GLUTATHIONE 1500 MG

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Glutathione is a research-grade tripeptide supplied at
1500 mg per vial for controlled laboratory and in-vitro research use only.

$50.00

⚠️ RESEARCH USE ONLY

This product is for R&D purposes only and is not approved for human or veterinary use.

Glutathione – Research Grade Tripeptide (1500 mg)

Glutathione is a naturally occurring tripeptide composed of
glutamic acid, cysteine, and glycine. Supplied here as a research-grade
compound, Glutathione is intended exclusively for use in controlled
laboratory and in-vitro research environments focused on redox chemistry,
peptide stability, and molecular interaction studies.

In experimental research settings, Glutathione is utilized as a reference
compound in studies examining oxidative-reduction mechanisms, thiol group
reactivity, and intracellular redox balance models. Its well-characterized
tripeptide structure makes it suitable for biochemical pathway analysis and
molecular behavior investigations under strictly non-clinical conditions.

Glutathione supplied for research applications is intended exclusively for
laboratory research, analytical testing, and in-vitro scientific
investigation. This compound is not intended for human or animal use and is
not approved for therapeutic, diagnostic, cosmetic, or medical applications.

For research use only. Not for human or animal consumption.

Chemical & Compound Information

Compound Name Glutathione
Chemical Classification Tripeptide (γ-L-Glutamyl-L-Cysteinyl-Glycine)
Molecular Formula C10H17N3O6S
Molecular Weight 307.32 g/mol
Net Content 1500 mg per vial
Form Research-Grade Powder
Intended Use Laboratory & In-Vitro Research Only

Research Overview

In experimental and preclinical research contexts, Glutathione is examined
for its role in redox regulation models, antioxidant pathway research, and
molecular stability analysis. Laboratory studies may focus on thiol-based
reaction mechanisms, oxidative stress modeling, and biochemical pathway
investigations within controlled, non-clinical research systems.

Key Research Focus Areas

  • Redox chemistry and oxidative-reduction studies
  • Thiol group reactivity research
  • Biochemical pathway investigation
  • Molecular stability and degradation analysis
  • In-vitro antioxidant mechanism modeling

All information associated with Glutathione is derived from experimental and
preclinical research contexts only. No claims are made regarding medical,
therapeutic, cosmetic, or clinical outcomes.

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