1. Icariin Metabolism by Human Intestinal Microflora
    Hailong Wu et al, 2016, Molecules CrossRef
  2. Synergistic Anti-Cancer Effects of Icariin and Temozolomide in Glioblastoma
    Lijuan Yang et al, 2015, Cell Biochemistry and Biophysics CrossRef
  3. Icaritin enhances mESC self-renewal through upregulating core pluripotency transcription factors mediated by ERα
    Wing Pui Tsang et al, 2017, Scientific Reports CrossRef
  4. Effects of icariin on the regulation of the OPG-RANKL-RANK system are mediated through the MAPK pathways in IL-1β-stimulated human SW1353 chondrosarcoma cells
    ZEMING WANG et al, 2014, International Journal of Molecular Medicine CrossRef
  5. Anti-myeloma Effects of Icariin Are Mediated Through the Attenuation of JAK/STAT3-Dependent Signaling Cascade
    Young Yun Jung et al, 2018, Frontiers in Pharmacology CrossRef
  6. Icaritin: A Novel Natural Candidate for Hematological Malignancies Therapy
    Xiao-Jing Yang et al, 2019, BioMed Research International CrossRef
  7. The nutritional herb Epimedium grandiflorum inhibits the growth in a model for the Luminal A molecular subtype of breast cancer
    Nitin T. Telang et al, 2017, Oncology Letters CrossRef
  8. Estrogenic flavonoids and their molecular mechanisms of action
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  9. Icariin inhibits hypertrophy by regulation of GPER1 and CaMKII/HDAC4/MEF2C signaling crosstalk in ovariectomized mice
    Wenxia Zhao et al, 2023, Chemico-Biological Interactions CrossRef
  10. Long noncoding RNA BC032469, a novel competing endogenous RNA, upregulates hTERT expression by sponging miR-1207-5p and promotes proliferation in gastric cancer
    M-H Lü et al, 2016, Oncogene CrossRef
  11. Dietary Supplementation With Icariin Affects Estrogen Synthesis, Vitellogenesis, and Oocyte Development in the Chinese Mitten Crab, Eriocheir sinensis
    Xiaochuan Zheng et al, 2020, Frontiers in Marine Science CrossRef
  12. Cancer-Related Therapeutic Potential of Epimedium and Its Extracts
    Jipeng Ding et al, 2024, Nutrition and Cancer CrossRef
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    Ryoiti Kiyama et al, 2015, Environment International CrossRef
  14. New insights into the anticancer therapeutic potential of icaritin and its synthetic derivatives
    Octavio Daniel Reyes‐Hernández et al, 2024, Drug Development Research CrossRef
  15. Evaluation of the safety profiles of estrogenic Chinese herbal medicines in breast cancer
    Grace Gar-Lee Yue et al, 2019, Phytomedicine CrossRef
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    Jin-Yu Li et al, 2016, Phytochemistry Letters CrossRef
  18. Bioactive Compounds from Herbal Medicine Targeting Multiple Myeloma
    Coralia Cotoraci et al, 2021, Applied Sciences CrossRef
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    Marília I. Figueira et al, 2018, Recent Trends in Cancer Biology: Spotlight on Signaling Cascades and microRNAs CrossRef
  20. Halogenation on 6-β-anhydroicaritin mediated by DBDMH or DCDMH
    Zhao Zhao et al, 2024, Tetrahedron CrossRef
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    Xiaochuan Zheng et al, 2022, Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology CrossRef
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    Yufang Liu et al, 2023, Biomedicine & Pharmacotherapy CrossRef
  23. Icariin induces cell differentiation and cell cycle arrest in mouse melanoma B16 cells via Erk1/2-p38-JNK-dependent pathway
    Dan Wang et al, 2017, Oncotarget CrossRef
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    Nitin Telang, 2019, World Academy of Sciences Journal CrossRef
  25. Cytotoxic and Anticancer Activity of Pharmacological Pairs of C115H Methionine–Gamma-lyase and S-Propyl-L-Cysteine Sulfoxide
    Louay Abo Qoura et al, 2023, Russian Journal of Oncology CrossRef