1. Environmental Contamination and Chronic Exposure to Endocrine-Disrupting Phthalates: An Overlooked and Emerging Determinant for Hormone-Sensitive Cancers
    Ankan Mukherjee Das et al, 2022, Journal of the Indian Institute of Science CrossRef
  2. Didymin switches M1-like toward M2-like macrophage to ameliorate ulcerative colitis via fatty acid oxidation
    Qi Lv et al, 2021, Pharmacological Research CrossRef
  3. Mediterranean Diet as a Shield against Male Infertility and Cancer Risk Induced by Environmental Pollutants: A Focus on Flavonoids
    Luigi Montano et al, 2022, International Journal of Molecular Sciences CrossRef
  4. An Overview of Bioactive Flavonoids from Citrus Fruits
    Mohamed Addi et al, 2021, Applied Sciences CrossRef
  5. Activation and inhibition effects of some natural products on human cytosolic CAI and CAII
    Sevki Adem et al, 2019, Medicinal Chemistry Research CrossRef
  6. Didymin ameliorates ulcerative colitis-associated secondary liver damage by facilitating Notch1 degradation
    Qi Lv et al, 2024, Phytomedicine CrossRef
  7. DEHP mediates drug resistance by directly targeting AhR in human breast cancer
    Tsung-Hua Hsieh et al, 2022, Biomedicine & Pharmacotherapy CrossRef
  8. Didymin by suppressing NF-κB activation prevents VEGF-induced angiogenesis in vitro and in vivo
    Kirtikar Shukla et al, 2019, Vascular Pharmacology CrossRef
  9. Didymin: an orally active citrus flavonoid for targeting neuroblastoma
    Sharad S. Singhal et al, 2017, Oncotarget CrossRef
  10. Didymin alleviates metabolic dysfunction-associated fatty liver disease (MAFLD) via the stimulation of Sirt1-mediated lipophagy and mitochondrial biogenesis
    Jing-wen Yang et al, 2023, Journal of Translational Medicine CrossRef
  11. A systematic review on the adverse health effects of di-2-ethylhexyl phthalate
    Maryam Zarean et al, 2016, Environmental Science and Pollution Research CrossRef
  12. Occurrence and dietary exposure risk assessment of phthalate esters in Chinese mitten crabs (Eriocheir sinensis) from Hubei, central China
    Ting Liu et al, 2022, Food Control CrossRef
  13. Flavanone glycosides inhibit β-site amyloid precursor protein cleaving enzyme 1 and cholinesterase and reduce Aβ aggregation in the amyloidogenic pathway
    Md Yousof Ali et al, 2019, Chemico-Biological Interactions CrossRef
  14. Di(2-ethylhexyl) phthalate mediates IL-33 production via aryl hydrocarbon receptor and is associated with childhood allergy development
    Mei-Lan Tsai et al, 2023, Frontiers in Immunology CrossRef
  15. Dibutyl phthalate contamination accelerates the uptake and metabolism of sugars by microbes in black soil
    Wenjing Chen et al, 2020, Environmental Pollution CrossRef
  16. Antioxidants from different citrus peels provide protection against cancer
    Nouf Khalifa ALaqeel, 2024, Brazilian Journal of Biology CrossRef
  17. Chiral Flavonoids as Antitumor Agents
    Cláudia Pinto et al, 2021, Pharmaceuticals CrossRef
  18. Combined effect of silver nanoparticles and aluminium chloride, butylparaben or diethylphthalate on the malignancy of MDA-MB-231 breast cancer cells and tumor-specific immune responses of human macrophages and monocyte-derived dendritic cells
    Joanna Roszak et al, 2020, Toxicology in Vitro CrossRef
  19. Preparation of Ti3C2Tx-based MXene composite aerogel and its adsorption performance for dibutyl phthalate
    Lanlan Gao et al, 2024, Colloids and Surfaces A: Physicochemical and Engineering Aspects CrossRef
  20. Chemopreventive Agents and Inhibitors of Cancer Hallmarks: May Citrus Offer New Perspectives?
    Santa Cirmi et al, 2016, Nutrients CrossRef
  21. Didymin, a dietary citrus flavonoid exhibits anti-diabetic complications and promotes glucose uptake through the activation of PI3K/Akt signaling pathway in insulin-resistant HepG2 cells
    Md Yousof Ali et al, 2019, Chemico-Biological Interactions CrossRef
  22. Didymin prevents hyperglycemia-induced human umbilical endothelial cells dysfunction and death
    Kirtikar Shukla et al, 2018, Biochemical Pharmacology CrossRef
  23. Mechanism of phthalate esters in the progression and development of breast cancer
    Mohd Mughees et al, 2022, Drug and Chemical Toxicology CrossRef