans. Antimicrob Agents Chemother 56:2397–407.
  • Wang A, Wang Q, Kudinha T, et al. (2016). Effects of fluoroquinolones and azithromycin on biofilm formation of Stenotrophomonas maltophilia. Sci Rep 6:29701.
  • Wang AH, Li M, Li CQ, et al. (2016). Human colorectal mucosal microbiota correlates with its host niche physiology revealed by endomicroscopy. Sci Rep 6:21952.
  • Wang H, Ren D. (2017). Controlling Streptococcus mutans and Staphylococcus aureus biofilms with direct current and chlorhexidine. AMB Express 7:204.
  • Wang S, Zhang J, Ma J, et al. (2021). Applying Pb(2+) to probe the dissolution of carbonated hydroxylapatite by Enterobacter sp.: a new insight into the bioerosion of tooth mineral. J Biomed Mater Res 109:1230–8.
  • Wang S, Zhang K, Zhou X, et al. (2014). Antibacterial effect of dental adhesive containing dimethylaminododecyl methacrylate on the development of Streptococcus mutans biofilm. Int J Mol Sci 15:12791–806.
  • Wang SP, Ge Y, Zhou XD, et al. (2016). Effect of anti-biofilm glass-ionomer cement on Streptococcus mutans biofilms. Int J Oral Sci 8:76–83.
  • Wang Y, Chen C, Luo Y, et al. (2020). Experimental study of tumor therapy mediated by multimodal imaging based on a biological targeting synergistic agent. Int J Nanomedicine 15:1871–88.
  • Yatvin MB, Kreutz W, Horwitz BA, et al. (1980). pH-sensitive liposomes: possible clinical implications. Science 210:1253–5.
  • You JO, Auguste DT. (2008). Feedback-regulated paclitaxel delivery based on poly(N,N-dimethylaminoethyl methacrylate-co-2-hydroxyethyl methacrylate) nanoparticles. Biomaterials 29:1950–7.
  • Zhao Z, Ding C, Wang Y, et al. (2019). pH-Responsive polymeric nanocarriers for efficient killing of cariogenic bacteria in biofilms. Biomater Sci 7:1643–51.
  • Zhou W, Ren B, Zhou X, et al. (2016). Novel cavity disinfectants containing quaternary ammonium monomer dimethylaminododecyl methacrylate. Materials 9:674.
  • Zhou Y, Wang S, Zhou X, et al. (2019). Short-time antibacterial effects of dimethylaminododecyl methacrylate on oral multispecies biofilm in vitro. Biomed Res Int 2019:1–10.