γ-Glutamate Cysteine Ligase(GCL) Activity Assay Kit
enzyme labeling method
- Product Code: 112000
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Density: | Storage Condition: | 2-8℃, avoid light |
Product Description:
The γ-Glutamate Cysteine Ligase (GCL) Activity Assay Kit is widely used in research to measure the activity of the GCL enzyme, which plays a critical role in glutathione biosynthesis. This kit is essential for studying oxidative stress, as glutathione is a key antioxidant in cells. Researchers use it to investigate the impact of various conditions, such as drug treatments, environmental toxins, or diseases, on cellular antioxidant capacity. It is also employed in toxicology studies to assess how different compounds affect glutathione production. Additionally, the kit aids in understanding the molecular mechanisms of diseases linked to oxidative damage, such as cancer, neurodegenerative disorders, and cardiovascular diseases. Its applications extend to drug development, where it helps evaluate the efficacy of potential therapeutics targeting oxidative stress pathways.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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100.000 | 10-20 days | $278.08 |
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γ-Glutamate Cysteine Ligase(GCL) Activity Assay Kit
The γ-Glutamate Cysteine Ligase (GCL) Activity Assay Kit is widely used in research to measure the activity of the GCL enzyme, which plays a critical role in glutathione biosynthesis. This kit is essential for studying oxidative stress, as glutathione is a key antioxidant in cells. Researchers use it to investigate the impact of various conditions, such as drug treatments, environmental toxins, or diseases, on cellular antioxidant capacity. It is also employed in toxicology studies to assess how different compounds affect glutathione production. Additionally, the kit aids in understanding the molecular mechanisms of diseases linked to oxidative damage, such as cancer, neurodegenerative disorders, and cardiovascular diseases. Its applications extend to drug development, where it helps evaluate the efficacy of potential therapeutics targeting oxidative stress pathways.
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