• Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday
  • Research Use Only (RUO)
  • Free shipping on orders over $200
  • Expect 24 hours for order processing
  • Shipping days: Monday–Friday

L-Glutathione 600MG (5ML)

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L-Glutathione is a research-grade antioxidant compound essential for cellular redox balance and detoxification pathways. It is widely used in oxidative stress, mitochondrial protection, and cellular aging research models. This formulation supports controlled investigation of antioxidant defense mechanisms in laboratory settings.

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⚠️ RESEARCH USE ONLY

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

L-Glutathione 600mg (5ml) – Antioxidant Compound for Cellular Research

Quantum Biogenix provides research-grade L-Glutathione, a naturally occurring tripeptide extensively studied for its central role in cellular antioxidant defense, detoxification pathways, and redox balance. This compound supports controlled laboratory investigations into oxidative stress regulation and cellular protection mechanisms.

L-Glutathione functions as a primary intracellular antioxidant, directly neutralizing reactive oxygen species and supporting enzymatic detoxification systems. Due to its involvement in maintaining cellular integrity and metabolic stability, it is widely utilized in oxidative stress, liver function, and cellular aging research models.

Product Name L-Glutathione
Category Antioxidant Research Compound
Form Sterile Solution
Concentration 600mg / 5ml
Purity ≥98% Analytical Grade
Application Oxidative Stress & Cellular Protection Research
Usage Laboratory Research Only

Scientific Overview of L-Glutathione

  • Endogenous tripeptide composed of glutamate, cysteine, and glycine
  • Acts as a primary intracellular antioxidant
  • Supports redox balance and cellular detoxification pathways
  • Involved in mitochondrial protection and metabolic stability
  • Suitable for a wide range of laboratory research applications

Key Research Applications

  • Oxidative Stress Studies – Investigation of cellular defense mechanisms against reactive oxygen species.
  • Detoxification Pathway Research – Evaluation of glutathione-dependent enzymatic detoxification systems.
  • Cellular Aging Models – Study of redox balance and oxidative damage in aging-related research.
  • Liver Function Research – Examination of hepatic antioxidant and detoxification processes.
  • Mitochondrial Protection Studies – Assessment of mitochondrial resilience under oxidative stress conditions.

Laboratory Handling & Storage

  • Form: Sterile research solution
  • Concentration: 600mg per 5ml
  • Recommended Storage: Store refrigerated, protected from light
  • Handling: Use sterile laboratory techniques during handling
  • Stability: Avoid prolonged exposure to air and heat

Mechanism of Research Interest

L-Glutathione plays a critical role in maintaining cellular redox homeostasis by directly scavenging free radicals and acting as a cofactor for glutathione-dependent enzymes. By supporting detoxification reactions and protecting cellular components from oxidative damage, it enables detailed investigation into oxidative stress modulation, metabolic resilience, and mitochondrial protection mechanisms across multiple experimental models.

Why Choose Quantum Biogenix?

  • High-purity analytical-grade compounds
  • Batch-tested laboratory formulations
  • Strict quality control and verification standards
  • Research-focused production protocols
  • Secure and professional laboratory supply handling

Research Use Only Notice

This product is supplied strictly for laboratory research use only. It is not intended for human consumption, medical treatment, or veterinary application. All research activities must comply with institutional safety and regulatory requirements.

Scientific References

  1. Lu S.C. (2013). Glutathione synthesis. Biochimica et Biophysica Acta.
  2. Forman H.J. et al. (2009). Glutathione: Overview of its protective roles. Molecular Aspects of Medicine.
  3. Ballatori N. et al. (2009). Glutathione dysregulation in disease. Toxicology and Applied Pharmacology.

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