1. MicroRNAs in gynecological cancers: Small molecules with big implications
    Sanjeev K. Srivastava et al, 2017, Cancer Letters CrossRef
  2. MicroRNA-25 suppresses proliferation, migration, and invasion of osteosarcoma by targeting SOX4
    Bingpeng Chen et al, 2017, Tumour Biol. CrossRef
  3. miR-138 inhibits gastric cancer growth by suppressing SOX4
    Lei Pang et al, 2017 CrossRef
  4. GATA1 activated lncRNA (Galont) promotes anoxia/reoxygenation-induced autophagy and cell death in cardiomyocytes by sponging miR-338
    Guotian Yin et al, 2018, J. Cell. Biochem. CrossRef
  5. SOX4: Joining the Master Regulators of Epithelial-to-Mesenchymal Transition?
    Ana Rita Lourenço et al, 2017, Trends in Cancer CrossRef
  6. miR-338-3p functions as a tumor suppressor in gastric cancer by targeting PTP1B
    Feng Sun et al, 2018, Cell Death Dis CrossRef
  7. Coagulation Factor X Regulated by CASC2c Recruited Macrophages and Induced M2 Polarization in Glioblastoma Multiforme
    Yan Zhang et al, 2018, Front. Immunol. CrossRef
  8. miR-338-3p Is Regulated by Estrogens through GPER in Breast Cancer Cells and Cancer-Associated Fibroblasts (CAFs)
    Adele Vivacqua et al, 2018, Cells CrossRef
  9. The regulation of Neuropilin 1 expression by miR-338-3p promotes non-small cell lung cancer via changes in EGFR signaling.
    Zongli Ding et al, 2019, Mol Carcinog CrossRef
  10. Emerging Role of SOX Proteins in Breast Cancer Development and Maintenance
    Gaurav A. Mehta et al, 2019, J Mammary Gland Biol Neoplasia CrossRef
  11. The EGFR/miR-338-3p/EYA2 axis controls breast tumor growth and lung metastasis
    Yingchun Liang et al, 2017, Cell Death Dis CrossRef
  12. MicroRNA-130a modulates a radiosensitivity of rectal cancer by targeting SOX4
    Huyen Trang Ha Thi et al, 2019, Neoplasia CrossRef
  13. MiR-212/132 is epigenetically downregulated by SOX4/EZH2-H3K27me3 feedback loop in ovarian cancer cells
    Lin Lin et al, 2016, Tumor Biol. CrossRef
  14. MicroRNA and Transcription Factor Gene Regulatory Network Analysis Reveals Key Regulatory Elements Associated with Prostate Cancer Progression
    Mehdi Sadeghi et al, 2016, PLoS ONE CrossRef
  15. Propofol Suppresses Esophageal Squamous Cell Carcinoma Cell Migration and Invasion by Down-Regulation of Sex-Determining Region Y-box 4 (SOX4)
    Chun-li Zhou et al, 2017, Med Sci Monit CrossRef
  16. The role of Notch signaling in gastric carcinoma: molecular pathogenesis and novel therapeutic targets
    Yizheng Yao et al, 2017, Oncotarget CrossRef
  17. MicroRNA-320 inhibits cell proliferation and invasion in breast cancer cells by targeting SOX4.
    Jun-Wen Bai et al, 0 CrossRef
  18. Increased expression of microRNA-338-3p contributes to production of Dsg3 antibody in pemphigus vulgaris patients
    Qingxiu Liu et al, 2018, Mol Med Report CrossRef
  19. MicroRNA‑338‑3p targets SOX4 and inhibits cell proliferation and invasion of renal cell carcinoma
    Zhigang Tong et al, 2017, Exp Ther Med CrossRef
  20. miR‑140‑5p inhibits cell proliferation and invasion in colorectal carcinoma by targeting SOX4
    Zhongsong Zhao et al, 2018, Oncol Lett CrossRef
  21. The tumor suppressor role of microRNA‑338‑3p in renal cell carcinoma
    Yidong Huang et al, 2018, Oncol Lett CrossRef
  22. Downregulation of SBF2-AS1 functions as a tumor suppressor in clear cell renal cell carcinoma by inhibiting miR-338-3p-targeted ETS1.
    Xiuqin Yang et al, 2021, Cancer Gene Ther CrossRef
  23. Circ_0007841 promotes the progression of multiple myeloma through targeting miR-338-3p/BRD4 signaling cascade
    Yan Wang et al, 2020, Cancer Cell Int CrossRef
  24. CircHIPK3 Promotes Metastasis of Gastric Cancer via miR-653-5p/miR-338-3p-NRP1 Axis Under a Long-Term Hypoxic Microenvironment
    Yue Jin et al, 2020, Front. Oncol. CrossRef
  25. Cancer and SOX proteins: New insight into their role in ovarian cancer progression/inhibition
    Milad Ashrafizadeh et al, 2020, Pharmacological Research CrossRef
  26. FOXO3a-driven miRNA signatures suppresses VEGF-A/NRP1 signaling and breast cancer metastasis
    Ying Song et al, 2020, Oncogene CrossRef
  27. GPER1 and microRNA: Two Players in Breast Cancer Progression
    Adele Vivacqua, 2020, IJMS CrossRef
  28. The role of microRNA-338-3p in cancer: growth, invasion, chemoresistance, and mediators
    Sepideh Mirzaei et al, 2021, Life Sciences CrossRef
  29. Interplay between p53 and non-coding RNAs in the regulation of EMT in breast cancer.
    Sergey Parfenyev et al, 2021, Cell Death Dis CrossRef
  30. The role of tumor suppressor short non-coding RNAs on breast cancer
    Shokooh Salimimoghadam et al, 2021, Critical Reviews in Oncology/Hematology CrossRef
  31. The role of SOX family transcription factors in gastric cancer
    Asal Jalal Abadi et al, 2021, International Journal of Biological Macromolecules CrossRef
  32. Molecular interactions of miR-338 during tumor progression and metastasis
    Meysam Moghbeli, 2021, Cell Mol Biol Lett CrossRef
  33. hsa_circ_0001018 promotes papillary thyroid cancer by facilitating cell survival, invasion, G1/S cell cycle progression, and repressing cell apoptosis via crosstalk with miR-338-3p and SOX4
    Qiang Luo et al, 2021, Molecular Therapy - Nucleic Acids CrossRef
  34. A minor review of microRNA-338 exploring the insights of its function in tumorigenesis
    Qian Yi et al, 2021, Biomedicine & Pharmacotherapy CrossRef
  35. MicroRNA-338-3p inhibits proliferation and promotes apoptosis of multiple myeloma cells through targeting Cyclin-dependent kinase 4.
    Yang Cao et al, 0 CrossRef
  36. Identification of a novel lncRNA‐miRNA‐mRNA competing endogenous RNA network associated with prognosis of breast cancer
    Xiaohui Wan et al, 2022, J Biochem & Molecular Tox CrossRef
  37. TGFβ-induced circLTBP2 predicts a poor prognosis in intrahepatic cholangiocarcinoma and mediates gemcitabine resistance by sponging miR-338-3p
    Corentin Louis et al, 2023, JHEP Reports CrossRef
  38. Mir-338-3p targeting THBS1 attenuates glioma progression by inhibiting the PI3K/Akt pathway
    Lianglei Jiang et al, 2024, Biol Direct CrossRef