1. The Bone Microenvironment Soil in Prostate Cancer Metastasis: An miRNA Approach
    Anne Natalie Prigol et al, 2023, Cancers CrossRef
  2. miR‐30a inhibits androgen‐independent growth of prostate cancer via targeting MYBL2, FOXD1, and SOX4
    Xinjun Li et al, 2020, The Prostate CrossRef
  3. miR‐103a‐2‐5p/miR‐30c‐1‐3p inhibits the progression of prostate cancer resistance to androgen ablation therapy via targeting androgen receptor variant 7
    Wenjie Chen et al, 2019, Journal of Cellular Biochemistry CrossRef
  4. MicroRNA-211 expression is down-regulated and associated with poor prognosis in human glioma
    Jun Zhang et al, 2017, Journal of Neuro-Oncology CrossRef
  5. MiR-182 promotes prostate cancer progression through activating Wnt/β-catenin signal pathway
    Dawei Wang et al, 2018, Biomedicine & Pharmacotherapy CrossRef
  6. Role of microRNAs in the development, prognosis and therapeutic response of patients with prostate cancer
    Soudeh Ghafouri-Fard et al, 2020, Gene CrossRef
  7. Micrornas in prostate cancer: an overview
    Daniela Vanacore et al, 2017, Oncotarget CrossRef
  8. Chromosome 8
    Muthu Vijai Bharat Vairamani et al, 2023, Cancer Genes CrossRef
  9. Prostate Carcinogenesis: Insights in Relation to Epigenetics and Inflammation
    Mirazkar D. Pandareesh et al, 2021, Endocrine, Metabolic & Immune Disorders - Drug Targets CrossRef
  10. Evaluation of the Anticancer Activity of pH-Sensitive Polyketal Nanoparticles for Acute Myeloid Leukemia
    Pratheppa Rajagopal et al, 2021, Molecular Pharmaceutics CrossRef
  11. Curcumin inhibits prostate cancer progression by regulating the miR‑30a‑5p/PCLAF axis
    Liang Pan et al, 2021, Experimental and Therapeutic Medicine CrossRef
  12. Cancer stem cells, signalling pathways and chemopreventive effects of phytochemicals in androgen-regulated cancers
    Saikanth Varma et al, 2024, Cancer Stem Cells and Signaling Pathways CrossRef
  13. SOCS3 Is Upregulated and Targeted by miR30a-5p in Allergic Rhinitis
    Chun Yuan Zhao et al, 2018, International Archives of Allergy and Immunology CrossRef
  14. CARM1 promotes non-small cell lung cancer progression through upregulating CCNE2 expression
    Deqin Wu et al, 2020, Aging CrossRef
  15. A novel avian intestinal epithelial cell line: its characterization and exploration as an in vitro infection culture model for Eimeria species
    Huifang Chen et al, 2024, Parasites & Vectors CrossRef
  16. The Role of MicroRNAs in Oncogenesis and Progression of Prostate Cancer
    Won Tae Kim et al, 2018, The Korean Journal of Urological Oncology CrossRef
  17. Prostate cancer and microRNAs: New insights into apoptosis
    Jitendra Gupta et al, 2023, Pathology - Research and Practice CrossRef
  18. Vascular endothelial cell-derived exosomal miR-30a-5p inhibits lung adenocarcinoma malignant progression by targeting CCNE2
    Kaiyi Tao et al, 2021, Carcinogenesis CrossRef
  19. A γ-Secretase Inhibitor Attenuates Cell Cycle Progression and Invasion in Human Oral Squamous Cell Carcinoma: An In Vitro Study
    Sarai Pongjantarasatian et al, 2022, International Journal of Molecular Sciences CrossRef
  20. miR-383 Inhibited the Cell Cycle Progression of Gastric Cancer Cells via Targeting Cyclin E2
    Chenyu Zhu et al, 2019, DNA and Cell Biology CrossRef
  21. RETRACTED: Knockdown of Long Non-Coding RNA KCNQ1OT1 Restrained Glioma Cells’ Malignancy by Activating miR-370/CCNE2 Axis
    Wei Gong et al, 2017, Frontiers in Cellular Neuroscience CrossRef
  22. NCAPD3 exerts tumor-promoting effects in prostatic cancer via dual impact on miR-30a-5p by STAT3-MALAT1 and MYC
    Yi Zhang et al, 2024, Cell Death Discovery CrossRef
  23. Nicotine-upregulated miR-30a arrests cell cycle in G1 phase by directly targeting CCNE2 in human periodontal ligament cells
    Lizheng Wu et al, 2020, Biochemistry and Cell Biology CrossRef