[1] Linde A, Goldberg M. Dentinogenesis[J]. Crit Rev Oral Biol Med, 1993, 4(5): 679-728. [2] Sasakl T, Garant P. Structure and organization of odontoblasts[J]. Anat Rec, 1996, 245 (2): 235-249. [3] Larmas M, Sándor GK. Letter to the editor, "the amazing odontoblast: activity, autophagy, and aging"[J]. J Dent Res, 2013, 92 (12): 1142. [4] Heymann R, About I, Lendahi U, et al. E- and N-cadherin distribution in developing and functional human teeth under normal and pathological conditions[J]. Am J Pathol, 2002, 160 (6): 2123-2133. [5] Arana-Chavez V, Katchburian E. Development of tight junctions between odontoblasts in early dentinogenesis as revealed by freeze-fracture[J]. Anat Rec, 1997, 248(3): 332-338. [6] Arana-Chavez V, Katchburian E. Freeze-fracture studies of the distal plasma membrane of rat odontoblasts during their differentiation and polarisation[J]. Eur J Oral Sci, 1998, 106 Suppl 1: 132-136. [7] Arana-Chavez V, Massa L. Odontoblasts: the cells forming and maintaining dentine[J]. Int J Biochem Cell Biol, 2004, 36(8): 1367-1373. [8] D'Atri F, Citi S. Molecular complexity of vertebrate tight junctions (Review)[J]. Mol Membr Biol, 2002, 19(2): 103-112. [9] Du D, Xu F, Yu L, et al. The tight junction protein, occludin, regulates the directional migration of epithelial cells[J]. Dev Cell, 2010, 18(1): 52-63. [10] Takai E, Tan X, Tamori Y, et al. Correlation of translocation of tight junction protein Zonula occludens-1 and activation of epidermal growth factor receptor in the regulation of invasion of pancreatic cancer cells[J]. Int J Oncol, 2005, 27(3): 645-651. [11] Lin D, Edwards A, Fawcett J, et al. A mammalian PAR-3-PAR-6 complex implicated in Cdc42/Rac1 and aPKC signalling and cell polarity[J]. Nat Cell Biol, 2000, 2(8): 540-547. [12] Chang B, Svoboda K, Liu X. Cell polarization: From epithelial cells to odontoblasts[J]. Eur J Cell Biol, 2019, 98(1):1-11. [13] Shin K, Fogg V, Margolis B. Tight junctions and cell polarity[J]. Annu Rev Cell Dev Biol, 2006, 22:207-235. [14] Itoh M, Sasaki H, Furuse M, et al. Junctional adhesion molecule (JAM) binds to PAR-3: a possible mechanism for the recruitment of PAR-3 to tight junctions[J]. J Cell Biol, 2001, 154(3): 491-497. [15] Tepass U. The apical polarity protein network in Drosophila epithelial cells: regulation of polarity, junctions, morphogenesis, cell growth, and survival[J]. Annu Rev Cell Dev Biol, 2012, 28: 655-685. [16] Arany S, Nakata A, Kameda T, et al. Phenotype properties of a novel spontaneously immortalized odontoblast-lineage cell line[J]. Biochem Biophys Res Commun, 2006, 342(3): 718-724. [17] Fanning A, Little B, Rahner C, et al. The unique-5 and -6 motifs of ZO-1 regulate tight junction strand localization and scaffolding properties[J].Mol Biol Cell, 2007, 18(3): 721-731. [18] Rhett J, Jourdan J, Gourdie R. Connexin 43 connexon to gap junction transition is regulated by zonula occludens-1[J]. Mol Biol Cell, 2011, 22(9): 1516-1528. [19] Itoh M, Nagafuchi A, Yonemura S, et al.The 220-kD protein colocalizing with cadherins in non-epithelial cells is identical to ZO-1, a tight junction-associated protein in epithelial cells: cDNA cloning and immunoelectron microscopy[J]. J Cell Biol, 1993, 121(3):491-502. [20] Sun Q, Li N, Jia L, et al. Streptococcus suisribosomal protein SA-positive neutrophil elicits stronger phagocytosis and neutrophil extracellular trap formation and subdues pro-inflammatory cytokine secretion against serotype 2 infection[J]. Front Immunol, 2020, 11: 585399. [21] Zheng M, Sun S, Zhou J, et al. Virulence factors impair epithelial junctions during bacterial infection[J]. J Clin Lab Anal, 2021, 35(2):e23627. [22] Siqueira J, Rôças I. Microbiology and treatment of acute apical abscesses[J]. Clin Microbiol Rev, 2013, 26(2): 255-273. [23] Couve E, Osorio R, Schmachtenberg O. Reactionary dentinogenesis and neuroimmune response in dental caries[J]. J Dent Res, 2014, 93(8):788-793. [24] 李明伟,李鹏,陈博,等.脂多糖对成牙本质细胞细胞连接影响的体外研究[J].牙体牙髓牙周病学杂志,2014,24(4): 192-195. [25] Wang S, Cai J, Zhang S, et al. Loss of polarity protein Par3, via transcription factor Snail, promotes bladder cancer metastasis[J]. Cancer Sci, 2021, 112(7): 2625-2641. [26] Schumann M, Gnzel D, Buergel N, et al. Cell polarity-determining proteins Par-3 and PP-1 are involved in epithelial tight junction defects in coeliac disease[J]. Gut, 2012, 61(2):220-228. [27] Izawa Y, Gu Y, Osada T, et al. β1-integrin-matrix interactions modulate cerebral microvessel endothelial cell tight junction expression and permeability[J]. J Cereb Blood Flow Metab, 2018, 38(4): 641-658. [28] Nito M, Takekoshi S, Kitatani K, et al. Par3 and ZO-1 membrane clustering is an indicator of poor prognosis in lung squamous cell carcinoma[J]. Tokai J Exp Clin Med, 2021, 46(2): 110-117. [29] Zheng J, Jiao S, Na L, et al. Defective expression of polarity protein Par3 promotes cervical tumorigenesis and metastasis[J]. Eur J Gynaecol Oncol, 2017, 38 (2): 199-206. [30] Zhao Y, Yao D, Li Y, et al. Loss of polarity protein Par3 is mediated by transcription factor Sp1 in breast cancer[J]. Biochem Biophys Res Commun, 2021, 561: 172-179. [31] Peng J, Li X, Zhang Y, et al. Par3/integrin β1 regulates embryo adhesion via changing endometrial luminal epithelium polarity[J]. Biol Reprod, 2021, 104(6):1228-1238. [32] Etienne-Manneville S, Hall A. Integrin-mediated activation of Cdc42 controls cell polarity in migrating astrocytes through PKCzeta[J]. Cell, 2001, 106(4): 489-498. [33] Schneeberger E, Lynch R. The tight junction: a multifunctional complex[J]. Am J Physiol Cell Physiol, 2004, 286(6): C1213-C1228. [34] Spadaro D, Tapia R, Jond L, et al. ZO proteins redundantly regulate the transcription factor DbpA/ZONAB[J]. J Biol Chem, 2014, 289(32): 22500-22511. [35] Sourisseau T, Georgiadis A, Tsapara A, et al. Regulation of PCNA and cyclin D1 expression and epithelial morphogenesis by the ZO-1-regulated transcription factor ZONAB/DbpA[J]. Mol Cell Biol, 2006, 26(6):2387-2398. |