1. miRNAs role in cervical cancer pathogenesis and targeted therapy: Signaling pathways interplay
    Ahmed S. Doghish et al, 2023, Pathology - Research and Practice CrossRef
  2. Approaches Toward Targeting Matrix Metalloproteases for Prognosis and Therapies in Gynecological Cancer: MicroRNAs as a Molecular Driver
    Anuradha Pandit et al, 2022, Frontiers in Oncology CrossRef
  3. Small Non-Coding-RNA in Gynecological Malignancies
    Shailendra Kumar Dhar Dwivedi et al, 2021, Cancers CrossRef
  4. miR‐381‐3p restrains cervical cancer progression by downregulating FGF7
    Anquan Shang et al, 2019, Journal of Cellular Biochemistry CrossRef
  5. miR-106a Regulates Cell Proliferation and Autophagy by Targeting LKB1 in HPV-16–Associated Cervical Cancer
    Xiujie Cui et al, 2020, Molecular Cancer Research CrossRef
  6. MicroRNA: Exploring Their Multifaceted Role in Cancer
    Nadia M. Hamdy et al, 2024, CrossRef
  7. S100A9 promotes the proliferation and migration of cervical cancer cells by inducing epithelial‑mesenchymal transition and activating the Wnt/β‑catenin pathway
    He Zha et al, 2019, International Journal of Oncology CrossRef
  8. Exosomes rewire the cartilage microenvironment in osteoarthritis: from intercellular communication to therapeutic strategies
    Yuangang Wu et al, 2022, International Journal of Oral Science CrossRef
  9. HOTAIRM1 suppresses cell proliferation and invasion in ovarian cancer through facilitating ARHGAP24 expression by sponging miR-106a-5p
    Hongtu Chao et al, 2020, Life Sciences CrossRef
  10. Clinical Value of Serum miR-106a in the Diagnosis and Prognosis of Human Papillomavirus-Positive Cervical Cancer
    Xiaoyan Rao et al, 2023, Intervirology CrossRef
  11. Overview of miR-106a Regulatory Roles: from Cancer to Aging
    Maryam Daneshpour et al, 2023, Bioengineering CrossRef
  12. TOP2A Promotes Cell Migration, Invasion and Epithelial–Mesenchymal Transition in Cervical Cancer via Activating the PI3K/AKT Signaling


    Bi Wang et al, 2020, Cancer Management and Research CrossRef
  13. miR-23b-3p, miR-124-3p and miR-218-5p Synergistic or Additive Effects on Cellular Processes That Modulate Cervical Cancer Progression? A Molecular Balance That Needs Attention
    Manuel Joaquín Romero-López et al, 2022, International Journal of Molecular Sciences CrossRef
  14. LINC00116 enhances cervical cancer tumorigenesis through miR‐106a/c‐Jun pathway
    Yiqing Lai et al, 2020, Journal of Cellular Biochemistry CrossRef
  15. Clinical significance of tumor miR-21, miR-221, miR-143, and miR-106a as biomarkers in patients with osteosarcoma
    Hui Zhao et al, 2019, The International Journal of Biological Markers CrossRef
  16. Human Papillomavirus Infections, Cervical Cancer and MicroRNAs: An Overview and Implications for Public Health
    Michela Lucia Sammarco et al, 2020, MicroRNA CrossRef
  17. A comprehensive review on the functional role of miRNA clusters in cervical cancer
    Srinath Sriharikrishnaa et al, 2024, Epigenomics CrossRef
  18. Comprehensive Investigation of miRNome Identifies Novel Candidate miRNA-mRNA Interactions Implicated in T-Cell Acute Lymphoblastic Leukemia
    Małgorzata Dawidowska et al, 2019, Neoplasia CrossRef
  19. Emerging Roles and Potential Applications of Non-Coding RNAs in Cervical Cancer
    Deepak Parashar et al, 2022, Genes CrossRef
  20. Role of miRNAs in cervical cancer: A comprehensive novel approach from pathogenesis to therapy
    Mohammad Abbas et al, 2021, Journal of Gynecology Obstetrics and Human Reproduction CrossRef