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glutathione peroxidase neural excitability Glutamate-Mediated Alterations in Lead Exposure: Mechanisms, Pathways, and Phenotypes Oxidative damage in neurodegeneration: roles

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A heteropolysaccharide from cultured C

glutathione peroxidase neural excitability Glutamate-Mediated Alterations in Lead Exposure: Mechanisms, Pathways, and Phenotypes Oxidative damage in neurodegeneration: roles

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glutathione peroxidase neural excitability Glutamate-Mediated Alterations in Lead Exposure: Mechanisms, Pathways, and Phenotypes Oxidative damage in neurodegeneration: roles

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glutathione peroxidase neural excitability Glutamate-Mediated Alterations in Lead Exposure: Mechanisms, Pathways, and Phenotypes Oxidative damage in neurodegeneration: roles

Glutathione peroxidase-1 immunoreactivity in insulin- and glucagon-negative islet cells, shown here, likely represents somatostatin and/or pancreatic polypeptide hormone and ghrelin cells or non-endocrine cells located within the intra-islet vascular region, such as endothelial cells or immune cells

glutathione peroxidase neural excitability Glutamate-Mediated Alterations in Lead Exposure: Mechanisms, Pathways, and Phenotypes Oxidative damage in neurodegeneration: roles

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