Product Overview
Our Glutathione 1500mg is a pharmaceutical-grade, lyophilized tripeptide compound specifically formulated for advanced biochemical research. Composed of three essential amino acids—L-glutamine, L-cysteine, and glycine—this biologically active peptide is a cornerstone in studies involving cellular redox regulation, intracellular metabolic pathways, and antioxidant defense mechanisms.
Each vial contains 1500mg of high-purity Glutathione (GSH), provided in a stable, freeze-dried format to ensure molecular integrity. This preparation is ideal for researchers conducting controlled in vitro experimentation and longitudinal metabolic modeling.
Technical Excellence & Quality Assurance
We prioritize analytical transparency. Our Glutathione is subjected to rigorous independent testing to ensure it meets the highest laboratory standards.
- Verified Purity: Independently analyzed by Liquilabs s.r.o. (Czechia), confirming a purity level of greater than 99.8%.
- High Assay Content: Actual content verified at 1535mg per vial, ensuring consistent experimental concentrations.
- Ultra-Low Endotoxin Levels: Tested below 0.001 EU/mg, making it suitable for sensitive cellular research.
- Safety Profile: No detectable microbial contamination or heavy metals, as confirmed by our Certificate of Analysis (COA).
Key Research Focus: Redox Signaling & Cellular Health
Glutathione is one of the most extensively documented antioxidants in biological science. In laboratory environments, researchers utilize this 1500mg preparation to investigate:
- Cellular Antioxidant Systems
Studying the central role of GSH in protecting cells from oxidative stress, environmental damage, and free radical neutralization. - Mitochondrial & Longevity Research Exploring mitochondrial protection mechanisms, immune resilience, and the preservation of youthful cellular performance in aging models.
- Detoxification & Inflammation Pathways Investigating how Glutathione supports intracellular detoxification and modulates inflammatory responses at the molecular level.
Mechanistic Applications in the Laboratory
This preparation allows for precise control in experimental models focusing on:
- Intracellular Redox Regulation: Mechanisms of metabolic balance.
- Antioxidant Compound Comparative Research: Benchmarking GSH against other synthetic or natural antioxidants.
- Biochemical Signaling: Modeling the metabolic regulatory networks within complex cellular systems.

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