Join Our Mailing List for Monthly Deals Check it Out

Disclaimer

RESEARCH USE ONLY. This product is intended exclusively for in vitro research and laboratory experimentation. By law, it is strictly prohibited for human or animal consumption, Injection, or administration of any kind. Handle with extreme caution.

Glutathione 1500mg

$100.00

Product Description

Glutathione (GSH) is a naturally occurring tripeptide composed of three amino acids: glutaminecysteine, and glycine. It is a powerful antioxidant that plays a vital role in protecting cells from oxidative damage, neutralizing free radicals, and maintaining cellular health.

Glutathione is involved in several critical biological processes, including:

  • Detoxification: Conjugating harmful substances and aiding in their excretion.
  • Immune Support: Enhancing immune cell function and modulating immune responses.
  • Redox Regulation: Maintaining the balance between oxidized and reduced states in cells.
Product Id: 23407-6-2

In stock

SKU: 23407-6-2 Category:

Glutathione (GSH) is a tripeptide composed of three amino acids: glutamine, cysteine, and glycine. This potent antioxidant plays a crucial role in protecting cells from oxidative stress and promoting cellular health. For researchers and laboratories interested in wholesale Glutathione peptide, this compound offers significant potential for use in animal studies related to detoxification, oxidative stress, and cellular defense mechanisms.

Chemical Structure and Properties

Glutathione is distinctive due to its unique gamma-glutamyl bond, which links the amino group of cysteine to the carboxyl group of the glutamine side chain, forming the sequence γ-L-glutamyl-L-cysteinyl-glycine. This structure enables Glutathione to participate effectively in redox reactions and maintain the reduced state of other molecules, playing a critical role in cellular functions and protecting cells from oxidative damage.

Applications in Animal Research

Glutathione has been extensively studied in various animal models, revealing its potential in several key areas of research:

Antioxidant Defense

One of the main research interests in Glutathione is its role as an antioxidant. Animal studies have shown that Glutathione significantly reduces oxidative stress by neutralizing free radicals and reactive oxygen species (ROS). Research in rodents, for example, has demonstrated that Glutathione administration reduces oxidative damage to tissues, providing insights into antioxidant defense mechanisms and the prevention of oxidative stress-related diseases. These findings make Glutathione an invaluable tool for studying cellular protection and redox biology.

Detoxification

Glutathione is integral to the detoxification process. In various animal models, Glutathione has been shown to aid in the detoxification of harmful substances such as heavy metals, xenobiotics, and metabolic byproducts. Rodent studies, for instance, have revealed that Glutathione administration enhances the elimination of toxic compounds, advancing research into detoxification pathways and interventions for toxin exposure. These results highlight Glutathione’s potential in detoxification research, particularly in understanding toxin clearance mechanisms and developing strategies for protecting animals from toxic damage.

Immune System Support

Another promising area of research is Glutathione’s effect on the immune system. Animal studies have suggested that Glutathione can modulate immune responses and boost immune cell activity. In rodents, Glutathione administration has been associated with improved immune function and increased resistance to infections. These findings emphasize Glutathione’s potential for research into immune modulation and the development of treatments for immune-related disorders in animals.

Cellular Health and Function

Glutathione also plays a crucial role in maintaining cellular health. Research in animal models has shown that Glutathione influences essential cellular processes, including protein synthesis, DNA repair, and apoptosis. Studies in rodents, for example, have demonstrated that Glutathione administration can protect cells from damage, support cell survival, and enhance overall cellular function. These results suggest that Glutathione could be valuable for studying cellular health, as well as the mechanisms involved in cell protection and repair.

Mechanisms of Action

Understanding the mechanisms by which Glutathione exerts its effects is critical for researchers. Some of the key proposed mechanisms include:

Redox Regulation

Glutathione participates in redox reactions, maintaining a balance between the oxidized and reduced states within cells. This regulation is essential for protecting cells from oxidative damage and ensuring proper cellular function.

Detoxification Pathways

Glutathione is involved in the conjugation and elimination of toxic compounds. By binding to harmful substances, Glutathione facilitates their excretion from the body, reducing their toxic effects and supporting detoxification processes.

Immune Modulation

Glutathione’s ability to enhance immune function is believed to stem from its impact on immune cells. By modulating the activity of these cells, Glutathione helps support immune responses and improve resistance to infections.

Sourcing Glutathione Peptide for Research

For researchers looking to purchase wholesale Glutathione peptide, it is essential to obtain the compound from reputable suppliers. The quality and purity of the peptide are crucial to ensuring reliable and reproducible research results. Wholesale purchases can offer cost savings, particularly for large-scale research projects requiring significant quantities of the peptide.

When sourcing Glutathione, it is important to verify the supplier’s credentials and ensure they provide detailed product information, such as purity levels, storage conditions, and recommended handling procedures. High-quality Glutathione should be synthesized using advanced techniques and undergo stringent quality control to meet research standards.

Conclusion

Glutathione peptide presents a promising compound in animal research, with significant potential in antioxidant defense, detoxification, immune support, and cellular health. Researchers interested in purchasing wholesale Glutathione peptide can benefit from its versatile applications and robust properties. By understanding its mechanisms of action and sourcing it from trusted suppliers, scientists can unlock new research avenues to advance animal health and well-being through innovative studies.

References

  1. Meyer RM, Burgos-Robles A, Liu E, Correia SS, Goosens KA. A ghrelin-growth hormone axis drives stress-induced vulnerability to enhanced fear. Molecular psychiatry. 2014;19(12):1284-1294. doi:10.1038/mp.2013.135.
  2. Sun Y, Wang P, Zheng H, Smith RG. Ghrelin stimulation of growth hormone release and appetite is mediated through the growth hormone secretagogue receptor. Proceedings of the National Academy of Sciences of the United States of America. 2004;101(13):4679-4684.
    doi:10.1073/pnas.0305930101.
  3. Svensson J, Lönn L, Jansson JO, et al. Two-month treatment of obese subjects with the oral growth hormone (GH) secretagogue MK-677 increases GH secretion, fat-free mass, and energy expenditure. J Clin Endocrinol Metab. 1998;83(2):362-9.
  4. Welle S, Thornton C, Statt M, Mchenry B. Growth hormone increases muscle mass and strength but does not rejuvenate myofibrillar protein synthesis in healthy subjects over 60 years old. J Clin Endocrinol Metab. 1996;81(9):3239-43.
  5. Kim KR, Nam SY, Song YD, Lim SK, Lee HC, Huh KB. Low-dose growth hormone treatment with diet restriction accelerates body fat loss, exerts anabolic effect and improves growth hormone secretory dysfunction in obese adults. Horm Res. 1999;51(2):78-84.
  6. Welle S, Thornton C, Statt M, Mchenry B. Growth hormone increases muscle mass and strength but does not rejuvenate myofibrillar protein synthesis in healthy subjects over 60 years old. J Clin Endocrinol Metab. 1996;81(9):3239-43.
  7. Tavares ABW, Micmacher E, Biesek S, et al. Effects of Growth Hormone Administration on Muscle Strength in Men over 50 Years Old. International Journal of Endocrinology. 2013;2013:942030. doi:10.1155/2013/942030.
  8. Velloso CP. Regulation of muscle mass by growth hormone and IGF-I. British Journal of Pharmacology. 2008;154(3):557-568. doi:10.1038/bjp.2008.153.
  9. Weber MM. Effects of growth hormone on skeletal muscle. Horm Res. 2002;58 Suppl 3:43-8.
  10. Rennie M. Claims for the anabolic effects of growth hormone: a case of the Emperor’s new clothes? British Journal of Sports Medicine. 2003;37(2):100-105. doi:10.1136/bjsm.37.2.100.
  11. Johannsson G, Grimby G, Sunnerhagen KS, Bengtsson BA. Two years of growth hormone (GH) treatment increase isometric and isokinetic muscle strength in GH-deficient adults. J Clin Endocrinol Metab. 1997;82(9):2877-84.
  12. Harman SM, Blackman MR. The effects of growth hormone and sex steroid on lean body mass, fat mass, muscle strength, cardiovascular endurance and adverse events in healthy elderly women and men. Horm Res. 2003;60(Suppl 1):121-4.
  13. Norrelund H, Nair KS, Jorgensen JO, Christiansen JS, Moller N. The protein-retaining effects of growth hormone during fasting involve inhibition of muscle-protein breakdown. Diabetes. 2001;50(1):96-104.
  14. Adams GR.Insulin-like growth factorin muscle growth and its potential abuse by athletes. Western Journal of Medicine. 2001;175(1):7-9.
  15. Velloso CP. Regulation of muscle mass by growth hormone and IGF-I. British Journal of Pharmacology. 2008;154(3):557-568. doi:10.1038/bjp.2008.153.
  16. Christoffolete MA, Silva WJ, Ramos GV, et al. Muscle IGF-1-Induced Skeletal Muscle Hypertrophy Evokes Higher Insulin Sensitivity and Carbohydrate Use as Preferential Energy Substrate. BioMed Research International. 2015;2015:282984. doi:10.1155/2015/282984.
  17. Hamarneh SR, Murphy CA, Shih CW, et al. Relationship Between Serum IGF-1 and Skeletal Muscle IGF-1 mRNA Expression to Phosphocreatine Recovery After Exercise in Obese Men With Reduced GH. The Journal of Clinical Endocrinology and Metabolism. 2015;100(2):617-625.
    doi:10.1210/jc.2014-2711. doi:10.1210/jc.2014-2711.
  18. Heszele MF, Price SR. Insulin-like growth factor I: the yin and yang of muscle atrophy. Endocrinology. 2004;145(11):4803-5.
  19. Shavlakadze T, Chai J, Maley K, et al. A growth stimulus is needed for IGF-1 to induce skeletal muscle hypertrophy in vivo. J Cell Sci. 2010;123(Pt 6):960-71.

Age Restriction

You must be at least 21 years old to purchase products from Olympic Peptide.