1. Curcumin upregulates S100 expression and improves regeneration of the sciatic nerve following its complete amputation in mice
    Yun-gang Luo et al, 2016, Neural Regeneration Research CrossRef
  2. Insights from selected ancient Mesopotamian medicinal plants: an opinion piece
    Scurlock Jo Ann, 2023, Journal of Plant Science and Phytopathology CrossRef
  3. A Comprehensive Review for Phytochemical, Pharmacological, and Biosynthesis Studies onGlycyrrhizaspp.
    Chengcheng Wang et al, 2020, The American Journal of Chinese Medicine CrossRef
  4. Dietary biomolecules as promising regenerative agents for peripheral nerve injury: An emerging nutraceutical‐based therapeutic approach
    Haseeb Anwar et al, 2021, Journal of Food Biochemistry CrossRef
  5. Reduced inflammatory factor expression facilitates recovery after sciatic nerve injury in TLR4 mutant mice
    Guoqing Tang et al, 2018, International Immunopharmacology CrossRef
  6. Advances in Pharmacological Activities and Mechanisms of Glycyrrhizic Acid
    Kun Chen et al, 2020, Current Medicinal Chemistry CrossRef
  7. Glycogen synthase kinase 3 (GSK-3) inhibitors: a patent update (2016–2019)
    Carlos Roca et al, 2020, Expert Opinion on Therapeutic Patents CrossRef
  8. Mitigation of sciatica injury-induced neuropathic pain through active metabolites derived from medicinal plants
    Abdul Nasir et al, 2024, Pharmacological Research CrossRef
  9. The Impact of Supplements on Recovery After Peripheral Nerve Injury: A Review of the Literature
    Yasmine Abushukur et al, 2022, Cureus CrossRef
  10. Pharmacological Effects ofGlycyrrhizaspp. and Its Bioactive Constituents: Update and Review
    Hossein Hosseinzadeh et al, 2015, Phytotherapy Research CrossRef
  11. The Effectiveness of Ancient Mesopotamian Medical Practices: The Example of šūšu-Licorice
    JoAnn Scurlock, 2021, Tigris and Euphrates Rivers: Their Environment from Headwaters to Mouth CrossRef