[1] 冯希平. 中国居民口腔健康状况-第四次中国口腔健康流行病学调查报告[C]. 西安: 2018年中华口腔医学会第十八次口腔预防医学学术年会, 2018: 2-3. [2] Pitts NB, Zero DT, Marsh PD, et al.Dental caries[J]. Nat Rev Dis Primers, 2017, 3: 17030-17037. [3] Naderi NJ, Niakan M, Kharazi Fard MJ, et al.Antibacterial activity of Iranian green and black tea on Streptococcus mutans: an in vitro study[J]. J Dent (Tehran), 2011, 8(2): 55-59. [4] Friedman M.Overview of antibacterial, antitoxin, antiviral, and antifungal activities of tea flavonoids and teas[J]. Mol Nutr Food Res, 2007, 51(1): 116-134. [5] Nakahara K, Kawabata S, Ono H, et al.Inhibitory effect of oolong tea polyphenols on glycosyltransferases of mutans Streptococci[J]. Appl Environ Microbiol, 1993, 59(4): 968-973. [6] Socransky SS, Dzink JL, Smith CM.Chemically defined medium for oral microorganisms[J]. J Clin Microbiol, 1985, 22(2): 303-305. [7] Xu X, Zhou X, Wu C.The tea catechin epigallocatechin gallate suppresses cariogenic virulence factors of Streptococcus mutans[J]. Antimicrob Agents Chemother, 2011, 55(3): 1229-1236. [8] Bowen WH, Burne RA, Wu H, et al.Oral biofilms: pathogens, matrix, and polymicrobial interactions in microenvironments[J]. Trends Microbiol, 2018, 26(3): 229-242. [9] van der Ploeg J. Regulation of bacteriocin production in Streptococcus mutans by the quorum-sensing system required for development of genetic competence[J]. J Bacteriol, 2005,187(12): 3980-3989. [10] He Z, Liang J, Tang Z, et al.Role of the luxS gene in initial biofilm formation by Streptococcus mutans[J]. J Mol Microbiol Biotechnol, 2015, 25(1): 60-68. [11] Dufour D, Levesque C.Cell death of Streptococcus mutans induced by a quorum-sensing peptide occurs via a conserved streptococcal autolysin[J]. J Bacteriol, 2013, 195(1): 105-114. [12] Perry JA, Cvitkovitch DG, Levesque CM.Cell death in Streptococcus mutans biofilms: a link between CSP and extracellular DNA[J]. FEMS Microbiol Lett, 2009, 299(2): 261-266. [13] Klein M, Hwang G, Santos P, et al.Streptococcus mutans-derived extracellular matrix in cariogenic oral biofilms[J]. Front Cell Infect Microbiol, 2015, 5(1): 10-18. [14] Clark MB, Slayton RL.Fluoride use in caries prevention in the primary care setting[J]. Pediatrics, 2014,134(3): 626-633. [15] Lynch R, Navada R, Walia R.Low-levels of fluoride in plaque and saliva and their effects on the demineralisation and remineralisation of enamel; role of fluoride toothpastes[J]. Int Dent J, 2004, 54(5 Suppl 1): 304-309. [16] Pandit S, Song K, Jeon J.Withania somnifera attenuates acid production, acid tolerance and extra-cellular polysaccharide formation of Streptococcus mutans biofilms[J]. Am J Chin Med, 2014, 42(1): 157-171. [17] Kawarai T, Narisawa N, Yoneda S, et al.Inhibition of Streptococcus mutans biofilm formation using extracts from Assam tea compared to green tea[J]. Arch Oral Biol, 2016, 68(1): 73-82. [18] Ferrazzano GF, Amato I, Ingenito A, et al.Anti-cariogenic effects of polyphenols from plant stimulant beverages (cocoa, coffee, tea)[J]. Fitoterapia, 2009,80(5): 255-262. [19] Bhattacharya D, Bhattacharya S, Patra M, et al.Antibacterial activity of polyphenolic fraction of kombucha against enteric bacterial pathogens[J]. Curr Microbiol, 2016, 73(6): 885-896. [20] Higdon JV, Frei B.Tea catechins and polyphenols: health effects, metabolism, and antioxidant functions[J]. Crit Rev Food Sci Nutr, 2003, 43(1): 89-143. [21] Du X, Huang X, Huang C, et al.Epigallocatechin-3-gallate (EGCG) enhances the therapeutic activity of a dental adhesive[J]. J Dent, 2012, 40(6): 485-492. [22] Takahashi N, Nyvad B.The role of bacteria in the caries process: ecological perspectives[J]. J Dent Res, 2011, 90(3): 294-303. [23] Nagasawa R, Sato T, Senpuku H.Raffinose induces biofilm formation by Streptococcus mutans in low concentrations of sucrose by increasing production of extracellular DNA and fructan[J]. Appl Environ Microbiol, 2017, 83(15): e00869-17. [24] Chung WO, Park Y, Lamont RJ, et al.Signaling system in Porphyromonas gingivalis based on a LuxS protein[J]. J Bacteriol, 2001, 183(13): 3903-3909. [25] Dong L, Tong Z, Linghu D, et al.Effects of sub-minimum inhibitory concentrations of antimicrobial agents on Streptococcus mutans biofilm formation[J]. Int J Antimicrob, 2012, 39(5): 390-395. [26] Wang S, Wang Y, Wang Y, et al.Theaflavin-3,3'-digallate suppresses biofilm formation, acid production, and acid tolerance in Streptococcus mutans by targeting virulence factors[J]. Front Microbiol, 2019, 10: 1705-1712. [27] 于曙光. 丹皮酚、丹皮酚衍生物及其结构类似物的生物活性研究[D]. 福州: 福建农林大学, 2013. |