[1] van der Laan HP, Van den Bosch L, Schuit E, et al. Impact of radiation-induced toxicities on quality of life of patients treated for head and neck cancer [J]. Radiother Oncol, 2021, 160: 47-53. [2] Jasmer KJ, Gilman KE, Muñsoz Forti K, et al. Radiation-induced salivary gland dysfunction: Mechanisms, therapeutics and future directions [J]. J Clin Med, 2020, 9(12): 4095. [3] Zhang XM, Huang Y, Zhang K, et al. Expression patterns of tight junction proteins in porcine major salivary glands: A comparison study with human and murine glands [J]. J Anat, 2018, 233(2): 167-176. [4] Hosoi K, Yao C, Hasegawa T, et al. Dynamics of salivary gland AQP5 under normal and pathologic conditions [J]. Int J Mol Sci, 2020, 21(4): 1182. [5] Bhat AA, Syed N, Therachiyil L, et al. Claudin-1, a double-edged sword in cancer [J]. Int J Mol Sci, 2020, 21(2): 569. [6] Mei M, Xiang RL, Cong X, et al. Claudin-3 is required for modulation of paracellular permeability by TNF-α through ERK1/2/slug signaling axis in submandibular gland [J]. Cell Signal, 2015, 27(10): 1915-1927. [7] Wu YH, Yao QT, Liu SH, et al. Effect of ischemic preconditioning on radiation damage to the submandibular gland in rats [J]. Eur J Oral Sci, 2021, 129(3): e12785. [8] ukowski P, Maciejczyk M, Matczuk J, et al. Effect of N-acetylcysteine on antioxidant defense, oxidative modification, and salivary gland function in a rat model of insulin resistance [J]. Oxid Med Cell Longev, 2018, 2018: 6581970. [9] Urek MM, Bralic M, Tomac J, et al. Early and late effects of X-irradiation on submandibular gland: a morphological study in mice [J]. Arch Med Res, 2005, 36(4): 339-343. [10] Cong X, Zhang XM, Zhang Y, et al. Disruption of endothelial barrier function is linked with hyposecretion and lymphocytic infiltration in salivary glands of Sjögren's syndrome [J]. Biochim Biophys Acta Mol Basis Dis, 2018, 1864(10): 3154-3163. [11] Min SN, Wu LL, Zhang YY, et al. Disruption of tight junction structure contributes to secretory dysfunction in IgG4-related sialadenitis [J]. J Mol Histol, 2020, 51(1): 33-46. [12] Coppes R, Zeilstra L, Kampinga H, et al. Early to late sparing of radiation damage to the parotid gland by adrenergic and muscarinic receptor agonists [J]. Br J Cancer, 2001, 85(7): 1055-1063. [13] Uchida H, Ingalls MH, Maruyama EO, et al. Short-term and bystander effects of radiation on murine submandibular glands [J]. Dis Model Mech, 2022, 15(11):dmm049570. [14] Araujo M, Spadella M, Chies A, et al. Effect of low radiation dose on the expression and location of aquaporins in rat submandibular gland [J]. Tissue Cell, 2018, 53: 104-110. [15] López-Villalobos EF, Muñoz-Valle JF, Palafox-Sánchez CA, et al. Cytokine profiles and clinical characteristics in primary Sjögren's syndrome patient groups [J]. J Clin Lab Anal, 2021, 35(2): e23629. [16] Limaye A, Hall B, Zhang L, et al. Targeted TNF-α overexpression drives salivary gland inflammation [J]. J Dent Res, 2019, 98(6): 713-719. [17] Yoshimoto S, Yoshizumi J, Anzai H, et al. Inhibition of Alk signaling promotes the induction of human salivary-gland-derived organoids [J]. Dis Model Mech, 2020, 13(9): dmm045054. [18] Mei M, Qu LH, Cong X, et al. CTRP3 promotes TNF-α-induced apoptosis and barrier dysfunction in salivary epithelial cells [J]. Cell Signal, 2021, 85: 110042. [19] Kawedia JD, Nieman ML, Boivin GP, et al. Interaction between transcellular and paracellular water transport pathways through Aquaporin 5 and the tight junction complex [J]. Proc Natl Acad Sci U S A, 2007, 104(9): 3621-3626. [20] Ewert P, Aguilera S, Alliende C, et al. Disruption of tight junction structure in salivary glands from Sjögren's syndrome patients is linked to proinflammatory cytokine exposure [J]. Arthritis Rheum, 2010, 62(5): 1280-1289. [21] Zhang XM, Huang Y, Cong X, et al. Parasympathectomy increases resting secretion of the submandibular gland in minipigs in the long term [J]. J Cell Physiol, 2019, 234(6): 9515-9524. [22] Zhou J, Yu Q. Anti-IL-7 receptor-α treatment ameliorates newly established Sjögren's-like exocrinopathy in non-obese diabetic mice [J]. Biochim Biophys Acta Mol Basis Dis, 2018, 1864(7): 2438-2447. |