1. Hair follicle miRNAs: a novel biomarker for primary blast Induced-Mild traumatic brain injury
    Jing Zhang et al, 2019, Biomarkers CrossRef
  2. Methylxanthines Increase Expression of the Splicing Factor SRSF2 by Regulating Multiple Post-transcriptional Mechanisms
    Jia Shi et al, 2015, Journal of Biological Chemistry CrossRef
  3. Lung cancer incidence in patients with schizophrenia: meta-analysis
    Chuanjun Zhuo et al, 2019, British Journal of Psychiatry CrossRef
  4. Comparison of Oncogenes, Tumor Suppressors, and MicroRNAs Between Schizophrenia and Glioma: The Balance of Power
    James S. Brown, 2023, Neuroscience & Biobehavioral Reviews CrossRef
  5. Let-7, Mir-98 and Mir-181 as Biomarkers for Cancer and Schizophrenia
    Emmanouil Rizos et al, 2015, PLOS ONE CrossRef
  6. Beyond the one-locus-one-miRNA paradigm: microRNA isoforms enable deeper insights into breast cancer heterogeneity
    Aristeidis G. Telonis et al, 2015, Nucleic Acids Research CrossRef
  7. miRNAs and their role in the correlation between schizophrenia and cancer
    E. Rizos et al, 2016, Molecular Medicine Reports CrossRef
  8. The diagnostic value of serum microRNA-183 and TK1 as biomarkers for colorectal cancer diagnosis
    Xiangrong Zhu et al, 2017, Open Life Sciences CrossRef
  9. Double-Edged Sword of Tumour Suppressor Genes in Schizophrenia
    Chuanjun Zhuo et al, 2019, Frontiers in Molecular Neuroscience CrossRef
  10. Glioma in Schizophrenia: Is the Risk Higher or Lower?
    Xingchun Gao et al, 2018, Frontiers in Cellular Neuroscience CrossRef
  11. Inhibition of MicroRNA-182/183 Cluster Ameliorates Schizophrenia by Activating the Axon Guidance Pathway and Upregulating DCC
    Zhichao Wang et al, 2022, Oxidative Medicine and Cellular Longevity CrossRef
  12. Antidepressant treatment increased serum miR-183 and miR-212 levels in patients with major depressive disorder
    Chin-Chuen Lin et al, 2018, Psychiatry Research CrossRef