Oxidized Glutathione(GSSG) Content Assay Kit
enzyme labeling method
- Product Code: 112419
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Density: | Storage Condition: | 2-8℃, avoid light |
Product Description:
The Oxidized Glutathione (GSSG) Content Assay Kit is widely used in research to measure the levels of oxidized glutathione in biological samples. It is particularly valuable in studies focused on oxidative stress, as GSSG is a key indicator of cellular redox status. Researchers utilize this kit to assess the balance between reduced and oxidized glutathione, which is critical for understanding antioxidant defense mechanisms and cellular health. It is applied in fields such as toxicology, pharmacology, and environmental science to evaluate the impact of stressors like toxins, drugs, or pollutants on cellular oxidative balance. Additionally, it is employed in disease research, including cancer, neurodegenerative disorders, and metabolic diseases, to investigate the role of oxidative stress in pathogenesis. The kit is also useful in drug development, helping to screen compounds for their potential to modulate oxidative stress. Its applications extend to agricultural research, where it is used to study plant responses to environmental stressors. Overall, this kit is a vital tool for advancing knowledge in oxidative stress-related studies across diverse scientific disciplines.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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100.000 | 10-20 days | €193.75 |
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Oxidized Glutathione(GSSG) Content Assay Kit
The Oxidized Glutathione (GSSG) Content Assay Kit is widely used in research to measure the levels of oxidized glutathione in biological samples. It is particularly valuable in studies focused on oxidative stress, as GSSG is a key indicator of cellular redox status. Researchers utilize this kit to assess the balance between reduced and oxidized glutathione, which is critical for understanding antioxidant defense mechanisms and cellular health. It is applied in fields such as toxicology, pharmacology, and environmental science to evaluate the impact of stressors like toxins, drugs, or pollutants on cellular oxidative balance. Additionally, it is employed in disease research, including cancer, neurodegenerative disorders, and metabolic diseases, to investigate the role of oxidative stress in pathogenesis. The kit is also useful in drug development, helping to screen compounds for their potential to modulate oxidative stress. Its applications extend to agricultural research, where it is used to study plant responses to environmental stressors. Overall, this kit is a vital tool for advancing knowledge in oxidative stress-related studies across diverse scientific disciplines.
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