1. Recombinant human bone morphogenetic protein-2 inhibits gastric cancer cell proliferation by inactivating Wnt signaling pathway via c-Myc with aurora kinases
    Kwang Bok Lee et al, 2016, Oncotarget CrossRef
  2. Indoles Derived From Glucobrassicin: Cancer Chemoprevention by Indole-3-Carbinol and 3,3'-Diindolylmethane
    David E. Williams, 2021, Frontiers in Nutrition CrossRef
  3. Cruciferous vegetables and colorectal cancer prevention through microRNA regulation: A review
    Jeong Hoon Pan et al, 2018, Critical Reviews in Food Science and Nutrition CrossRef
  4. Therapeutic Potential of Naturally Occurring Small Molecules to Target the Wnt/β-Catenin Signaling Pathway in Colorectal Cancer
    Luiz F. S. Oliveira et al, 2022, Cancers CrossRef
  5. Targeting Cancer Stem Cells by Functional Foods and Their Constituents
    Prasad Dandawate et al, 2016, Food Toxicology CrossRef
  6. Cellular and Molecular Mechanisms of 3,3′-Diindolylmethane in Gastrointestinal Cancer
    Soo Kim, 2016, International Journal of Molecular Sciences CrossRef
  7. Dependence and Guidance Receptors—DCC and Neogenin—In Partial EMT and the Actions of Serine Proteases
    Trevor W. Stone, 2020, Frontiers in Oncology CrossRef
  8. Serine protease modulation of Dependence Receptors and EMT protein expression
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  9. A Novel Phytochemical, DIM, Inhibits Proliferation, Migration, Invasion and TNF-α Induced Inflammatory Cytokine Production of Synovial Fibroblasts From Rheumatoid Arthritis Patients by Targeting MAPK and AKT/mTOR Signal Pathway
    Hongyan Du et al, 2019, Frontiers in Immunology CrossRef
  10. Colon Cancer Risk of a Westernized Diet Is Reduced in Mice by Feeding Cruciferous or Apiaceous Vegetables at a Lower Dose of Carcinogen but Not a Higher Dose
    Sangyub Kim et al, 2020, Journal of Cancer Prevention CrossRef
  11. 3,3′-Diindolylmethane Improves Intestinal Permeability Dysfunction in Cultured Human Intestinal Cells and the Model Animal Caenorhabditis elegans
    Joo Yeon Kim et al, 2019, Journal of Agricultural and Food Chemistry CrossRef
  12. Dietary phytochemicals for possible preventive and therapeutic option of uterine fibroids: Signaling pathways as target
    Md Soriful Islam et al, 2017, Pharmacological Reports CrossRef
  13. Therapeutic potential of targeting the Wnt/β-catenin signaling pathway in colorectal cancer
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  14. Reactive Oxygen Species-Mediated Autophagy by Ursolic Acid Inhibits Growth and Metastasis of Esophageal Cancer Cells
    Na-Ri Lee et al, 2020, International Journal of Molecular Sciences CrossRef
  15. Phytochemicals in cancer treatment
    A.M. Martín Ortega et al, 2021, Oncological Functional Nutrition CrossRef
  16. Treatment with anti-cancer agents results in profound changes in lncRNA expression in colon cancer cells
    O. L. Zinovieva et al, 2017, Molecular Biology CrossRef
  17. Regulation of carcinogenesis and mediation through Wnt/β-catenin signaling by 3,3′-diindolylmethane in an enzalutamide-resistant prostate cancer cell line
    Chih-Wei Tsao et al, 2021, Scientific Reports CrossRef
  18. Transcriptomic analysis of the mode of action of the candidate anti-fouling compound di(1H-indol-3-yl)methane (DIM) on a marine biofouling species, the bryozoan Bugula neritina
    Ying Xu et al, 2020, Marine Pollution Bulletin CrossRef
  19. Age-related transcriptome changes in melanoma patients with tumor-positive sentinel lymph nodes
    Derek S. Menefee et al, 2020, Aging CrossRef
  20. The synthesis and therapeutic effect of silicon(IV) phthalocyanines for colorectal cancer cells in photodynamic therapy by altering Wnt/β-catenin and apoptotic signaling
    Burak Barut et al, 2024, Journal of Photochemistry and Photobiology A: Chemistry CrossRef
  21. 3,3′-Diindolylmethane Augments 5-Fluorouracil-InducedGrowth Suppression in Gastric Cancer Cells through Suppression of the Akt/GSK-3β and WNT/Beta-Catenin
    Cong Shan Li et al, 2023, Journal of Oncology CrossRef