[1] Edgar NR, Saleh D, Miller RA. Recurrent aphthous stomatitis: a review [J]. J Clin Aesthet Dermatol, 2017, 10(3):26-36. [2] Slebioda Z, Szponar E, Kowalska A. Etiopathogenesis of recurrent aphthous stomatitis and the role of immunologic aspects: literature review [J]. Arch Immunol Ther Exp (Warsz), 2014, 62(3):205-215. [3] 苏红影,李维善,刘岩,等.复发性阿弗他溃疡患者焦虑与唾液皮质醇和脱氢表雄酮水平的相关性研究[J].口腔医学研究,2017,33(2):221-224. [4] Singh A, Gill G, Jakhu H. Epigenetics and its implications for oral health [J]. J Oral Biosci, 2018, 60(2):41-48. [5] Waddington CH. Preliminary notes on the development of the wings in normal and mutant strains of drosophila [J]. Proc Natl Acad Sci U S A, 1939, 25(7):299-307. [6] 邓大君.DNA甲基化和去甲基化的研究现状及思考[J].遗传,2014,36(5):403-410. [7] Sun B, Hu L, Luo ZY, et al. DNA methylation perspectives in the pathogenesis of autoimmune diseases [J]. Clin Immunol, 2016, 164:21-27. [8] 葛林虎,苏汉福.口腔菌群多样性与菌株基因组多态性[J].口腔医学研究,2019,35(10):915-918. [9] Perricone C, Ceccarelli F, Matteo S, et al. Porphyromonas giningvalis and rheumatoid arthritis [J]. Curr Opin Rheumatol, 2019, 31(5):517-524. [10] Dominy SS, Lynch C, Erimini F, et al. Porphyromonas ginivalis in Alzheimer’s disease causation and treatment with small-molecule inhibitors [J]. Sci Adv, 2019, 59(1):eaau3333. [11] Escapa IF, Chen T, Huang Y, et al. New insights into human nostril microbiome from the expanded human oral microbiome database(eHOMD):a resource for the microbiome of the human aerodigestive tract [J]. mSystems, 2018, 3(6):e00187-e00188. [12] 陈谦明.口腔黏膜病学[M].第4版.北京:人民卫生出版社,2014:242. [13] Viana MB, Cardoso FP, Diniz MG, et al. Methylation pattern of IFN-γ and IL-10 genes in periodontal tissues [J]. Immunobiology, 2011, 216(8):938-941. [14] 杨适宜.复发性口腔溃疡病因学概述[J].中国城乡企业卫生,2011,(1):43-44. [15] Borra RC, Andrade PM, Silva IDCG, et al. The Th1/Th2 immune-type response of the recurrent aphthous ulceration analyzed by cDNA microarray [J]. J Oral Pathol Med, 2004, 33(3):140-146. [16] Milavetz BI, Balakrishnan L. Viral epigenetics [J]. Methods Mol Biol, 2015, 1238:569-596. [17] 任宇舒,林晓萍.口腔疾病致病因素诱导表观遗传改变研究进展[J].口腔疾病防治,2019,27(6):400-403. [18] Bogoi RN, De Pablo A, Valencia E, et al. Expression profiling of chromatin-modifying enzymes and global DNA methylation in CD4+ T cells from patients with chronic HIV infection at different HIV control and progression states [J]. Clin Epigenetics, 2018, 10:20. [19] Krajden S, Fuksa M, Anderson J, et al. Examination of human stomach biopsies, saliva, and dental plaque for Campylobacter pylori [J]. J Clin Microbiol, 1989, 27(6):1397-1398. [20] Staines K, Greenwood M. Aphthous ulcers (recurrent) [J]. BMJ Clin Evid,2015,2015:1303. [21] Kanno T, Iijima K, Abe Y, et al. Helicobacter pylori-negative and non-steroidal anti-inflammatory drugs-negative idiopathic peptic ulcers show refractoriness and high recurrence incidence: Multicenter follow-up study of peptic ulcers in Japan [J]. Dig Endosc, 2016, 28(5):556-563. [22] Wijetunge S, Kotakadeniya R, Noordeen F, et al. Prevalence of Helicobacter pylori in benign gastric ulcers in a cohort of Sri Lankan patients [J]. Ceylon Med J,2015, 60(4):152-154. [23] Kikuyama M, Takeshima H, Kinoshita T, et al. Development of a novel approach,the epigenome-based outlier approach,to identify tumor-suppressor genes silenced by aberrant DNA methylation [J]. Cancer Lett, 2012, 322(2):202-204. [24] Domcke S, Bardet AF, Ginno PA, et al. Competition between DNA methylation and transcription factors determines binding of NRF1 [J]. Nature, 2015, 528(7583):575-579. [25] Ujevi A, Lugovi-Mihi L, Situm M, et al. Aphthous ulcers as a multifactorial problem [J]. Acta Clin Croat, 2013, 52(2): 213-221. [26] 周明学,康群甫,刘卫红,等.动脉粥样硬化斑块稳定期和易损期小鼠主动脉基因启动子区DNA甲基化及基因表达差异[J].中国病理生理杂志,2015,31(10):1828. [27] Shanshan C, Xin L, Wen L, et al. Folic acid modulates VPO1 DNA methylation levels and alleviates oxidative stress-induced apoptosis in vivo and in vitro[J]. Redox Biology, 2018, 19:81-91. [28] Yiu TT, Li W. Pediatric cancer epigenome and the influence of folate [J]. Epigenomics, 2015, 7(6):961-973. [29] Ducker GS, Rabinowitz JD. One-carbon metabolism in health and disease [J]. Cell Metab, 2017, 25(1):27-42. [30] Lai KG, Chen CF, Ho CT, et al. Novel roles of folic acid as redox regulator: Modulation of reactive oxygen species sinker protein expression and maintenance of mitochondrial redox homeostasis on hepatocellular carcinoma [J]. Tumour Biol, 2017, 39(6):101042831770264. [31] Mandaviya PR, Stolk L, Heil SG. Homocysteine and DNA methylation: A review of animal and human literature [J]. Mol Genet Metab, 2014, 113(4):243-252. [32] Dharmavaram AT, Reddy RS, Nallakunta R. “Ozone”-the new nemesis of canker sore [J]. J Clin Diagn Res, 2015, 9(3):ZC01-ZC04. [33] 刘好好,许子悦,谢春雨,等.复发性口腔溃疡与T细胞免疫研究进展[J].现代免疫学,2016,36(1):72-75. [34] 管翠强,郭洪波,武云霞,等.复发性口腔溃疡患者的氧化应激与细胞免疫状态研究[J].中国药物与临床,2018,18(6):884-885. [35] 雷丹,姜苏.表观遗传修饰和牙周病的相关性[J].国际口腔医学杂志,2012,39(2):257-259. [36] Giannetti L, Murri Dello Diago A, Lo Muzio L. Recurrent aphthous stomatitis [J]. Minerva Stomatol, 2018, 67(3):125-128. [37] Brand S, Kesper DA , Teich R, et al. DNA methylation of TH1/TH2 cytokine genes affects sensitization and progress of experimental asthma [J].J Allergy Clin Immunol, 2012, 129(6):1602-1610.e6. |