1 |
CONRADS G, ABOUT I. Pathophysiology of dental caries[J]. Monogr Oral Sci, 2018, 27: 1-10.
|
2 |
BEDOYA-CORREA C M, RINCÓN RODRÍGUEZ R J, PARADA-SANCHEZ M T. Genomic and phenotypic diversity of Streptococcus mutans[J]. J Oral Biosci, 2019, 61(1): 22-31.
|
3 |
GRIGALAUSKIENĖ R, SLABŠINSKIENĖ E, VASILIAUSKIENĖ I. Biological approach of dental caries management[J].Stomatologija,2015,17(4): 107-112.
|
4 |
JAIN A, SUPRABHA B S, SHENOY R, et al. Remineralising effectiveness of two fluoride varnishes containing additives: an in vitro study[J]. Oral Health Prev Dent, 2019, 17(4): 385-393.
|
5 |
MANARELLI M M, DELBEM A C B, BÁEZ-QUINTERO L C, et al. Fluoride varnishes containing sodium trimetaphosphate reduce enamel demineralization in vitro [J]. Acta Odontol Scand, 2017,75(5): 376-378.
|
6 |
YU O Y, MEI M L, ZHAO I S, et al. Remineralisation of enamel with silver diamine fluoride and sodium fluoride[J]. Dent Mater, 2018, 34(12): e344-e352.
|
7 |
ZHAO Y, LI H, WEI S, et al. Antimicrobial effects of chemical compounds isolated from traditional Chinese herbal medicine (TCHM) against drug-resistant bacteria: a review paper[J]. Mini Rev Med Chem, 2019, 19(2): 125-137.
|
8 |
CAO X, YE Q, FAN M, et al. Antimicrobial effects of the ginsenoside Rh2 on monospecies and multispecies cariogenic biofilms[J].J Appl Microbiol,2019,126(3): 740-751.
|
9 |
KACHUR K, SUNTRES Z E. The antimicrobial properties of ginseng and ginseng extracts[J]. Expert Rev Anti Infect Ther, 2016, 14(1): 81-94.
|
10 |
WEGEHAUPT F, MENGHINI G. Update fluorid [fluoride update] [J].Swiss Dent J,2020;130(9):677-683.
|
11 |
DANG M H, JUNG J E, LEE D W, et al. Recovery of acid production in streptococcus mutans biofilms after short-term fluoride treatment[J].Caries Res,2016,50(4): 363-371.
|
12 |
CHEN X Q, DALIRI E B M, KIM N, et al. Microbial etiology and prevention of dental caries: exploiting natural products to inhibit cariogenic biofilms[J]. Pathogens, 2020, 9(7): 569.
|
13 |
LI X, CHU S, LIN M, et al. Anticancer property of ginsenoside Rh2 from ginseng[J]. Eur J Med Chem, 2020, 203: 112627.
|
14 |
IM D S. Pro-resolving effect of ginsenosides as an anti-inflammatory mechanism of panax ginseng[J]. Biomolecules, 2020, 10(3): 444.
|
15 |
YOO H J, JWA S K.Inhibitory effects of β-caryophyllene on Streptococcus mutans biofilm[J]. Arch Oral Biol, 2018, 88: 42-46.
|
16 |
LIU S, WEI Y, ZHOU X, et al. Function of alanine racemase in the physiological activity and cariogenicity of Streptococcus mutans[J]. Sci Rep, 2018, 8(1): 5984.
|
17 |
DAMÉ-TEIXEIRA N, DENG D,DO T. Streptococcus mutans transcriptome in the presence of sodium fluoride and sucrose[J]. Arch Oral Biol, 2019, 102: 186-192.
|
18 |
LÓPEZ-LÓPEZ A, MIRA A. Shifts in composition and activity of oral biofilms after fluoride exposure[J]. Microb Ecol, 2020, 80(3): 729-738
|
19 |
NAUMOVA E A, WEBER L, PANKRATZ V, et al. Bacterial viability in oral biofilm after tooth brushing with amine fluoride or sodium fluoride[J]. Arch Oral Biol, 2019, 97: 91-96.
|
20 |
KITAGAWA H, MIKI-OKA S, MAYANAGI G,et al. Inhibitory effect of resin composite containing S-PRG filler on Streptococcus mutans glucose metabolism[J]. J Dent, 2018, 70: 92-96.
|
21 |
ISHIGURO T, MAYANAGI G, AZUMI M, et al. Sodium fluoride and silver diamine fluoride-coated tooth surfaces inhibit bacterial acid production at the bacteria/tooth interface[J]. J Dent, 2019, 84: 30-35.
|
22 |
曹茜茜, 叶倩琳, 周立波, 等. 人参皂苷Rh2抑制致龋菌生物膜的实验研究[J]. 口腔医学研究, 2018, 34(12): 1302-1306.
|
23 |
刘 迪, 张 浩, 孙宏宇, 等. 人参皂苷抑菌活性研究进展[J].中国病原生物学杂志, 2018, 13(12):1424-1426.
|