$150.00 Original price was: $150.00.$99.99Current price is: $99.99.
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Purchase & earn 100 points!The Onyx Biolabs Glow Research Blend represents the pinnacle of regenerative research, combining three of the most studied peptides in existence into a single lyophilized system: GHK-Cu, TB-500, and BPC-157.
While many research protocols rely on single-vector approaches, this “Triple Agonist” blend is designed to investigate comprehensive tissue rejuvenation. It targets the entire lifecycle of cellular repair—from signaling new vessel growth to organizing collagen structures.
The Synergy of the Triad Research suggests that combining these three compounds creates a “cascade effect” that is superior to studying them in isolation:
GHK-Cu (The Architect): Known in literature for stimulating Collagen I & III production and glycosaminoglycans, acting as the foundation for structural skin firmness and elasticity.
TB-500 (The Mover): A synthetic fraction of Thymosin Beta-4, studied for its ability to upregulate actin, allowing faster cellular migration to damaged tissue. This is critical for minimizing fibrosis (scar tissue) during the healing process.
BPC-157 (The Fuel): Famed for its angiogenic properties, BPC-157 is hypothesized to accelerate blood vessel formation, ensuring that the rejuvenating tissues receive adequate oxygen and nutrients.
Research Applications & Storage This blend is lyophilized (freeze-dried) to maintain maximum stability. For research purposes, it should be reconstituted with Bacteriostatic Water to ensure sterility and proper solubility. Once reconstituted, the solution should be stored at 2-8°C.
Note: Due to the presence of Copper Peptide (GHK-Cu), the lyophilized powder may exhibit a natural blue hue. This is a marker of potency and authenticity.
References
Pickart L, et al. GHK-Cu (Copper Tripeptide-1) in Skin Regeneration and Anti-Aging. Int J Mol Sci. 2018.
Sikiric P, et al. BPC 157 and its effects on tendon, muscle, and ligament healing. Curr Pharm Des. 2010.
Philp D, et al. Thymosin beta 4 and its role in wound healing and tissue regeneration. Ann N Y Acad Sci. 2010.

