[1] 齐小秋. 第3次全国口腔健康流行病学调查报告 [M]. 北京: 人民卫生出版社, 2008: 92-111. [2] Amer RS, Kolker JL. Restoration of root surface caries in vulnerable elderly patients: a review of the literature [J]. Spec Care Dentist, 2013, 33(3): 141-149. [3] Pavan S, Xie Q, Hara AT, et al. Biomimetic approach for root caries prevention using a proanthocyanidin-rich agent [J]. Caries Res, 2011, 45(5): 443-447. [4] Mai S, Kim YK, Kim J, et al. In vitro remineralization of severely compromised bonded dentin[J]. J Dent Res, 2010, 89(4): 405-410. [5] Rice-Evans CA, Miller NJ. Antioxidant activities of flavonoids as bioactive components of food[J]. Biochem Soc Trans, 1996, 24(3): 790-795. [6] Bagchi D, Bagchi M, Stohs SJ, et al. Free radicals and grape seed proanthocyanidin extract: importance in human health and disease prevention [J]. Toxicology, 2000, 148(2-3): 187-197. [7] Scalbert A, Déprez S, Mila I, et al. Proanthocyanidins and human health: systemic effects and local effects in the gut [J]. Biofactors, 2000, 13(1-4): 115-120. [8] Furiga A, Lonvaud-Funel A, Dorignac G, et al. In vitro anti-bacterial and anti-adherence effects of natural polyphenolic compounds on oral bacteria[J]. J Appl Microbiol, 2008, 105(5): 1470-1476. [9] Koo H, Duarte S, Murata RM, et al. Influence of cranberry proanthocyanidins on formation of biofilms by Streptococcus mutans on saliva-coated apatitic surface and on dental caries development in vivo [J].Caries Res, 2010, 44(2): 116-126. [10] Duarte S, Gregoire S, Singh AP, et al. Inhibitory effects of cranberry polyphenols on formation and acidogenicity of Streptococcus mutans biofilms[J]. FEMS Microbiol Lett, 2006, 257(1): 50-56. [11] Xie Q, Bedran Russo AK, Wu CD. In vitro remineralization effects of grape seed extract on artificial root caries[J]. J Dent, 2008, 36(11): 900-906. [12] Ten Cate JM, Duijsters PP. Alternating demineralization and remineralization of artificial enamel lesions[J].Caries Res, 1982, 16(3): 201-210. [13] Benjamin S, Sharma R, Thomas SS, et al. Grape seed extract as a potential remineralizing agent: a comparative in vitro study [J]. J Contemp Dent Pract, 2012, 13(4): 425-430. [14] 邓盟, 黎红, 董孝立, 等. 中药五倍子提取物对牙本质表面性能的强化作用[J]. 上海口腔医学, 2013, 22(2): 164-168. [15] Deng M, Dong X, Zhou X, et al. Characterization of dentin matrix biomodified by Galla chinensis extract[J]. J Endod, 2013, 39(4): 542-547. [16] Deng M, Wen HL, Dong XL, et al. Effects of 45S5 bioglass on surface properties of dental enamel subjected to 35% hydrogen peroxide [J]. Int J Oral Sci, 2013, 5(2): 103-110. [17] White DJ. The application of in vitro models to research on demineralization and remineralization of the teeth [J]. Adv Dent Res, 1995, 9(3): 175-193. [18] Lussi A, Hellwig E, Klimek J. Fluorides-mode of action and recommendations for use [J]. Schweiz Monatsschr Zahnmed, 2012, 122(11): 1030-1042. [19] 张杰, 黎红, 周仲荣, 等. 人体天然牙不同深度层次的显微硬度与耐磨性的研究[J]. 生物医学工程学杂志, 2002, 19(4): 621-623. [20] Nakornchai S, Atsawasuwan P, Kitamura E, et al. Partial biochemical characterisation of collagen in carious dentin of human primary teeth [J]. Arch Oral Biol, 2004, 49(4): 267-273. [21] Bedran-Russo AK, Castellan CS, Shinohara MS, et al. Characterization of biomodified dentin matrices for potential preventive and reparative therapies[J]. Acta Biomater, 2011, 7(4): 1735-1741. |