1. Aquaporin 3 maintains the stemness of CD133+ hepatocellular carcinoma cells by activating STAT3
    Yawei Wang et al, 2019, Cell Death & Disease CrossRef
  2. Aquaporin-3 in the epidermis: more than skin deep
    Wendy B. Bollag et al, 2020, American Journal of Physiology-Cell Physiology CrossRef
  3. HIF1α/PLD2 axis linked to glycolysis induces T-cell immunity in oral lichen planus
    Fang Wang et al, 2020, Biochimica et Biophysica Acta (BBA) - General Subjects CrossRef
  4. Scientific Research Directions on the Histopathology and Immunohistochemistry of the Cutaneous Squamous Cell Carcinoma: A Scientometric Study
    Iuliu Gabriel Cocuz et al, 2022, Medicina CrossRef
  5. miR‐874 directly targets AQP3 to inhibit cell proliferation, mobility and EMT in non‐small cell lung cancer
    Shuhua Wang et al, 2020, Thoracic Cancer CrossRef
  6. Molecular mechanism of aquaporin 3 (AQP3) regulating by LMP2A and its crosstalk with 4E-BP1 via ERK signaling pathway in EBV-associated gastric cancer
    Caixia Yu et al, 2022, Virus Research CrossRef
  7. Precise pathological classification of non-small cell lung adenocarcinoma and squamous carcinoma based on an integrated platform of targeted metabolome and lipidome
    Peng Cao et al, 2021, Metabolomics CrossRef
  8. A novel nitidine chloride nanoparticle overcomes the stemness of CD133+EPCAM+ Huh7 hepatocellular carcinoma cells for liver cancer therapy
    Danni Li et al, 2022, BMC Pharmacology and Toxicology CrossRef
  9. AQP3 Facilitates Proliferation and Adipogenic Differentiation of Porcine Intramuscular Adipocytes
    Xiaoyu Wang et al, 2020, Genes CrossRef
  10. Clinical value and molecular mechanism of AQGPs in different tumors
    Rui Wang et al, 2022, Medical Oncology CrossRef