1. Traditional Chinese Medicine Extract from Huaier Increases the Expression of Duffy Antigen Receptor for Chemokines and Reduces the Expression of Its Ligands
    Ying Chen et al, 2018, Analytical Cellular Pathology CrossRef
  2. Huai Qi Huang-induced Apoptosis via Down-regulating PRKCH and Inhibiting RAF/MEK/ERK Pathway in Ph+ Leukemia Cells
    Wen-fu Xu et al, 2020, Current Medical Science CrossRef
  3. Efficacy of Huaier granule in patients with breast cancer
    Y. Zhang et al, 2019, Clinical and Translational Oncology CrossRef
  4. BMX/Etk promotes cell proliferation and tumorigenicity of cervical cancer cells through PI3K/AKT/mTOR and STAT3 pathways
    Yuanyuan Li et al, 2017, Oncotarget CrossRef
  5. Matrine inhibits the metastatic properties of human cervical cancer cells via downregulating the p38 signaling pathway
    Xiaoling Wu et al, 2017, Oncology Reports CrossRef
  6. Trametes robiniophila Murr in the treatment of breast cancer
    Chen Li et al, 2020, Biomedicine & Pharmacotherapy CrossRef
  7. Huaier Polysaccharide Interrupts PRV Infection via Reducing Virus Adsorption and Entry
    Changchao Huan et al, 2022, Viruses CrossRef
  8. The role and molecular mechanism of Trametes Robiniophila Murr(Huaier) in tumor therapy
    Hao Ji et al, 2024, Journal of Ethnopharmacology CrossRef
  9. Huaier aqueous extract sensitizes cells to rapamycin and cisplatin through activating mTOR signaling
    Zhongdong Hu et al, 2016, Journal of Ethnopharmacology CrossRef
  10. Retracted: MicroRNA‐497 accelerates apoptosis while inhibiting proliferation, migration, and invasion through negative regulation of the MAPK/ERK signaling pathway via RAF‐1
    Ling Tao et al, 2018, Journal of Cellular Physiology CrossRef
  11. Estimation of HSP70 in SiHa Cell Lines During Chemoradiation and Radiation
    B. Sai Lalitha et al, 2023, Proceedings of the Second International Conference on Emerging Trends in Engineering (ICETE 2023) CrossRef
  12. Research progress on traditional Chinese medicine-induced apoptosis signaling pathways in ovarian cancer cells
    Yu Wang et al, 2024, Journal of Ethnopharmacology CrossRef
  13. Research Progress on the Anti-Cancer Molecular Mechanisms of Huaier


    Tongtong Qi et al, 2020, OncoTargets and Therapy CrossRef
  14. Trametes robiniophila represses angiogenesis and tumor growth of lung cancer via strengthening let-7d-5p and targeting NAP1L1
    HuiZhu Gan et al, 2022, Bioengineered CrossRef
  15. NIMA related kinase 2 promotes gastric cancer cell proliferationviaERK/MAPK signaling
    Wei-Dong Fan et al, 2019, World Journal of Gastroenterology CrossRef
  16. The anti-cancer effect and mechanism of animal scale-derived extract on malignant melanoma cells
    Lanni Song et al, 2023, Scientific Reports CrossRef
  17. Immunoregulatory effects of Huaier (Trametes robiniophila Murr) and relevant clinical applications
    Hongrong Long et al, 2023, Frontiers in Immunology CrossRef
  18. Natural Polyphyllins (I, II, D, VI, VII) Reverses Cancer Through Apoptosis, Autophagy, Mitophagy, Inflammation, and Necroptosis
    Bashir Ahmad et al, 2021, OncoTargets and Therapy CrossRef
  19. Efficacy and Safety of Huaier Granule as an Adjuvant Therapy for Cancer: An Overview of Systematic Reviews and Meta-Analyses
    Jixin Chen et al, 2022, Integrative Cancer Therapies CrossRef
  20. Huaier n-butanol extract suppresses proliferation and metastasis of gastric cancer via c-Myc-Bmi1 axis
    Yiping Wang et al, 2019, Scientific Reports CrossRef
  21. The synergistic antitumor effect of Huaier combined with 5-Florouracil in human cholangiocarcinoma cells
    Zhaoyu Fu et al, 2019, BMC Complementary and Alternative Medicine CrossRef
  22. Huaier restrains proliferative and invasive potential of human hepatoma SKHEP-1 cells partially through decreased Lamin B1 and elevated NOV
    Zhongdong Hu et al, 2016, Scientific Reports CrossRef
  23. DPP‐4 inhibitors promote proliferation and migration of rat brain microvascular endothelial cells under hypoxic/high‐glucose conditions, potentially through the SIRT1/HIF‐1/VEGF pathway
    Dong‐Hua Mi et al, 2019, CNS Neuroscience & Therapeutics CrossRef