Glutathione 1500MG
Glutathione is a naturally occurring tripeptide composed of the amino acids cysteine, glutamine, and glycine. This molecule plays a critical role in cellular redox homeostasis, enzymatic reactions, and detoxification processes within biological systems. Available in a concentrated form at 1500mg, this research-use-only compound is intended for academic and scientific investigation of its biochemical properties.
Research Context
Glutathione has been extensively studied in various biological and biochemical research contexts. Its presence in cellular systems serves as a key antioxidant, neutralizing reactive oxygen species (ROS) and protecting cellular components from oxidative damage. Beyond its antioxidant function, glutathione is involved in various metabolic pathways, including protein synthesis, sulfur metabolism, and phase II detoxification reactions.
In research settings, glutathione has been explored in studies examining its role in cellular health, detoxification mechanisms, and its potential effects on various biochemical pathways. Its concentration at 1500mg in this formulation suggests it may be used in experimental models requiring high doses to assess specific biochemical interactions or effects on cellular responses.
Research Overview
Glutathione is synthesized within cells through a two-step process involving the enzymes glutathione synthetase and γ-glutamylcysteine synthetase. It can also be obtained through dietary sources or exogenous supplementation in research applications. In biochemical studies, it is often utilized to investigate its effects on intracellular redox balance, enzyme activity, and cellular defense mechanisms against oxidative stress.
Key Research Focus Areas
- Antioxidant Activity – Investigating glutathione’s role in neutralizing free radicals and mitigating oxidative damage in model systems.
- Detoxification Pathways – Exploring its involvement in phase II metabolism and its impact on xenobiotic processing within cells.
- Cellular Redox Homeostasis – Studying how glutathione maintains intracellular redox balance under various conditions.
- Biochemical Interactions – Assessing its effects on enzyme activity, protein synthesis, and metabolic regulation.
- Model System Applications – Investigating its effects in cultured cells, animal models, or in vitro biochemical assays.
Safety and Compliance Statement
This product is provided for research purposes only and is not intended for human or animal consumption. Researchers are advised to follow all applicable safety protocols when handling biochemical compounds, including proper containment, labeling, and disposal procedures. Always adhere to institutional guidelines and regulatory requirements for research materials.
For research use only. Not for human or animal consumption.





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