Glutathione 1500mg
59.99$

Glutathione 1500mg is a high-purity research compound supplied in a precisely measured format to support consistency and reproducibility in controlled laboratory environments. Manufactured under stringent quality standards, it is intended for scientific and analytical research involving oxidative processes, cellular response mechanisms, and antioxidant-related activity in experimental models.
For Research Use Only (RUO). Not for human or animal use.

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Category: Peptides, Vial

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Estimated delivery time: 3-5 days international

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Description

Overview

Glutathione 1500mg is a high-purity research compound widely referenced in scientific and preclinical literature for the study of oxidative balance, cellular defense mechanisms, and redox-related signaling processes within controlled laboratory environments. Supplied exclusively for research use, it supports structured experimental workflows focused on compound characterization, assay development, and reproducibility across laboratory studies. In non-clinical research settings, glutathione is commonly examined for its involvement in pathways associated with oxidative stress regulation, detoxification processes, and intracellular signaling mechanisms. Researchers may investigate its role in maintaining cellular redox balance, supporting enzymatic activity, and influencing molecular interactions within experimental models. In vitro studies often include compound stability analysis, redox response evaluation, and comparative testing under varied laboratory conditions. All information regarding this compound is strictly limited to laboratory-based research. No claims are made regarding therapeutic applications, clinical efficacy, physiological outcomes, or suitability for human or veterinary use.

Key Features

Research-grade tripeptide compound High-purity material suitable for analytical applications Lyophilized powder for enhanced stability and handling precision Widely referenced in oxidative stress and redox signaling research Batch consistency verified through analytical testing methods

Biochemical Characteristics

Glutathione 1500mg is a research-grade compound frequently referenced in scientific literature for its relevance to cellular redox balance, antioxidant activity, and intracellular signaling processes within controlled laboratory environments. All characterization of this compound is conducted strictly through physicochemical analysis and standardized research methodologies. Biochemical evaluation of glutathione typically includes confirmation of compound identity, purity assessment using advanced chromatographic techniques, and stability testing under controlled laboratory conditions. In preclinical research settings, experimental models may examine its role in pathways associated with oxidative stress regulation, detoxification mechanisms, and cellular response systems. Additional studies often assess compound stability in solution and consistency across in vitro systems to support reliable and reproducible experimental outcomes. All documentation and evaluation of this compound remain confined to investigational, non-clinical laboratory research.

Molecular Class: Tripeptide (Glutathione)

Compound Name: Glutathione

Purity: Research-grade, high-purity material

Material State: Lyophilized powder

Quantity: 1500mg per vial

Intended Use: Laboratory research only

Research Applications

Within scientific and preclinical literature, Glutathione 1500mg is referenced as a research compound evaluated exclusively in controlled, non-clinical laboratory environments. Its use is limited to analytical investigation, cellular process studies, and redox-related biochemical research conducted under structured experimental protocols.

Documented laboratory research contexts may include:

  • Oxidative stress studies examining compound interaction with mechanisms related to reactive species balance, intracellular defense systems, and redox equilibrium within controlled models
  • Cellular redox regulation research focused on glutathione’s role in maintaining intracellular balance, supporting enzymatic pathways, and influencing molecular signaling processes
  • In vitro cellular response modeling within experimental systems designed to observe oxidative response, cellular behavior, and signaling pathways under varying laboratory conditions
  • Compound stability and integrity testing including evaluation under controlled storage conditions, reconstitution protocols, and experimental environments
  • Comparative biochemical research exploring structural and functional relationships between glutathione and related compounds
  • Analytical benchmarking procedures utilizing validated reference standards, chromatographic verification, and laboratory quality control systems

All referenced applications remain strictly confined to laboratory-based investigation and non-clinical experimental use.

Pathway / Mechanistic Context

In experimental and preclinical research literature, Glutathione 1500mg is referenced in relation to cellular redox pathways, antioxidant defense systems, and biochemical signaling networks examined at the molecular interaction level. These investigations are conducted strictly within controlled laboratory environments. Scientific discussion often highlights glutathione’s relevance within models of oxidative balance and intracellular regulation. Mechanistic evaluation may include observation of compound interaction with signaling cascades involved in redox homeostasis, enzymatic activity, and molecular transport processes. Researchers may also examine its association with detoxification mechanisms, reactive species neutralization, and signaling coordination under controlled in vitro conditions. All mechanistic interpretations remain observational and exploratory in nature and are confined exclusively to non-clinical research settings.

Preclinical Research Summary

Preclinical research literature references observational findings related to Glutathione 1500mg derived from controlled experimental systems designed to evaluate oxidative balance, cellular response mechanisms, and redox-related signaling processes within non-clinical research frameworks. Exploratory research discussions often involve evaluation within cellular and biochemical models associated with oxidative stress regulation, intracellular balance, and enzymatic activity. Additional analyses may include assessment of compound stability, consistency across experimental replicates, and observation of downstream cellular responses in regulated in vitro systems. All documented observations remain confined to investigational laboratory contexts and are presented solely for exploratory scientific research purposes.

Form & Analytical Testing

Glutathione 1500mg is supplied as a research-grade compound manufactured under controlled conditions to ensure batch-to-batch consistency, verified identity, and high-purity specifications suitable for laboratory analysis. The material is provided in lyophilized powder form for precise handling and reliable experimental integration. Analytical evaluation typically includes confirmation of compound identity, purity assessment using high-performance liquid chromatography (HPLC), and molecular mass verification via mass spectrometry. Additional testing includes stability assessment under defined storage and handling conditions. All testing and validation procedures are conducted exclusively to support material characterization within non-clinical laboratory environments.

Storage & Handling

Store at low temperature (commonly -20°C) Protect from light and moisture Reconstitute using sterile laboratory-grade solvents Avoid repeated freeze-thaw cycles

Referenced Citations

Meister, A. (1988). Glutathione metabolism and its selective modification. Journal of Biological Chemistry. Lu, S. C. (2013). Glutathione synthesis and regulation in cellular systems. Biochimica et Biophysica Acta. Wu, G., et al. (2004). Glutathione metabolism and its implications for cellular function. Journal of Nutrition. Forman, H. J., et al. (2009). Glutathione: Overview of its role in oxidative stress and redox signaling. Archives of Biochemistry and Biophysics. Townsend, D. M., et al. (2003). The importance of glutathione in cellular processes and antioxidant defense. Biomedicine & Pharmacotherapy. Schafer, F. Q., & Buettner, G. R. (2001). Redox environment of the cell and glutathione balance. Free Radical Biology and Medicine. Jones, D. P. (2008). Redox signaling and oxidative stress in biological systems. Antioxidants & Redox Signaling. Rahman, I., et al. (2006). Regulation of glutathione in oxidative stress and cellular response mechanisms. European Journal of Pharmacology.

ALL ARTICLES AND PRODUCT INFORMATION PROVIDED ON THIS WEBSITE ARE FOR INFORMATIONAL AND EDUCATIONAL PURPOSES ONLY. FOR RESEARCH USE ONLY (RUO). NOT FOR HUMAN OR VETERINARY USE.

RUO Disclaimer

All products offered on this website, including Glutathione 1500mg, are intended strictly for in vitro laboratory research purposes only. In vitro research refers to experimental procedures conducted outside of living organisms within controlled laboratory environments. These materials are not classified as drugs, pharmaceuticals, dietary supplements, or medical products. They have not been reviewed, evaluated, or approved by regulatory authorities for the diagnosis, treatment, cure, or prevention of any disease or medical condition. Any use outside structured laboratory research—including administration to humans or animals—is strictly prohibited. For Laboratory Research Use Only (RUO). Not for human use, medical use, diagnostic use, or veterinary use.

Additional information

Weight 0.0015 kg

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  • Batch: V251003-16 009
  • Date: 16 OCT 2025
  • Lab: vanguardlaboratory.com
Glutathione 1500mg
Glutathione 1500mg
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