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glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

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doi: 10.1016/j.dld.2003.09.016

glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

Various modifications can be employed for actively charging the liposomes, including immunoglobulin, carbohydrate, peptide, aptamer, protein, PEG, and small molecules such as folic acid and transferrin [112]

glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

Burmann BM, Gerez JA, Mateko-Burmann I, Campioni S, Kumari P, Ghosh D, Mazur A, Aspholm EE, ulskis D, Wawrzyniuk M, Bock T, Schmidt A, Rdiger SGD, Riek R, Hiller S (2020) Regulation of -synuclein by chaperones in mammalian cells

glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

The brain accounts for ~20% of total body energy consumption (25% of the glucose and 20% of the oxygen consumption), and brain energy levels are more resistant to starvation compared to other organs [279]

glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

PEG, polyethene glycol

glutathione peroxidase gsh-px on iron ncbi The Selenoprotein 4: From Molecular Mechanisms to Novel Therapeutic Opportunities Ferroptosis and Iron Homeostasis: Molecular

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