1. miR-1301 promotes prostate cancer proliferation through directly targeting PPP2R2C
    Dongbin Bi et al, 2016, Biomedicine & Pharmacotherapy CrossRef
  2. Expression Profiling of microRNA From Peripheral Blood of Dairy Cows in Response to Staphylococcus aureus-Infected Mastitis
    Zhuo-Ma Luoreng et al, 2021, Frontiers in Veterinary Science CrossRef
  3. Identification of miRNAs that specifically target tumor suppressive KLF6-FL rather than oncogenic KLF6-SV1 isoform
    Wei-Cheng Liang et al, 2014, RNA Biology CrossRef
  4. Cancer Resistance Is Mediated by the Upregulation of Several Anti-Apoptotic Gene Products via the Inducible Nitric Oxide Synthase/Nitric Oxide Pathway: Therapeutic Implications
    Indy Bui et al, 2023, Antioxidants & Redox Signaling CrossRef
  5. Integrated transcriptome analysis reveals miRNA–mRNA crosstalk in laryngeal squamous cell carcinoma
    Yang Zhang et al, 2014, Genomics CrossRef
  6. miR-1301-3p Promotes Cell Proliferation and Facilitates Cell Cycle Progression via Targeting SIRT1 in Gastric Cancer
    Dakui Luo et al, 2021, Frontiers in Oncology CrossRef
  7. MicroRNA dysregulation interplay with childhood abdominal tumors
    Karina Bezerra Salomão et al, 2019, Cancer and Metastasis Reviews CrossRef
  8. P53-dependent miRNAs mediate nitric oxide-induced apoptosis in colonic carcinogenesis
    Weiwei Li et al, 2015, Free Radical Biology and Medicine CrossRef
  9. MicroRNAs as potential drug targets for therapeutic intervention in colorectal cancer
    Mohammad Alam Jafri et al, 2015, Expert Opinion on Therapeutic Targets CrossRef
  10. MicroRNA-1301 induces cell proliferation by downregulating ICAT expression in breast cancer
    Wei-hao Lin et al, 2016, Biomedicine & Pharmacotherapy CrossRef
  11. Identification of potential plasma biomarkers in early-stage nasopharyngeal carcinoma-derived exosomes based on RNA sequencing
    Wei Zheng et al, 2021, Cancer Cell International CrossRef
  12. MicroRNA-1301 suppresses tumor cell migration and invasion by targeting the p53/UBE4B pathway in multiple human cancer cells
    Benfan Wang et al, 2017, Cancer Letters CrossRef
  13. RETRACTED ARTICLE: miR-1301 inhibits hepatocellular carcinoma cell migration, invasion, and angiogenesis by decreasing Wnt/β-catenin signaling through targeting BCL9
    Chao Yang et al, 2017, Cell Death & Disease CrossRef
  14. Prognostic microRNAs and their potential molecular mechanism in pancreatic cancer: A study based on The Cancer Genome Atlas and bioinformatics investigation
    Liang Liang et al, 2017, Molecular Medicine Reports CrossRef
  15. LINC01433 promotes hepatocellular carcinoma progression via modulating the miR‐1301/STAT3 axis
    Haijin Huang et al, 2019, Journal of Cellular Physiology CrossRef
  16. TheKLF6Super Enhancer Modulates Cell ProliferationviaMiR-1301 in Human Hepatoma Cells
    KumChol Ri et al, 2019, MicroRNA CrossRef
  17. Placental miR-1301 is dysregulated in early-onset preeclampsia and inversely correlated with maternal circulating leptin
    M.S. Weedon-Fekjær et al, 2014, Placenta CrossRef
  18. DNA damage response revisited: the p53 family and its regulators provide endless cancer therapy opportunities
    Yasser Abuetabh et al, 2022, Experimental & Molecular Medicine CrossRef
  19. The Network of Non-coding RNAs in Cancer Drug Resistance
    Fabio Corrà et al, 2018, Frontiers in Oncology CrossRef
  20. Decreased level of miR-1301 promotes colorectal cancer progression via activation of STAT3 pathway
    Fangfang Yang et al, 2021, Biological Chemistry CrossRef
  21. Aberrant Expression of miR-1301 in Human Cancer
    Chenming Zhong et al, 2022, Frontiers in Oncology CrossRef
  22. Recent advances in universal TA cloning methods for use in function studies
    Shuo Yao et al, 2016, Protein Engineering Design and Selection CrossRef
  23. Characterization of the role of microRNA-517a expression in low birth weight infants
    G. Y. Song et al, 2013, Journal of Developmental Origins of Health and Disease CrossRef
  24. MicroRNA-1301 inhibits migration and invasion of osteosarcoma cells by targeting BCL9
    Lei Wang et al, 2018, Gene CrossRef