Schipper R G, Silletti E, Vingerhoeds M H. Saliva as research material: Biochemical, physicochemical and practical aspects. Arch Oral Biol 52(12): 1114–1135 (2007)
Bongaerts J H H, Rossetti D, Stokes J R. The lubricating properties of human whole saliva. Tribol Lett 27(3): 277–287 (2007)
Reeh E S, Douglas W H, Levine M J. Lubrication of saliva substitutes at enamel-to-enamel contacts in an artificial mouth. J Prosthet Dent 75(6): 649–656 (1996)
Chawhuaveang D D, Yu O Y, Yin I X, Lam W Y H, Mei M L, Chu C H. Acquired salivary pellicle and oral diseases: A literature review. J Dent Sci 16(1): 523–529 (2021)
De Menezes Oliveira M A H, Torres C P, Gomes-Silva J M, Chinelatti M A, De Menezes F C H, Palma-Dibb R G, Borsatto M C. Microstructure and mineral composition of dental enamel of permanent and deciduous teeth. Microscopy Res & Technique 73(5): 572–577 (2010)
Yahyazadehfar M, Arola D. The role of organic proteins on the crack growth resistance of human enamel. Acta Biomater 19: 33–45 (2015)
Simmer J P, Hu J C C. Dental enamel formation and its impact on clinical dentistry. J Dent Educ 65(9): 896–905 (2001)
Eimar H, Ghadimi E, Marelli B, Vali H, Nazhat S N, Amin W M, Torres J, Ciobanu O, Albuquerque R FJr, Tamimi F. Regulation of enamel hardness by its crystallographic dimensions. Acta Biomater 8(9): 3400–3410 (2012)
Cui F Z, Ge J. New observations of the hierarchical structure of human enamel, from nanoscale to microscale. J Tissue Eng Regen Med 1(3): 185–191 (2007)
Rathsam C, Farahani R M, Hains P G, Valova V A, Charadram N, Zoellner H, Swain M, Hunter N. Characterization of inter-crystallite peptides in human enamel rods reveals contribution by the Y allele of amelogenin. J Struct Biol 204(1): 26–37 (2018)
Beniash E, Stifler C A, Sun C Y, Jung G S, Qin Z, Buehler M J, Gilbert P U P A. The hidden structure of human enamel. Nat Commun 10: 4383 (2019)
Lendenmann U, Grogan J, Oppenheim F G. Saliva and dental pellicl: A review. Adv Dent Res 14(1): 22–28 (2000)
Baek J H, Krasieva T, Tang S, Ahn Y, Kim C S, Vu D, Chen Z P, Wilder-Smith P. Optical approach to the salivary pellicle. J Biomed Opt 14(4): 044001 (2009)
Siqueira W L, Custodio W, McDonald E E. New insights into the composition and functions of the acquired enamel pellicle. J Dent Res 91(12): 1110–1118 (2012)
Hannig M. Ultrastructural investigation of pellicle morphogenesis at two different intraoral sites during a 24-h period. Clin Oral Investig 3(2): 88–95 (1999)
Zhang Y F, Zheng J, Zheng L, Zhou Z R. Effect of adsorption time on the adhesion strength between salivary pellicle and human tooth enamel. J Mech Behav Biomed Mater 42: 257–266 (2015)
Zeng Q H, Zheng L, Zhou J, Xiao H, Zheng J, Zhou Z R. Effect of alcohol stimulation on salivary pellicle formation on human tooth enamel surface and its lubricating performance. J Mech Behav Biomed Mater 75: 567–573 (2017)
Yakubov G E, Macakova L, Wilson S, Windust J H C, Stokes J R. Aqueous lubrication by fractionated salivary proteins: Synergistic interaction of mucin polymer brush with low molecular weight macromolecules. Tribol Int 89: 34–45 (2015)
Macakova L, Yakubov G E, Plunkett M A, Stokes J R. Influence of ionic strength changes on the structure of pre-adsorbed salivary films. A response of a natural multi-component layer. Colloids Surf B Biointerfaces 77(1): 31–39 (2010)
Ash A, Ridout M J, Parker R, Mackie A R, Burnett G R, Wilde P J. Effect of calcium ions on in vitro pellicle formation from parotid and whole saliva. Colloids Surf B Biointerfaces 102: 546–553 (2013)
Tanizawa Y, Johna N, Yamamoto Y, Nishikawa N. Salivary films on hydroxyapatite studied by an in vitro system for investigating the effect of metal ions and by a quartz-crystal microbalance system for monitoring layer-by-layer film formation. J Cosmet Sci 55(2): 163–176 (2004)
Sharpe J R, Sammons R L, Marquis P M. Effect of pH on protein adsorption to hydroxyapatite and tricalcium phosphate ceramics. Biomaterials 18(6): 471–476 (1997)
Prinz J F, Lucas P W. Saliva tannin interactions. J Oral Rehabil 27(11): 991–994 (2000)
Ma S H, Lee H, Liang Y M, Zhou F. Astringent mouthfeel as a consequence of lubrication failure. Angew Chem Int Ed 55(19): 5793–5797 (2016)
Zeng Q H, Ma G L, Xiao H, Yang D, Zheng J, Zheng L, Zhou Z R. Effect of saliva flow rate on the adsorption kinetics and lubrication of salivary pellicle on human tooth enamel surface. Wear 426-427: 180–185 (2019)
Smith C E L, Poulter J A, Antanaviciute A, Kirkham J, Brookes S J, Inglehearn C F, Mighell A J. Amelogenesis imperfecta; genes, proteins, and pathways. Front Physiol 8: 435 (2017)
Qing P, Li Y, Gao S S, Qiao M T, Qian L M, Yu H Y. Characterization of the nanoscratch, microstructure, and composition in hypoplastic amelogenesis imperfecta. Adv Mech Eng 7(7): 168781401559559 (2015)
Lei L, Zheng L, Xiao H, Zheng J, Zhou Z R. Wear mechanism of human tooth enamel: The role of interfacial protein bonding between HA crystals. J Mech Behav Biomed Mater 110: 103845 (2020)
Ikoma T, Tagaya M, Hanagata N, Yoshioka T, Chakarov D, Kasemo B, Tanaka J. Protein adsorption on hydroxyapatite nanosensors with different crystal sizes studied In situ by a quartz crystal microbalance with the dissipation method. J Am Ceram Soc 92(5): 1125–1128 (2009)
He Z H, Sun S L, Deng C L. Effect of hydroxyapatite coating surface morphology on adsorption behavior of differently charged proteins. J Bionic Eng 17(2): 345–356 (2020)
Estrela C, Estrela C R A, Barbin E L, Spanó J C E, Marchesan M A, Pécora J D. Mechanism of action of sodium hypochlorite. Braz Dent J 13(2): 113–117 (2002)
Zheng J, Huang H, Shi M Y, Zheng L, Qian L M, Zhou Z R. In vitro study on the wear behaviour of human tooth enamel in citric acid solution. Wear 271(9–10): 2313–2321 (2011)
Marending M, Luder H U, Brunner T J, Knecht S, Stark W J, Zehnder M. Effect of sodium hypochlorite on human root dentine–mechanical, chemical and structural evaluation. Int Endodontic J 40(10): 786–793 (2007)
Mine A, De Munck J, Cardoso M V, Van Landuyt K L, Poitevin A, Kuboki T, Yoshida Y, Suzuki K, Van Meerbeek B. Enamel-smear compromises bonding by mild self-etch adhesives. J Dent Res 89(12): 1505–1509 (2010)
Munro C L, Grap M J, Jablonski R, Boyle A. Oral health measurement in nursing research: State of the science. Biol Res Nurs 8(1): 35–42 (2006)
Wetton S, Hughes J, West N, Addy M. Exposure time of enamel and dentine to saliva for protection against erosion: A study in vitro. Caries Res 40(3): 213–217 (2006)
Chiappin S, Antonelli G, Gatti R, De Palo E F. Saliva specimen: A new laboratory tool for diagnostic and basic investigation. Clin Chim Acta 383(1–2): 30–40 (2007)
Monkawa A, Ikoma T, Yunoki S, Yoshioka T, Tanaka J, Chakarov D, Kasemo B. Fabrication of hydroxyapatite ultra-thin layer on gold surface and its application for quartz crystal microbalance technique. Biomaterials 27(33): 5748–5754 (2006)
Barrantes A, Arnebrant T, Lindh L. Characteristics of saliva films adsorbed onto different dental materials studied by QCM-D. Colloids Surf A Physicochem Eng Aspects 442: 56–62 (2014)
Yang Y T, Liao J D, Lee Y L, Chang C W, Tsai H J. Ultra-thin phospholipid layers physically adsorbed upon glass characterized by nano-indentation at the surface contact level. Nanotechnology 20(19): 195702 (2009)
Schwender N, Huber K, Al Marrawi F, Hannig M, Ziegler C. Initial bioadhesion on surfaces in the oral cavity investigated by scanning force microscopy. Appl Surf Sci 252(1): 117–122 (2005)
Xu L C, Siedlecki C A. Effects of surface wettability and contact time on protein adhesion to biomaterial surfaces. Biomaterials 28(22): 3273–3283 (2007)
Young A, Smistad G, Karlsen J, Rölla G, Rykke M. Zeta potentials of human enamel and hydroxyapatite as measured by the coulter® DELSA 440. Adv Dent Res 11(4): 560–565 (1997)
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