1. Androgen receptor‐related micro RNAs in prostate cancer and their role in antiandrogen drug resistance
    Samaneh Rezaei et al, 2020, Journal of Cellular Physiology CrossRef
  2. Diagnostic Strategies for Urologic Cancer Using Expression Analysis of Various Oncogenic Surveillance Molecules—From Non-Coding Small RNAs to Cancer-Specific Proteins
    Tomomi Fujii et al, 2022, Applied Sciences CrossRef
  3. Targeting bromodomian-containing protein 8 (BRD8): An advanced tool to interrogate BRD8
    Tingting Wu et al, 2024, European Journal of Medicinal Chemistry CrossRef
  4. Coordinated AR and microRNA regulation in prostate cancer
    Ieva Eringyte et al, 2020, Asian Journal of Urology CrossRef
  5. MiR-185 attenuates androgen receptor function in prostate cancer indirectly by targeting bromodomain containing 8 isoform 2, an androgen receptor co-activator
    Chen-Yi Jiang et al, 2016, Molecular and Cellular Endocrinology CrossRef
  6. The miR155HG/miR-185/ANXA2 loop contributes to glioblastoma growth and progression
    Weining Wu et al, 2019, Journal of Experimental & Clinical Cancer Research CrossRef
  7. Androgen Receptor-Related Non-coding RNAs in Prostate Cancer
    Yongyong Yang et al, 2021, Frontiers in Cell and Developmental Biology CrossRef
  8. MicroRNAs as Epigenetic Determinants of Treatment Response and Potential Therapeutic Targets in Prostate Cancer
    Valentina Doldi et al, 2021, Cancers CrossRef
  9. Association between Lymph Node Status and Expression Levels of Androgen Receptor, miR-185, miR-205, and miR-21 in Breast Cancer Subtypes
    Tatiana S. Kalinina et al, 2020, International Journal of Breast Cancer CrossRef
  10. 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
  11. miR-185 inhibits cell migration and invasion of hepatocellular carcinoma through CDC42
    Qingjun Zhang et al, 2018, Oncology Letters CrossRef
  12. miR-135b-5p Suppresses Androgen Receptor-Enhanced Hepatocellular Carcinoma Cell Proliferation via Regulating the HIF-2α/c-Myc/P27 Signals in vitro


    Shi-xiang Bao et al, 2020, OncoTargets and Therapy CrossRef
  13. miR-143 Induces the Apoptosis of Prostate Cancer LNCap Cells by Suppressing Bcl-2 Expression
    Zhiwei Ma et al, 2017, Medical Science Monitor CrossRef
  14. RETRACTED ARTICLE: Integrin-β5, a miR-185-targeted gene, promotes hepatocellular carcinoma tumorigenesis by regulating β-catenin stability
    Zhikun Lin et al, 2018, Journal of Experimental & Clinical Cancer Research CrossRef
  15. MicroRNA‐130a inhibits spermatogenesis by directly targeting androgen receptor in mouse Sertoli cells
    Cailing Li et al, 2018, Molecular Reproduction and Development CrossRef
  16. Identification of miR-30b-3p and miR-30d-5p as direct regulators of androgen receptor signaling in prostate cancer by complementary functional microRNA library screening
    Binod Kumar et al, 2016, Oncotarget CrossRef
  17. The Role of Androgen Receptor and microRNA Interactions in Androgen-Dependent Diseases
    Agnieszka Bielska et al, 2022, International Journal of Molecular Sciences CrossRef
  18. The role of microRNA-185 in the pathogenesis of human diseases: A focus on cancer
    Safoora Pordel et al, 2023, Pathology - Research and Practice CrossRef
  19. Implications of microRNA dysregulation in the development of prostate cancer
    Cintia Massillo et al, 2017, Reproduction CrossRef
  20. Resveratrol and pterostilbene as a microRNA‐mediated chemopreventive and therapeutic strategy in prostate cancer
    Avinash Kumar et al, 2017, Annals of the New York Academy of Sciences CrossRef
  21. Cucurmin, anticancer, & antitumor perspectives: A comprehensive review
    Muhammad Imran et al, 2018, Critical Reviews in Food Science and Nutrition CrossRef