1. MicroRNA dysregulation interplay with childhood abdominal tumors
    Karina Bezerra Salomão et al, 2019, Cancer and Metastasis Reviews CrossRef
  2. MicroRNA-363-3p is downregulated in hepatocellular carcinoma and inhibits tumorigenesis by directly targeting specificity protein 1
    Jie Ying et al, 2017, Molecular Medicine Reports CrossRef
  3. Involvement of p38 MAPK pathway in benzo(a)pyrene-induced human hepatoma cell migration and invasion
    Yadong Wang et al, 2019, Environmental Science and Pollution Research CrossRef
  4. MicroRNA-204 suppressed proliferation and motility capacity of human hepatocellular carcinoma via directly targeting zinc finger E-box binding homeobox 2
    Bin Hu et al, 2017, Oncology Letters CrossRef
  5. MicroRNA-592 targets IGF-1R to suppress cellular proliferation, migration and invasion in hepatocellular carcinoma
    Wenyao Wang et al, 2017, Oncology Letters CrossRef
  6. miRNA-708 functions as a tumour suppressor in hepatocellular carcinoma by targeting SMAD3
    Qi Li et al, 2017, Oncology Letters CrossRef
  7. Mechanisms of Invasion and Metastasis: Tissue Invasion
    Arthur Zimmermann, 2016, Tumors and Tumor-Like Lesions of the Hepatobiliary Tract CrossRef
  8. MicroRNA-30a suppresses tumor progression by blocking Ras/Raf/MEK/ERK signaling pathway in hepatocellular carcinoma
    Kun Zhou et al, 2017, Biomedicine & Pharmacotherapy CrossRef
  9. Prospect of Circular RNA in Hepatocellular Carcinoma: A Novel Potential Biomarker and Therapeutic Target
    Renzhi Yao et al, 2018, Frontiers in Oncology CrossRef
  10. MicroRNA-183 functions as the tumor suppressor via inhibiting cellular invasion and metastasis by targeting MMP-9 in cervical cancer
    Dongmei Fan et al, 2016, Gynecologic Oncology CrossRef
  11. MicroRNA-335 is downregulated in bladder cancer and inhibits cell growth, migration and invasion via targeting ROCK1
    DEYAO WU et al, 2016, Molecular Medicine Reports CrossRef
  12. MicroRNA-296-5p downregulated AKT2 to inhibit hepatocellular carcinoma cell proliferation, migration and invasion
    Xiaojun Ma et al, 2017, Molecular Medicine Reports CrossRef
  13. MicroRNA-133a inhibits the malignant behavior of glioma via downregulation of matrix metallopeptidase 9
    JIANHONG WANG et al, 2016, Molecular Medicine Reports CrossRef
  14. MicroRNA-22 is downregulated in clear cell renal cell carcinoma, and inhibits cell growth, migration and invasion by targeting PTEN
    WENXING FAN et al, 2016, Molecular Medicine Reports CrossRef
  15. Mechanisms of Invasion and Metastasis: Cell Migration and Chemotaxis
    Arthur Zimmermann, 2016, Tumors and Tumor-Like Lesions of the Hepatobiliary Tract CrossRef
  16. MicroRNA‑205 is downregulated in hepatocellular carcinoma and inhibits cell growth and metastasis via directly targeting vascular endothelial growth factor A
    Xuya Zhao et al, 2018, Oncology Letters CrossRef
  17. Mechanisms of Invasion and Metastasis: Tissue Invasion
    Arthur Zimmermann, 2017, Tumors and Tumor-Like Lesions of the Hepatobiliary Tract CrossRef
  18. The Epigenetic Regulation of Microenvironment in Hepatocellular Carcinoma
    Fang Wang et al, 2021, Frontiers in Oncology CrossRef
  19. A novel PEC-EC dual-mode biosensing platform for dual target detection of miRNA-133a and cTnI
    Hejie Zheng et al, 2024, Chinese Chemical Letters CrossRef
  20. MetastamiRs: A promising choice for antihepatocellular carcinoma nucleic acid drug development
    Liangcai Wu et al, 2017, Hepatology Research CrossRef
  21. The Emerging Role of Circ-SHPRH in Cancer
    Xinyue Ju et al, 2021, OncoTargets and Therapy CrossRef
  22. Crosstalk of miRNAs with signaling networks in bladder cancer progression: Therapeutic, diagnostic and prognostic functions
    Mehrdad Hashemi et al, 2022, Pharmacological Research CrossRef
  23. Mechanisms of Invasion and Metastasis: Cell Migration and Chemotaxis
    Arthur Zimmermann, 2017, Tumors and Tumor-Like Lesions of the Hepatobiliary Tract CrossRef
  24. MicroRNA‑138 targets SP1 to inhibit the proliferation, migration and invasion of hepatocellular carcinoma cells
    Chongzhong Liu et al, 2017, Oncology Letters CrossRef