1. A genome-integrated massively parallel reporter assay reveals DNA sequence determinants ofcis-regulatory activity in neural cells
    Brett B. Maricque et al, 2016, Nucleic Acids Research CrossRef
  2. A composite network of conserved and tissue specific gene interactions reveals possible genetic interactions in glioma
    André Voigt et al, 2017, PLOS Computational Biology CrossRef
  3. GDNFOS1 knockdown decreases the invasion and viability of glioblastoma cells
    Shiyi Wang et al, 2019, Experimental and Therapeutic Medicine CrossRef
  4. Extracellular Vesicles Loaded miRNAs as Potential Modulators Shared Between Glioblastoma, and Parkinson’s and Alzheimer’s Diseases
    Laura Thomas et al, 2020, Frontiers in Cellular Neuroscience CrossRef
  5. Comparison of Oncogenes, Tumor Suppressors, and MicroRNAs Between Schizophrenia and Glioma: The Balance of Power
    James S. Brown, 2023, Neuroscience & Biobehavioral Reviews CrossRef
  6. Regulation of connexin 43 and microRNA expression via β2-adrenoceptor signaling in 1321N1 astrocytoma cells
    MOJTABA KHAKSARIAN et al, 2015, Molecular Medicine Reports CrossRef
  7. The Therapeutic Role of MicroRNAs in Human Gliomas
    Sanila H. Sarkar et al, 2014, MicroRNA Targeted Cancer Therapy CrossRef
  8. Apigenin inhibits glioma cell growth through promoting microRNA-16 and suppression of BCL-2 and nuclear factor-κB/MMP-9
    Xin-Jun Chen et al, 2016, Molecular Medicine Reports CrossRef
  9. miR-24-3p and miR-27a-3p promote cell proliferation in glioma cells via cooperative regulation of MXI1
    WEIYI XU et al, 2013, International Journal of Oncology CrossRef
  10. miR-27a suppresses the clonogenic growth and migration of human glioblastoma multiforme cells by targeting BTG2
    WEI-QING LI et al, 2015, International Journal of Oncology CrossRef
  11. Bioinformatics analysis identifies miR-221 as a core regulator in hepatocellular carcinoma and its silencing suppresses tumor properties
    XING-XING HE et al, 2014, Oncology Reports CrossRef
  12. Improving miRNA Delivery by Optimizing miRNA Expression Cassettes in Diverse Virus Vectors
    Elena Herrera-Carrillo et al, 2017, Human Gene Therapy Methods CrossRef
  13. Emerging Roles of microRNA in Modulating Cell‐Death Processes in Malignant Glioma
    Silvia Palumbo et al, 2014, Journal of Cellular Physiology CrossRef
  14. miR-218 inhibits the proliferation of glioma U87 cells through the inactivation of the CDK6/cyclin D1/p21Cip1/Waf1 pathway
    GU JIAN JUN et al, 2015, Oncology Letters CrossRef
  15. MicroRNAs in T Cell-Immunotherapy
    Sara G. Dosil et al, 2022, International Journal of Molecular Sciences CrossRef
  16. Long noncoding RNA SPRY4-IT1 regulates intestinal epithelial barrier function by modulating the expression levels of tight junction proteins
    Lan Xiao et al, 2016, Molecular Biology of the Cell CrossRef
  17. MicroRNAs in pancreatic malignancy: Progress and promises
    Sanjeev K. Srivastava et al, 2014, Cancer Letters CrossRef
  18. Synergistic regulatory effects of microRNAs on brain glioma cells
    Yilei Zhao et al, 2017, Molecular Medicine Reports CrossRef
  19. MicroRNA: a connecting road between apoptosis and cholesterol metabolism
    Yogita K. Adlakha et al, 2016, Tumor Biology CrossRef
  20. Cancer Genetics at a Glance: The Comprehensive Insights
    Asaad Azarnezhad et al, 2017, Cancer Genetics and Psychotherapy CrossRef