1. The effects of dietary polyunsaturated fatty acids on miR-126 promoter DNA methylation status and VEGF protein expression in the colorectal cancer cells
    Mostafa Moradi Sarabi et al, 2018, Genes & Nutrition CrossRef
  2. lncRNA HOTAIR promotes gastric cancer proliferation and metastasis via targeting miR‐126 to active CXCR4 and RhoA signaling pathway
    Jun Xiao et al, 2019, Cancer Medicine CrossRef
  3. microRNAs: Small molecules with a large impact on colorectal cancer
    Sahand Moazzendizaji et al, 2022, Biotechnology and Applied Biochemistry CrossRef
  4. Molecular features of doxorubicin-resistance development in colorectal cancer CX-1 cell line
    Raimonda Kubiliūtė et al, 2016, Medicina CrossRef
  5. Roles of NF-κB Signaling in the Regulation of miRNAs Impacting on Inflammation in Cancer
    Georgios Markopoulos et al, 2018, Biomedicines CrossRef
  6. Let‑7d inhibits colorectal cancer cell proliferation through the CST1/p65 pathway
    Jie Jiang et al, 2018, International Journal of Oncology CrossRef
  7. Longitudinal monitoring reveals dynamic changes in circulating tumor cells (CTCs) and CTC-associated miRNAs in response to chemotherapy in metastatic colorectal cancer patients
    Karen Tan et al, 2018, Cancer Letters CrossRef
  8. miRNAs: A potentially valuable tool in pesticide toxicology assessment-current experimental and epidemiological data review
    Rafael Valencia-Quintana et al, 2022, Chemosphere CrossRef
  9. NEDD9 Inhibition by miR-25-5p Activation Is Critically Involved in Co-Treatment of Melatonin- and Pterostilbene-Induced Apoptosis in Colorectal Cancer Cells
    Ji Hoon Jung et al, 2019, Cancers CrossRef
  10. Circulating microRNA Related to Cardiometabolic Risk Factors for Metabolic Syndrome: A Systematic Review
    Paula N. Brandão-Lima et al, 2022, Metabolites CrossRef
  11. Dysregulated microRNAs participate in the crosstalk between colorectal cancer and atrial fibrillation
    Jiatong Ding et al, 2023, Human Cell CrossRef
  12. Continuous biomarker monitoring by particle mobility sensing with single molecule resolution
    Emiel W. A. Visser et al, 2018, Nature Communications CrossRef
  13. Long non-coding RNA NEAT1 regulates endothelial functions in subclinical hypothyroidism through miR-126/TRAF7 pathway
    Li Wang et al, 2021, Human Cell CrossRef
  14. Role of EGFL7 in human cancers: A review
    Cristiane de Oliveira et al, 2023, Journal of Cellular Physiology CrossRef
  15. Dual role of microRNAs in cancer metastasis
    Mahdi Alaee et al, 2023, Human Gene CrossRef
  16. Screening and validation of differentially expressed microRNAs and target genes in hypertensive mice induced by cytomegalovirus infection
    YunZhong Shi et al, 2020, Bioscience Reports CrossRef
  17. Linc01094 Accelerates the Growth and Metastatic-Related Traits of Glioblastoma by Sponging miR-126-5p


    Xin Xing Li et al, 2020, OncoTargets and Therapy CrossRef
  18. Potential Therapeutic Effects of Melatonin Mediate via miRNAs in Cancer
    Pirouz Pourmohammad et al, 2022, Biochemical Genetics CrossRef
  19. Bone Marrow Mesenchymal Stem Cell-Derived Exosomal miR-126 Inhibits Colon Cancer by Targeting PLEXIN-B2
    Zongfeng Liu et al, 2023, Journal of Biomedical Nanotechnology CrossRef
  20. Non-coding RNAs, the Trojan horse in two-way communication between tumor and stroma in colorectal and hepatocellular carcinoma
    Cristina- Sorina Cătană et al, 2017, Oncotarget CrossRef
  21. A cellular regulator of the niche: telocyte
    Sena Babadag et al, 2023, Tissue Barriers CrossRef