1. High-level cytoplasmic claudin 3 expression is an independent predictor of poor survival in triple-negative breast cancer
    Anniina Jääskeläinen et al, 2018, BMC Cancer CrossRef
  2. IRF2‑induced Claudin‑7 suppresses cell proliferation, invasion and migration of oral squamous cell carcinoma
    Xin Li et al, 2021, Experimental and Therapeutic Medicine CrossRef
  3. Biomarkers in diagnosis and therapy of oral squamous cell carcinoma: A review of the literature
    Sebastian Blatt et al, 2017, Journal of Cranio-Maxillofacial Surgery CrossRef
  4. Computational analysis identifies invasion-associated genes in pituitary adenomas
    CHANGJUN CAO et al, 2015, Molecular Medicine Reports CrossRef
  5. Loss of intercellular bridges in the depth of invasion measurement area is a novel negative prognostic factor for oral squamous cell carcinoma: A retrospective study
    Kunio Yoshizawa et al, 2022, Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology CrossRef
  6. TNF-α-induced miR-450a mediates TMEM182 expression to promote oral squamous cell carcinoma motility
    En-Wei Hsing et al, 2019, PLOS ONE CrossRef
  7. Overexpression of the cell adhesion molecule claudin-9 is associated with invasion in pituitary oncocytomas
    Lichuan Hong et al, 2014, Human Pathology CrossRef
  8. Emerging Roles of Claudins in Human Cancer
    Mi Kwon, 2013, International Journal of Molecular Sciences CrossRef
  9. Claudin-7 expression induces mesenchymal to epithelial transformation (MET) to inhibit colon tumorigenesis
    A A Bhat et al, 2015, Oncogene CrossRef
  10. Clinical Significance of Claudin Expression in Oral Squamous Cell Carcinoma
    Tatjana Zejc et al, 2022, International Journal of Molecular Sciences CrossRef
  11. High expression of MARVELD3 as a potential prognostic biomarker for oral squamous cell carcinoma
    Ke Huang et al, 2022, Frontiers in Genetics CrossRef
  12. Intestinal Barrier, Claudins and Mycotoxins
    Marta Justyna Kozieł et al, 2021, Toxins CrossRef
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    Yujiro Kimura et al, 2022, Clinical and Experimental Dental Research CrossRef
  14. Integrative analyses of transcriptome sequencing identify novel functional lncRNAs in esophageal squamous cell carcinoma
    C-Q Li et al, 2017, Oncogenesis CrossRef
  15. Tight junction protein CLDN17 serves as a tumor suppressor to reduce the invasion and migration of oral cancer cells by inhibiting epithelial-mesenchymal transition
    Ya-Ni Xu et al, 2022, Archives of Oral Biology CrossRef
  16. Automatic discrimination of Yamamoto-Kohama classification by machine learning approach for invasive pattern of oral squamous cell carcinoma using digital microscopic images: a retrospective study
    Kunio Yoshizawa et al, 2022, Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology CrossRef
  17. Helicobacter pyloritargets cancer-associated apical-junctional constituents in gastroids and gastric epithelial cells
    Lydia E Wroblewski et al, 2015, Gut CrossRef
  18. Dysregulated claudin expression significantly effect breast cancer disease progression
    MuhammadFaraz Arshad Malik et al, 2022, Journal of Cancer Research and Therapeutics CrossRef
  19. The Prognostic Role of Claudins in Head and Neck Squamous Cell Carcinomas
    Györgyi A. Nelhűbel et al, 2014, Pathology & Oncology Research CrossRef