1. What Is New in the miRNA World Regarding Osteosarcoma and Chondrosarcoma?
    Gaia Palmini et al, 2017, Molecules CrossRef
  2. MicroRNA-185 inhibits proliferation, migration and invasion in human osteosarcoma MG63 cells by targeting vesicle-associated membrane protein 2
    Linjun Li et al, 2019, Gene CrossRef
  3. MicroRNA-185 inhibits cell proliferation while promoting apoptosis and autophagy through negative regulation of TGF-β1/mTOR axis and HOXC6 in nasopharyngeal carcinoma
    Jin-Zhang Cheng et al, 2018, Cancer Biomarkers CrossRef
  4. MicroRNAs and Long Non-coding RNAs in c-Met-Regulated Cancers
    Hong Zhan et al, 2020, Frontiers in Cell and Developmental Biology CrossRef
  5. Regulatory role of microRNA‑185 in the recovery process after ankle fracture
    Deping Sun et al, 2018, Experimental and Therapeutic Medicine CrossRef
  6. MiR-548-3p functions as an anti-oncogenic regulator in breast cancer
    Yafei Shi et al, 2015, Biomedicine & Pharmacotherapy CrossRef
  7. Cell-free miRNAs as non-invasive biomarkers in breast cancer: Significance in early diagnosis and metastasis prediction
    Dharambir Kashyap et al, 2020, Life Sciences CrossRef
  8. MicroRNA-185 regulates spinal cord injuries induced by thoracolumbar spine compression fractures by targeting transforming growth factor-β1
    Pengfei Zhao et al, 2017, Experimental and Therapeutic Medicine CrossRef
  9. MicroRNA-185 inhibits the growth and proliferation of osteoblasts in fracture healing by targeting PTH gene through down-regulating Wnt/β -catenin axis: In an animal experiment
    Chang-Jiang Yao et al, 2018, Biochemical and Biophysical Research Communications CrossRef
  10. Overexpression of microRNA-185 alleviates intervertebral disc degeneration through inactivation of the Wnt/β-catenin signaling pathway and downregulation of Galectin-3
    Zhennan Yun et al, 2020, Molecular Pain CrossRef
  11. Targeting c‐Met in Cancer by MicroRNAs: Potential Therapeutic Applications in Hepatocellular Carcinoma
    Zeynep F. Karagonlar et al, 2015, Drug Development Research CrossRef
  12. Tumor suppressor role of microRNA-1296 in triple-negative breast cancer
    Binh Phan et al, 2016, Oncotarget CrossRef
  13. Verification of microRNA expression in human endometrial adenocarcinoma
    Sanja Jurcevic et al, 2016, BMC Cancer CrossRef
  14. Targeting the MET pathway for potential treatment of NSCLC
    Anna Li et al, 2015, Expert Opinion on Therapeutic Targets CrossRef
  15. c‐Met inhibition enhances chemosensitivity of human ovarian cancer cells
    Jing Wang et al, 2017, Clinical and Experimental Pharmacology and Physiology CrossRef
  16. SR-BI: Linking Cholesterol and Lipoprotein Metabolism with Breast and Prostate Cancer
    Jorge L. Gutierrez-Pajares et al, 2016, Frontiers in Pharmacology CrossRef
  17. Serum miR-185 Is a Diagnostic and Prognostic Biomarker for Non-Small Cell Lung Cancer
    Jinghao Liu et al, 2020, Technology in Cancer Research & Treatment CrossRef
  18. Cigarette smoke enhances oncogene addiction to c‐MET and desensitizes EGFR‐expressing non‐small cell lung cancer to EGFR TKIs
    Chih‐Yen Tu et al, 2018, Molecular Oncology CrossRef
  19. MicroRNA-185 suppresses pancreatic cell proliferation by targeting transcriptional coactivator with PDZ‑binding motif in pancreatic cancer
    Di Xia et al, 2017, Experimental and Therapeutic Medicine CrossRef
  20. MicroRNA-185: A non-invasive diagnostic and prognostic tumor marker
    Faezeh Tolue Ghasaban et al, 2023, Process Biochemistry CrossRef
  21. RETRACTED ARTICLE: Downregulation of miR-185 and upregulation of miR-218 expression may be potential diagnostic and prognostic biomarkers of human chondrosarcoma
    Peyman Karimi Goudarzi et al, 2016, Tumor Biology CrossRef
  22. How microRNAs affect the PD-L1 and its synthetic pathway in cancer
    Gholamreza Rezaei Danbaran et al, 2020, International Immunopharmacology CrossRef
  23. A negative feedback loop between miR‐200b and the nuclear factor‐κB pathway via IKBKB/IKK‐β in breast cancer cells
    Hewen Wu et al, 2016, The FEBS Journal CrossRef
  24. Gangliosides in breast cancer: New perspectives
    S. Groux-Degroote et al, 2015, Biochemistry (Moscow) CrossRef