[1] Pedersen AML, Sørensen CE, Proctor GB, et al. Salivary secretion in health and disease [J]. Oral Rehabil, 2018, 45(9):730-746. [2] Han Y, Jia L, Zheng Y,et al. Salivary exosomes: emerging roles in systemic disease [J]. Biol Sci, 2018, 14(6):633-643. [3] Urbanelli L, Buratta S, Tancini B, et al.The role of extracellular vesicles in viral infection and transmission [J]. Vaccines, 2019, 7(3):102. [4] Zlotogorski-Hurvitz A, Dayan D, Chaushu G, et al. Morphological and molecular features of oral fluid-derived exosomes:oral cancer patients versus healthy individuals [J]. Cancer Res Clin Oncol, 2016, 142(1):101-110. [5] Yu J, Lin J, Xiong X, et al. Detection of exosomal PD-L1 RNA in saliva of patients with periodontitis [J]. Front Genet, 2019, 10:202. [6] Byun JS, Hong SH, Choi JK, et al. Diagnostic profiling of salivary exosomal microRNAs in oral lichen planus patients [J]. Oral Dis, 2015, 21(8): 987-993. [7] Hadavand M, Hasni S. Exosomal biomarkers in oral diseases[J]. Oral Dis, 2019, 25(1):10-15. [8] Ståhl AL, Johansson K, Mossberg M, et al. Exosomes and microvesicles in normal physiology, pathophysiology, and renal diseases [J]. Pediatr Nephrol, 2019, 34(1):11-30. [9] Tkach M, Thery C. Communication by extracellular vesicles:where we are and where we need to go [J]. Cell, 2016, 164(6): 1226-1232. [10] 孙妍.唾液中细胞外囊泡的分离与蛋白质组研究[D].上海:上海交通大学,2017. [11] Théry C, Amigorena S, Raposo G, et al. Isolation and characterization of exosomes from cell culture supernatants and biological fluids [J]. Curr Protoc Cell Biol, 2006, Chapter 3:Unit 3.22. [12] Zlotogorski-Hurvitz A, Dayan D, Chaushu G, et al. Human saliva-derived exosomes: comparing methods of isolation [J]. Histochem Cytochem, 2015, 63(3): 181-189. [13] Turchinovich A, Drapkina O, Tonevitsky A. Transcriptome of extracellular vesicles: state-of-the-art [J]. Front Immunol, 2019 ,10:202. [14] Villysson A, Tontanahal A, Karpman D. Microvesicle involvement in Shiga Toxin-associated infection [J]. Toxins (Basel), 2017, 9(11):376. [15] Chakraborty D, Natarajan C, Mukherjee A. Advances in oral cancer detection [J]. Adv Clin Chem, 2019, 91:181-200. [16] Javeed N, Mukhopadhyay D. Exosomes and their role in the micro-/macro-environment: a comprehensive review [J]. Biomed Res, 2017, 31(5):386-394. [17] Zhong WQ, Ren JG, Xiong XP, et al. Increased salivary microvesicles are associated with the prognosis of patients with oral squamous cell carcinoma [J]. Cell Mol Med, 2019, 23(6):4054-4062. [18] Gai C, Camussi F, Broccoletti R, et al. Salivary extracellular vesicle-associated miRNAs as potential biomarkers in oral squamous cell carcinoma [J]. BMC Cancer, 2018,18 (1):439. [19] 胡慧珍,王世琴,孙贵军,等.口腔鳞状细胞癌外泌体mRNA表达图谱分析[J].口腔医学研究,2018,34(9):943-947. [20] Qadir F, Aziz MA, Sari CP, et al. Transcriptome reprogramming by cancer exosomes: identification of novel molecular targets in matrix and immune modulation [J]. Mol Cancer, 2018, 17(1):97. [21] Verhulst MJL, Teeuw WJ, Bizzarro S, et al. A rapid, non-invasive tool for periodontitis screening in a medical care setting [J]. BMC Oral Health, 2019, 23,19(1):87. [22] Huang X, Hu X, Zhao M, et al. Analysis of salivary exosomal proteins in young adults with severe periodontitis [J]. Oral Dis, 2020, 26(1):173-180. [23] Tobón-Arroyave SI, Celis-Mejía N, Córdoba-Hidalgo MP, et al. Decreased salivary concentration of CD9 and CD81 exosome-related tetraspanins may be associated with the periodontal clinical tatus [J]. Clin Periodontol, 2019, 46(4): 470-480. [24] Witas R, Peck AB, Ambrus JL, et al. Sjogren's syndrome and TAM receptors:A possible contribution to disease onset [J]. Immunol Res, 2019, 2019: 4813795. [25] Aqrawi LA, Galtung HK, Guerreiro EM, et al. Proteomic and histopathological characterisation of sicca subjects and primary Sjögren's syndrome patients reveals promising tear, saliva and extracellular vesicle disease biomarkers [J]. Arthritis Res Ther, 2019, 21(1):181. [26] Michael A, Bajracharya SD, Yuen PS, et al. Exo-somes from human saliva as a source of microRNA biomarkers [J]. Oral Dis, 2010, 16(1):34-38. |