REFERENCES

  • Cheng L, Zhang K, Weir MD, Melo MA, Zhou X, Xu HH. Nanotechnology strategies for antibacterial and remineralizing composites and adhesives to tackle dental caries. Nanomedicine (Lond) 2015 Mar;10(4):627–41. doi: 10.2217/nnm.14.191.
  • Tang ZS, Bolong N, Saad I, Ayog JL. The morphology of electrospun titanium dioxide nanofibers and its influencing factors. MATEC Web of Conferences 2016;47:01020.
  • Santos LM, Machado WA, França MD, Borges KA, Paniago RM, Patrocinio AOT, et al. Structural characterization of Ag-doped TiO2 with enhanced photocatalytic activity. RSC Advances 2015;5(125):103752–9.
  • Ayati A, Ahmadpour A, Bamoharram FF, Tanhaei B, Mänttäri M, Sillanpää M. A review on catalytic applications of Au/TiO2 nanoparticles in the removal of water pollutant. Chemosphere 2014 Jul;107:163–174. doi: 10.1016/j.chemosphere.2014.01.040. Epub 2014 Feb 18.
  • Sánchez-López E, Gomes D, Esteruelas G, Bonilla L, et al. Metal-based nanoparticles as antimicrobial agents: An overview. Nanomaterials (Basel) 2020 Feb 9;10(2). doi: 10.3390/nano10020292.
  • Daraee H, Eatemadi A, Abbasi E, Fekri Aval S, Kouhi M, Akbarzadeh A. Application of gold nanoparticles in biomedical and drug delivery. Artif Cells Nanomed Biotechnol 2016;44(1):410–22. doi: 10.3109/21691401.2014.955107. Epub 2014 Sep 17.
  • Hernández-Sierra JF, Ruiz F, Pena DC, Martínez-Gutiérrez F, Martínez AE, Guillén Ade J, Tapia-Pérez H, Castañón GM. The antimicrobial sensitivity of Streptococcus mutans to nanoparticles of silver, zinc oxide and gold. Nanomedicine 2008 Sep;4(3):237–40. doi: 10.1016/j.nano.2008.04.005. Epub 2008 Jun 20.
  • Durgesh P, Sridharan S, Prabhu SK, Rao R, Rudresh V, Bangalore D. Microbial contamination and plaque scores of nanogold-coated toothbrush. Int J Dent Hyg 2020 Aug;18(3):278–284. doi: 10.1111/idh.12433. Epub 2020 Mar 23.
  • Carrouel F, Viennot S, Ottolenghi L, Gaillard C, Bourgeois D. Nanoparticles as antimicrobial, anti-inflammatory and remineralizing agents in oral care cosmetics: A review of the current situation. Nanomaterials (Basel) 2020 Jan 13;10(1):140. doi: 10.3390/nano10010140.
  • Watu B, Choi E, Tran C, Perry C, Sinclair R, Nick K, Kwon S. Effect of gold coating on oxidation potential of titanium-oxide nanofiber. J Dent Res 2020; 99(Spec Iss A):#0589.
  • Tarika M, Kohli A. 3D printing in dentistry — An overview. ASDS 2019;3(6):35–41.
  • Dawood A, Marti Marti B, Sauret-Jackson V, Darwood A. 3D printing in dentistry. Br Dent J 2015 Dec;219(11):521–9. doi: 10.1038/sj.bdj.2015.914.
  • Vlahović Z, Mikić M. 3D printing guide implant placement: A case report. Balk J Dent Med 2017;21. http://doi.org/10.1515/bjdm-2017-0010.
  • Oberoi G, Nitsch S, Edelmayer M, Janjić K, Müller AS, Agis H. 3D printing-encompassing the facets of dentistry. Front Bioeng Biotechnol 2018 Nov 22;6:172. doi: 10.3389/fbioe.2018.00172. eCollection 2018.
  • Yilmaz A, Badria AF, Huri PY, Huri G. 3D-printed surgical guides. Ann Jt 2019;4(25). doi: 10.21037/aoj.2019.02.04.
  • Yanagi T, Kakura K, Tsuzuki T, Isshi K, Taniguchi Y, Hirofuji T, Kido H, Yoneda M. Fabrication of mouthguard using digital technology. Dentistry, an open access journal 2019;9(1). doi: 10.4172/2161-1122.1000531.
  • Gallup N, Bow JK, Pearce JM. Economic potential for distributed manufacturing of adaptive aids for arthritis patients in the U.S. Geriatrics (Basel) 2018 Dec 6;3(4)89. doi: 10.3390/geriatrics3040089.
  • Poon CY, Bhushan B. Comparison of surface roughness measurements by stylus profiler, AFM and noncontact optical profile. Wear 1995;190:76–88. http://doi.org/10.1016/0043-1648(95)06697-7.
  • White CC, White KM, Pickett JE. Service Life Prediction of Polymers and Plastics Exposed to Outdoor Weathering. 1st ed. Cambridge, Mass: Elsevier Inc.; 2018:19–34.
  • Whitehead SA, Shearer AC, Watts DC, Wilson NHF. Comparison of methods for measuring surface roughness of ceramic. J Oral Rehabil 1995 Jun;22(6):421–7. doi: 10.1111/j.1365-2842.1995.tb00795.x.
  • Allard MM, Merlos SN, Springer BN, Cooper J, Zhang GY, Boskovic DS, et al. Role of TiO2 Anatase Surface Morphology on Organophosphorus Interfacial Chemistry. J Phys Chem C 2018;122(51):29237–48. http://doi.org/10.1021/acs.jpcc.8b08641.
  • Kasuga T, Hiramatsu M, Hoson A, Sekino T, Niihara K. Formation of titanium oxide nanotube. Langmuir 1998;14(12):3160–3. http://doi.org/10.1021/la9713816.
  • Leng W, Pati P, Vikesland PJ. Room temperature seed mediated growth of gold nanoparticles: Mechanistic investigations and life cycle assessment. Environ Sci: Nano 2015;2(5):440–453. doi: 10.1039/C5EN00026B.
  • Zhang H, Cai L, Golub M. et al. Tensile, creep and fatigue behaviors of 3D-printed acrylonitrile butadiene styrene. J Mater Eng Perform 2018; 27:57–62. http://doi.org/10.1007/s11665-017-2961-7.
  • Kwon SR, Wang J, Oyoyo U, Li Y. Evaluation of bleaching efficacy and erosion potential of four different over-the-counter bleaching products. Am J Dent 2013 Dec;26(6):356–60.
  • Bhavikatti SK, Bhardwaj S, Prabhuji ML. Current applications of nanotechnology in dentistry: A review. Gen Dent 2014 Jul–Aug62(4):72–7.
  • Priyadarsini S, Mukherjee S, Mishra M. Nanoparticles used in dentistry: A review. J Oral Biol Craniofac Res Jan–Apr 2018;8(1):58–67. doi: 10.1016/j.jobcr.2017.12.004. Epub 2017 Dec 7.
  • Rompelberg C, Heringa MB, van Donkersgoed G, Drijvers J, Roos A, Westenbrink S, Peters R, van Bemmel G, Brand W, Oomen AG. Oral intake of added titanium dioxide and its nanofraction from food products, food supplements and toothpaste by the Dutch population. Nanotoxicology 2016 Dec;10(10):1404–1414. doi: 10.1080/17435390.2016.1222457. Epub 2016 Sep 13.
  • Lee JY, Lee ES, Kang SM, Kim BI. Application of quantitative light-induced fluorescence technology for tooth bleaching treatment and its assessment: An in vitro study. Photodiagnosis Photodyn Ther 2019 Mar;25:208–213. doi: 10.1016/j.pdpdt.2018.12.001. Epub 2018 Dec 4.
  • Kurzmann C, Verheyen J, Coto M, Kumar RV, Divitini G, Shokoohi-Tabrizi HA, Verheyen P, De Moor RJG, Moritz A, Agis H. In vitro evaluation of experimental light activated gels for tooth bleaching. Photochem Photobiol Sci 2019 May 15;18(5):1009–1019. doi: 10.1039/c8pp00223a.
  • Bortolatto JF, Trevisan TC, Bernardi PS, Fernandez E, Dovigo LN, Loguercio AD, Batista de Oliveira Junior O, Pretel H. A novel approach for in-office tooth bleaching with 6% H2O2/TiO_N and LED/laser system-a controlled, triple-blinded, randomized clinical trial. Lasers Med Sci 2016 Apr;31(3):437–44. doi: 10.1007/s10103-016-1866-2. Epub 2016 Jan 21.
  • Cuppini M, Leitune VCB, Souza M, Alves AK, Samuel SMW, Collares FM. In vitro evaluation of visible light-activated titanium dioxide photocatalysis for in-office dental bleaching. Dent Mater J 2019 Feb 8;38(1):68 – 74. doi: 10.4012/dmj.2017-199. Epub 2018 Nov 17.
  • Tano E, Otsuki M, Kato J, Sadr A, Ikeda M, Tagami J. Effects of 405 nm diode laser on titanium oxide bleaching activation. Photomed Laser Surg 2012 Nov;30(11):648–54. doi: 10.1089/pho.2012.3273. Epub 2012 Sep 24.
  • Martín J, Vildósola P, Bersezio C, Herrera A, Bortolatto J, Saad JR, Oliveira OB Jr., Fernández E. Effectiveness of 6% hydrogen peroxide concentration for tooth bleaching — a double-blind, randomized clinical trial. J Dent 2015 Aug;43(8):965–72. doi: 10.1016/j.jdent.2015.05.011. Epub 2015 Jun 6.
  • Sawada R, Katou Y, Shibata H, Katayama M, Nonami T. Evaluation of photocatalytic and protein adsorption properties of anodized titanium plate immersed in simulated body fluid. Int J Biomater 2019 Jul 1;2019:7826373. http://doi.org/10.1155/2019/7826373.
  • Bollen CML, Lambrechts P, Quirynen M. Comparison of surface roughness of oral hard materials to the threshold surface roughness for bacterial plaque retention: A review of the literature. Dent Mater 1997 Jul;13(4):258–69. doi: 10.1016/s0109-5641(97)80038-3.
  • Quirynen M, Marechal M, Busscher HJ, et al. The influence of surface-free energy and surface roughness on early plaque formation. An in vivo study in man. J Clin Periodont 1990;17:138–144. doi: 10.1111/j.1600-051x.1990.tb01077.x.
  • Liao C, Li Y, Tjong SC. Visible-light active titanium dioxide nanomaterials with bactericidal properties. Nanomaterials (Basel) 2020 Jan;10(1):E124. doi: 10.3390/nano10010124.
  • Noman MT, Ashraf MA, Ali A. Synthesis and applications of nano-TiO2: A review. Environ Sci Pollut Res Int 2019 Feb;26(4):3262–3291. doi: 10.1007/s11356-018-3884-z. Epub 2018 Dec 6.
  • Veerachandra K, Hunh Y, Hung YC. Using photocatalyst metal oxides as antimicrobial surface coatings to ensure food safetyopportunities and challenges. Comp Rev Food Sci Food Safety 2017;16:617–631. http://doi.org/10.1111/1541-4337.12267.

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