1. Dexamethasone Suppresses IL-33-exacerbated Malignant Phenotype of U87MG Glioblastoma Cells via NF-κB and MAPK Signaling Pathways
    Jie Ai et al, 2024, Anti-Cancer Agents in Medicinal Chemistry CrossRef
  2. Anti-Inflammatory Drugs as Anticancer Agents
    Silvia Zappavigna et al, 2020, International Journal of Molecular Sciences CrossRef
  3. Influence of NSAIDs and methotrexate on CD73 expression and glioma cell growth
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  4. Glucocorticoid Receptor Expression Predicts Good Outcome in response to Taxane-Free, Anthracycline-Based Therapy in Triple Negative Breast Cancer
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  5. Trichostatin A sensitizes hepatoma cells to Taxol more than 5-Aza-dC and dexamethasone
    Thoria Donia et al, 2021, Drug Metabolism and Personalized Therapy CrossRef
  6. Trichostatin A sensitizes hepatoma cells to Taxol more than 5-Aza-dC and dexamethasone
    Thoria Donia et al, 2021, Drug Metabolism and Personalized Therapy CrossRef
  7. Potential Role of CCN Proteins in Breast Cancer: Therapeutic Advances and Perspectives
    Kazi Ahsan Ahmed et al, 2021, Current Oncology CrossRef
  8. Dexamethasone Increases Cisplatin-Loaded Nanocarrier Delivery and Efficacy in Metastatic Breast Cancer by Normalizing the Tumor Microenvironment
    John D. Martin et al, 2019, ACS Nano CrossRef
  9. Selective glucocorticoid receptor-activating adjuvant therapy in cancer treatments
    Nora Sundahl et al, 2016, Oncoscience CrossRef
  10. Induction of SGK1 via glucocorticoid-influenced clinical outcome of triple-negative breast cancer patients
    Junjia Zhang et al, 2023, Breast Cancer Research and Treatment CrossRef
  11. Dexamethasone Inhibits Spheroid Formation of Thyroid Cancer Cells Exposed to Simulated Microgravity
    null Melnik et al, 2020, Cells CrossRef
  12. Naturally occurring, natural product inspired and synthetic heterocyclic anti-cancer drugs
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  13. Cancer Cell Membrane-Enveloped Dexamethasone Normalizes the Tumor Microenvironment and Enhances Gynecologic Cancer Chemotherapy
    Mingzhuang Li et al, 2023, ACS Nano CrossRef
  14. Dexamethasone Sensitizes Cancer Stem Cells to Gemcitabine and 5-Fluorouracil by Increasing Reactive Oxygen Species Production through NRF2 Reduction
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