4.7 Article

Effects of HMGB1 on Tricellular Tight Junctions via TGF-β Signaling in Human Nasal Epithelial Cells

期刊

出版社

MDPI
DOI: 10.3390/ijms22168390

关键词

human nasal epithelial cells; hTERT; 2.5D matrigel culture; tight junctions; angulin-1/LSR; HMGB1; OSM; p63; TGF-beta type I receptor inhibitor

资金

  1. Ministry of Education, Culture, Sports, Science, and Technology
  2. Ministry of Health, Labour and Welfare of Japan [19K1877, 19K07464, 18K09350]
  3. Grants-in-Aid for Scientific Research [18K09350, 19K07464] Funding Source: KAKEN

向作者/读者索取更多资源

This study revealed that HMGB1 impacts the barrier function of human nasal epithelial cells through TGF-beta signaling, with angulin-1/LSR playing a key role in this process. Manipulation of angulin-1/LSR led to changes in epithelial barrier function.
The airway epithelium of the human nasal mucosa acts as a physical barrier that protects against inhaled substances and pathogens via bicellular and tricellular tight junctions (bTJs and tTJs) including claudins, angulin-1/LSR and tricellulin. High mobility group box-1 (HMGB1) increased by TGF-beta 1 is involved in the induction of nasal inflammation and injury in patients with allergic rhinitis, chronic rhinosinusitis, and eosinophilic chronic rhinosinusitis. However, the detailed mechanisms by which this occurs remain unknown. In the present study, to investigate how HMGB1 affects the barrier of normal human nasal epithelial cells, 2D and 2.5D Matrigel culture of primary cultured human nasal epithelial cells were pretreated with TGF-beta type I receptor kinase inhibitor EW-7197 before treatment with HMGB1. Knockdown of angulin-1/LSR downregulated the epithelial barrier. Treatment with EW-7197 decreased angulin-1/LSR and concentrated the expression at tTJs from bTJs and increased the epithelial barrier. Treatment with a binder to angulin-1/LSR angubindin-1 decreased angulin-1/LSR and the epithelial barrier. Treatment with HMGB1 decreased angulin-1/LSR and the epithelial barrier. In 2.5D Matrigel culture, treatment with HMGB1 induced permeability of FITC-dextran (FD-4) into the lumen. Pretreatment with EW-7197 prevented the effects of HMGB1. HMGB1 disrupted the angulin-1/LSR-dependent epithelial permeability barriers of HNECs via TGF- signaling in HNECs.

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