1. Curcumin protects against lipopolysaccharide-induced vasoconstriction dysfunction via inhibition of thrombospondin-1 and transforming growth factor-β1
    WEI LU et al, 2015 CrossRef
  2. Bioinorganic Chemistry of Alzheimer’s Disease
    Kasper P. Kepp, 2012, Chem. Rev. CrossRef
  3. The Effect of Curcumin on the Stability of Aβ Dimers
    Li Na Zhao et al, 2012, J. Phys. Chem. B CrossRef
  4. Curcumin and derivatives function through protein phosphatase 2A and presenilin orthologues in Dictyostelium discoideum
    Marco Cocorocchio et al, 2018, Dis. Model. Mech. CrossRef
  5. Molecular Insight into the Therapeutic Potential of Phytoconstituents Targeting Protein Conformations
    Vishvanath Tiwari, 2018, Phytomedicine CrossRef
  6. null
    Rona Banerjee, 2019 CrossRef
  7. Biopharmaceutical Monotargeting versus ‘Universal Targeting’ of Late-Onset Alzheimer’s Disease Using Mixtures of Pleiotropic Natural Compounds
    Howard Friel, 2019, ADR CrossRef
  8. Mechanisms and effects of curcumin on spatial learning and memory improvement in APPswe/PS1dE9 mice
    Pengwen Wang et al, 2014, Journal of Neuroscience Research CrossRef
  9. null
    Lucie Cahlíková et al, 2014 CrossRef
  10. null
    Satoru Matsuda et al, 2015 CrossRef
  11. null
    Howard Friel et al, 2017 CrossRef
  12. The Additive Effects of Low Dose Intake of Ferulic Acid, Phosphatidylserine and Curcumin, Not Alone, Improve Cognitive Function in APPswe/PS1dE9 Transgenic Mice
    Michiaki Okuda et al, 2019, Biological & Pharmaceutical Bulletin CrossRef
  13. A Curcumin Analog Reduces Levels of the Alzheimer’s Disease-Associated Amyloid-β Protein by Modulating AβPP Processing and Autophagy
    Yu Wan et al, 2019, JAD CrossRef
  14. Curcumin Scaffold as a Multifunctional Tool for Alzheimer’s Disease Research
    Haijun Yang et al, 2022, Molecules CrossRef