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homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

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Die Mitochondrien, unsere Zellkraftwerke selbst besitzen ein eigenes Glutathionsystem, das allerdings nicht ganz so ausgefeilt ist wie das System unserer Zellen

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

doi: 10.1093/jac/dkx029 365 LamothFChungSJDamontiLAlexanderBD

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

Alterations of gut microbiota and metabolome in early chronic kidney disease patients complicated with hyperuricemia

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

Attanasio, A

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

[DOI] [PubMed] [Google Scholar] 43.Camejo MI, Abdala L, VivasAcevedo G, LozanoHernandez R, AngeliGreaves M, Greaves ED

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

Glutamine also regulates the acid-base balance in the kidney by producing ammonium

homocysteine glutathione redox Enzymes Drive Shunt to Explain Oxidative State Using an In-Parallel Multi-Omic Method One-carbon metabolism and glutathione (GSH)

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