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glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

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CXCR4 When immature B cells encountered auto-antigens, BCR-induced CXCR4 expression was increased, and more B cells were remained in BM parenchyma, indicating that CXCR4 functionally contributes to central B cell tolerance [70]

glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

Therefore, antioxidant activity may be one of the possible mechanisms of the anti-inflammatory effect of BP (115)

glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

Pubmed central, PMCID: PMC2696075

glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

2022;27(19):6513.[DOI] 55

glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

Zou et al., 2014)

glutathione-dependent detoxification pathway Coordinate Regulation of Glutathione Biosynthesis and Release by Nrf2-Expressing Glia Potently Protects Neurons from Oxidative Stress Frontiers | Glutathione S-Transferases: Role

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