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    Kris V. Kowdley et al, 2017, Schiff's Diseases of the Liver CrossRef
  2. Effect of tetramethylpyrazine and hyperlipidemia on hepcidin homeostasis in mice
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  3. Promoting osteogenesis and bone regeneration employing icariin-loaded nanoplatforms
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  4. Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies?
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  5. New Deferric Amine Compounds Efficiently Chelate Excess Iron to Treat Iron Overload Disorders and to Prevent Ferroptosis
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  6. Screening of superior anti‐osteoporotic flavonoids from Epimedii Folium with dual effects of reversing iron overload and promoting osteogenesis
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  7. Icariin protects against iron overload‐induced bone loss via suppressing oxidative stress
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  8. Hepcidin Therapeutics
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  9. Therapeutic Advances in Regulating the Hepcidin/Ferroportin Axis
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  10. Why Is Iron Deficiency/Anemia Linked to Alzheimer’s Disease and Its Comorbidities, and How Is It Prevented?
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  11. Iron disorders and hepcidin
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  12. Quercetin inhibits intestinal non-haem iron absorption by regulating iron metabolism genes in the tissues
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  13. Hepcidin Protects Yellow Catfish (Pelteobagrus fulvidraco) against Aeromonas veronii-Induced Ascites Disease by Regulating Iron Metabolism
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  14. Role of Dietary Flavonoids in Iron Homeostasis
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  15. Icariin-mediated activation of autophagy confers protective effect on rotenone induced neurotoxicity in vivo and in vitro
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  16. The α1‐adrenergic receptor is involved in hepcidin upregulation induced by adrenaline and norepinephrine via the STAT3 pathway
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  17. Therapeutic potential of hepcidin − the master regulator of iron metabolism
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  18. Icariin attenuates asthmatic airway inflammation via modulating alveolar macrophage activation based on network pharmacology and in vivo experiments
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  19. Zonated iron deposition in the periportal zone of the liver is associated with selectively enhanced lipid synthesis
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