<--- Back to Details
First PageDocument Content
Biology / Chemistry / Antioxidants / Biochemistry / Senescence / Free radicals / Metabolism / Cell biology / Glutathione reductase / Oxidative stress / Glutathione-ascorbate cycle / Glutathione
Date: 2015-06-25 13:30:32
Biology
Chemistry
Antioxidants
Biochemistry
Senescence
Free radicals
Metabolism
Cell biology
Glutathione reductase
Oxidative stress
Glutathione-ascorbate cycle
Glutathione

Integrative Modeling of Oxidative Stress and C1 Metabolism Reveals Upregulation of Formaldehyde and Downregulation of Glutathione

Add to Reading List

Source URL: www.integrativesystems.org

Download Document from Source Website

File Size: 827,54 KB

Share Document on Facebook

Similar Documents

Integrative Modeling of Oxidative Stress and C1 Metabolism Reveals Upregulation of Formaldehyde and Downregulation of Glutathione

Integrative Modeling of Oxidative Stress and C1 Metabolism Reveals Upregulation of Formaldehyde and Downregulation of Glutathione

DocID: 1qUEn - View Document

Erythrocyte potassium, sodium and glutathione concentrations and their relationship with reproduction, body weight and fleece weight traits in Awassi sheep

Erythrocyte potassium, sodium and glutathione concentrations and their relationship with reproduction, body weight and fleece weight traits in Awassi sheep

DocID: 1qU9N - View Document

Do GMOs Accumulate Formaldehyde and Disrupt Molecular Systems Equilibria? Systems Biology May Provide Answers

Do GMOs Accumulate Formaldehyde and Disrupt Molecular Systems Equilibria? Systems Biology May Provide Answers

DocID: 1q7mW - View Document

47 | P a g e  The impact of hemodialysis session on red cells antioxidant enzymes (Glutathione Peroxidase and Reductase) in end stage renal disease patients undergoing maintenance hemodialysis: Controlled trial HANAN MAH

47 | P a g e The impact of hemodialysis session on red cells antioxidant enzymes (Glutathione Peroxidase and Reductase) in end stage renal disease patients undergoing maintenance hemodialysis: Controlled trial HANAN MAH

DocID: 1pNR6 - View Document

Activation of the OxyR Transcription Factor by Reversible Disulfide Bond Formation Ming Zheng, et al. Science 279, ); DOI: science

Activation of the OxyR Transcription Factor by Reversible Disulfide Bond Formation Ming Zheng, et al. Science 279, ); DOI: science

DocID: 18EYB - View Document