[1] Ferlay J, Shin HR, Bray F, et al. Estimates of worldwide burden of cancer in 2008: GLOBOCAN 2008 [J]. Int J Cancer, 2010, 127(12):2893-2917. [2] 王美青,何三纲.口腔解剖生理学[M].第6版.北京:人民卫生出版社,2012:306-309. [3] Bartel DP. MicroRNAs:genomics, biogenesis, mechanism, and function [J]. Cell, 2004, 116(2): 281-297. [4] Staedel C, Tran TPA, Giraud J, et al. Modulation of oncogenic miRNA biogenesis using functionalized polyamines [J]. Sci Rep, 2018, 8(1):1667. [5] 刘思玉,谢龙,祁兵,等.口腔鳞状细胞癌组织中差异微小 RNA/mRNA 表达谱的对接研究[J].华西口腔医学杂志,2014,32(4):400-403. [6] 罗彬瑞,郭天虹,黄远帅.唾液中miRNA-21对早期喉鳞状细胞癌的诊断价值[J].肿瘤防治研究,2018,45 (5): 320-325. [7] Wang HC, Chiang WF, Huang HH, et al. Promoter hypermethylation of the gene encoding heat shock protein B1in oral squamous carainima cells [J]. Oral Surg Oral Med Oral Pathol Oral Radiol, 2013, 115:376-384. [8] Shaer A, Azaapiree N, Vahdati A, et al. miR-375 induces human decidua basalis-derived stromal cells to become insulin-producing cells [J].Cell Mol Biol Lett, 2014,19(3):483-499. [9] Lima Queiroz A, Zhang B, Comstock DE, et al. MiR-126-5p targets Malate Dehydrogenase 1 in non-small cell lung carcinomas [J]. Biochem Biophys Res Commun, 2018, 499(2):314-320. [10] Lee RC, Feinbaum RL, Ambros V. The C. elegans heterochronic gene lin-4 encodes small RNAs with antisense complementarity to lin-14 [J]. Cell, 1993, 75(5): 843-854. [11] Li Z, Lin C, Zhao L, et al. Oncogene miR-187-5p is associated with cellular proliferation, migration, invasion, apoptosis and an increased risk of recurrence in bladder cancer [J]. Biomed Pharmacother, 2018,105:461-469. [12] Ren LL, Yan TT, Shen CQ, et al.The distinct role of strand-specific miR-514b-3p and miR-514b-5p in colorectal cancer metastasis [J].Cell Death Dis, 2018, 9(6):687. [13] Guo J, Wen N, Yang S, et al. MiR-92a regulates oral squamous cell carcinoma (OSCC) cell growth by targeting FOXP1 expression [J]. Biomed Pharmacother, 2018, 104:77-86. [14] 常粲然,杜军,李二红,等.microRNA-21在口腔鳞状细胞癌中的表达与预后关系[J].口腔医学研究,2015,31(9): 927-930. [15] Baroukh NN, Van Orrerghen E. Function of microRNA-375 and microRNA-124A in pancreas and brain [J]. FEBS J, 2009, 276(22):6509-6521. [16] Eliasson L. The small RNA miR-375 -a pancreatic islet abundant miRNA with multiple roles in endocrine beta cell function [J]. Mol Cell Endocrinol, 2017,456:95-101. [17] Chen LJ, Li XY, Zhao YQ , et al.Down-regulated microRNA-375 expression as a predictive biomarker in non-small cell lung cancer brain metastasis and its prognostic significance [J]. Pathol Res Pract, 2017, 213(8):882-888. [18] Isozaki Y, Hoshino I, Akutsu Y, et al. Usefulness of microRNA 375 as a prognostic and therapeutic tool in esophageal squamous cell carcinoma [J]. Int J Oncol,2015,46(3):1059-1066. [19] Mazar J, DeBlasio D, Govindarajan SS, et al. Epigenetic regulation of microRNA-375 and its role in melanoma development in humans [J]. FEBS Lett, 2011, 585(15):2467-2476. [20] 王颖懿,房林,沈磊,等.miR-145 、miR-375在乳腺浸润性导管癌中的表达及临床意义[J].同济大学学报(医学版), 2012,33(3):54-57. [21] Wang FF, Li Y, Zhou JS, et al. miR-375 is down-regulated in squamous cervical cancer and inhibits cell migration and invasion via targeting transcription factor SP1 [J]. Am J Pathol, 2011, 179(5):2580-2588. [22] 李锦行,谭雪莹,张萍.微RNA-375通过抑制YAP基因表达调控CIK细胞对宫颈癌SiHa细胞的体外杀伤效应[J].肿瘤,2016,36(1):43-51. [23] 胡兵,王鸿梅,初建设.微小RNA-375对鼻咽癌细胞侵袭迁移及JAK2/STAT3信号通路的影响[J].肿瘤,2017,22(8):678-682. [24] Wu Y, Sun X, Song B, et al. MiR-375/SLC7A11 axis regulates oral squamous cell carcinoma proliferation and invasion [J]. Cancer Med, 2017, 6 (7):1686-1697. [25] Cao ZH, Cheng JL, Zhang Y, et al.MicroRNA-375 inhibits oral squamous cell carcinoma cell migration and invasion by targeting platelet-derved growth factor-A [J]. Mol Med Rep, 2017, 15(2):922-928. [26] Honarmand MH, Farhad-Mollashahi L, Nakhaee A , et al. Salivary levels of ErbB2 and CEA in oral squamous cell carcinoma patients [J]. Asian Pac J Cancer Prev, 2016, 17(S3):77-80. [27] Park NJ, Zhou H, Elashoff D, et al. Salivary microRNA: discovery, characterization, and clinical utility for oral cancer detection[J]. Clin Cancer Res, 2009, 15(17):5473-5477. [28] Jiang WP, Wang Z, Xu LX, et al. Diagnostic model of saliva peptide finger print analysis of oral squamous cell carcinoma patients using weak cation exchange magnetic beads [J]. Biosci Rep, 2015, 35(3). pii: e00211. [29] Csösz É, Lábiscsák P, Kalló G,et al. Proteomics investigation of OSCC-specific salivary biomarkers in a Hungarian population highlights the importance of identification of population-tailored biomarkers [J]. PLoS One, 2017, 12(5): e0177282. |