1. Knockdown of REGγ inhibits the proliferation and migration and promotes the apoptosis of multiple myeloma cells by downregulating NF-κB signal pathway
    Shuang Liu et al, 2018, Hematology CrossRef
  2. Dimethyl fumarate suppresses metastasis and growth of melanoma cells by inhibiting the nuclear translocation of NF-κB
    Tomoya Takeda et al, 2020, Journal of Dermatological Science CrossRef
  3. Modulator effect of mangiferin on biochemical characterization in 7,12‐dimethylbenz[a]anthracene induced oral cancer in experimental hamsters
    Min Liu et al, 2021, Veterinary Medicine and Science CrossRef
  4. NAT10 promotes cell proliferation by acetylating CEP170 mRNA to enhance translation efficiency in multiple myeloma
    Rongfang Wei et al, 2022, Acta Pharmaceutica Sinica B CrossRef
  5. Inhibition of CARM1 suppresses proliferation of multiple myeloma cells through activation of p53 signaling pathway
    Lan Yang et al, 2023, Molecular Biology Reports CrossRef
  6. Mangiferin, a novel nuclear factor kappa B-inducing kinase inhibitor, suppresses metastasis and tumor growth in a mouse metastatic melanoma model
    Tomoya Takeda et al, 2016, Toxicology and Applied Pharmacology CrossRef
  7. Role of Mangiferin in Management of Cancers through Modulation of Signal Transduction Pathways
    Arshad Husain Rahmani et al, 2023, Biomedicines CrossRef
  8. Bioactive Compounds from Herbal Medicine Targeting Multiple Myeloma
    Coralia Cotoraci et al, 2021, Applied Sciences CrossRef
  9. Mangiferin antagonizes TNF-α-mediated inflammatory reaction and protects against dermatitis in a mice model
    Yunpeng Zhao et al, 2017, International Immunopharmacology CrossRef
  10. Formononetin Regulates Multiple Oncogenic Signaling Cascades and Enhances Sensitivity to Bortezomib in a Multiple Myeloma Mouse Model
    Chulwon Kim et al, 2019, Biomolecules CrossRef
  11. The MIP‐1α autocrine loop contributes to decreased sensitivity to anticancer drugs
    Masanobu Tsubaki et al, 2018, Journal of Cellular Physiology CrossRef
  12. USP15 inhibits multiple myeloma cell apoptosis through activating a feedback loop with the transcription factor NF-κBp65
    Lili Zhou et al, 2018, Experimental & Molecular Medicine CrossRef
  13. Activation of Serum/Glucocorticoid Regulated Kinase 1/Nuclear Factor-κB Pathway Are Correlated with Low Sensitivity to Bortezomib and Ixazomib in Resistant Multiple Myeloma Cells
    Masanobu Tsubaki et al, 2021, Biomedicines CrossRef
  14. Anticancer and anti-inflammatory properties of mangiferin: A review of its molecular mechanisms
    Suhuan Mei et al, 2021, Food and Chemical Toxicology CrossRef
  15. Key Challenges and Scopes of Biomaterials Commercialization: Therapeutic Delivery
    Tean Zaheer et al, 2021, Bio-manufactured Nanomaterials CrossRef
  16. Bavachin induces the apoptosis of multiple myeloma cell lines by inhibiting the activation of nuclear factor kappa B and signal transducer and activator of transcription 3
    Tomoya Takeda et al, 2018, Biomedicine & Pharmacotherapy CrossRef
  17. The multifaceted role of mangiferin in health and diseases: a review
    Ashok Jangra et al, 2021, Advances in Traditional Medicine CrossRef
  18. Co-Treatment of Caco-2 Cells with Doxorubicin and Gold Nanoparticles Produced from Cyclopia intermedia Extracts or Mangiferin Enhances Drug Effects
    Jumoke A. Aboyewa et al, 2022, Nanomaterials CrossRef
  19. Anticancer and Drug-Sensitizing Activities of Gold Nanoparticles Synthesized from Cyclopia genistoides (Honeybush) Extracts
    Jyoti Rajan Sharma et al, 2023, Applied Sciences CrossRef
  20. Mangiferin induces immune responses and evaluates the survival rate in WEHI‐3 cell generated mouse leukemia in vivo
    Hung‐Sheng Shang et al, 2021, Environmental Toxicology CrossRef
  21. Phytochemicals in cancer cell chemosensitization: Current knowledge and future perspectives
    Elina Khatoon et al, 2022, Seminars in Cancer Biology CrossRef