1. 3-(Naphthalen-2-yl(propoxy)methyl)azetidine hydrochloride attenuates NLRP3 inflammasome-mediated signaling pathway in lipopolysaccharide-stimulated BV2 microglial cells
    Ji Woong Yang et al, 2017, Biochemical and Biophysical Research Communications CrossRef
  2. Rosmarinic Acid Mitigates Lipopolysaccharide-Induced Neuroinflammatory Responses through the Inhibition of TLR4 and CD14 Expression and NF-κB and NLRP3 Inflammasome Activation
    Yicong Wei et al, 2018, Inflammation CrossRef
  3. Inhibitors of NF-κB and P2X7/NLRP3/Caspase 1 pathway in microglia: Novel therapeutic opportunities in neuroinflammation induced early-stage Alzheimer’s disease
    Baban S. Thawkar et al, 2018, Journal of Neuroimmunology CrossRef
  4. Ferulic acid attenuates oxidative DNA damage and inflammatory responses in microglia induced by benzo(a)pyrene
    Yongfen Bao et al, 2019, International Immunopharmacology CrossRef
  5. Neuroinflammation in CNS diseases: molecular mechanisms and the therapeutic potential of plant derived bioactive molecules
    Menizibeya O. Welcome, 2020, PharmaNutrition CrossRef
  6. Phytochemicals and NLRP3 Inflammasome Inhibitory effects of Phytochemicals on NLRP3 Inflammasome Activation: A Review.
    Melis Olcum et al, 2020, Phytomedicine CrossRef
  7. Glabridin downregulates lipopolysaccharide-induced oxidative stress and neuroinflammation in BV-2 microglial cells via suppression of nuclear factor-κB signaling pathway
    Yan Wu et al, 2020, Phcog Mag CrossRef
  8. Phytochemistry and biological activity of mustard (Brassica juncea): a review
    Yan Tian et al, 2020, CyTA - Journal of Food CrossRef
  9. Characterization of extractable components of fresh and fermented Huarong large-leaf mustard and their inhibitory effects on human colon cancer cells
    Yan Tian et al, 2021, Food Bioscience CrossRef
  10. Inhibitory effects of sulforaphane on NLRP3 inflammasome activation
    Cagla Kiser et al, 2021, Molecular Immunology CrossRef
  11. Benzyl Isothiocyanate Attenuates Inflammasome Activation in Pseudomonas aeruginosa LPS-Stimulated THP-1 Cells and Exerts Regulation through the MAPKs/NF-κB Pathway.
    Won-kyo Jung, 0 CrossRef
  12. Alzheimer’s Disease: New Concepts on the Role of Autoimmunity and NLRP3 Inflammasome in the Pathogenesis of the Disease
    Cinzia Severini et al, 2021, CN CrossRef
  13. Roles of Intramolecular Interactions in the Regulation of TRP Channels
    Ruiqi Cai et al, 2022 CrossRef
  14. Characterization of IMG Microglial Cell Line as a Valuable In Vitro Tool for NLRP3 Inflammasome Studies
    Janeli Viil et al, 2022, Cell Mol Neurobiol CrossRef
  15. Benzyl isothiocyanate improves the prognosis of Aspergillus fumigatus keratitis by reducing fungal load and inhibiting Mincle signal pathway
    Wendan Yi et al, 2023, Front. Microbiol. CrossRef
  16. The effects of microglia-associated neuroinflammation on Alzheimer’s disease
    Cuicui Wang et al, 2023, Front. Immunol. CrossRef
  17. The neuroprotective effects of targeting key factors of neuronal cell death in neurodegenerative diseases: The role of ER stress, oxidative stress, and neuroinflammation
    Mohammad Sobhan Karvandi et al, 2023, Front. Cell. Neurosci. CrossRef
  18. NLRP3 Inflammasome’s Activation in Acute and Chronic Brain Diseases—An Update on Pathogenetic Mechanisms and Therapeutic Perspectives with Respect to Other Inflammasomes
    Anna Chiarini et al, 2023, Biomedicines CrossRef
  19. Microglia in Alzheimer’s disease: pathogenesis, mechanisms, and therapeutic potentials
    Jifei Miao et al, 2023, Front. Aging Neurosci. CrossRef
  20. Benzyl isothiocyanate inhibits TNFα-driven lipolysis via suppression of the ERK/PKA/HSL signaling pathway in 3T3-L1 adipocytes
    Chien-Chun Li et al, 2023, Nutrition Research CrossRef
  21. A “defend–attack and capture flag” strategy for cascade management of hepatic ischemia reperfusion injury
    Wenze Zhang et al, 2024, Chemical Engineering Journal CrossRef
  22. Discovery of a Covalent Inhibitor of Pro-Caspase-1 Zymogen Blocking NLRP3 Inflammasome Activation and Pyroptosis
    Dongyi Cao et al, 2024, J. Med. Chem. CrossRef