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glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione-α-tocopherol Triad in Abiotic

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It plays a major role in: Naturally, the body produces glutathione

glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione--tocopherol Triad in Abiotic

Several mutations in GSH1 decrease glutathione to a residual but still significant level (about 25 to 50% of wild-type)

glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione--tocopherol Triad in Abiotic

For example, some pine cones and Australian banksia cones release their seeds only after being exposed to fire

glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione--tocopherol Triad in Abiotic

Studies have consistently shown that smokers have higher levels of sperm DNA fragmentation, reduced sperm motility, and lower antioxidant capacity compared to non-smokers

glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione--tocopherol Triad in Abiotic

Stroke 41: 12781284, 2010

glutathione dehydrogenase ascorbate activity Imaging depletion in the rat brain using ascorbate-derived hyperpolarized MR and PET probes The Ascorbate-glutathione--tocopherol Triad in Abiotic

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