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GLOW (GHK-CU, TB-500, BPC-157) - 70mg

€199,00
€315,00
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37% OFF

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1,800+ Verified Orders!

GLOW (GHK-CU, TB-500, BPC-157) - 70mg

€199,00
€315,00
37% OFF
37% OFF

Third Party Tested

14-Day Money Back Guarantee

Fast Delivery Worldwide

GLOW is a combined research blend (GHK-Cu, TB-500, BPC-157) that has been linked in laboratory research to extracellular matrix remodeling, angiogenesis, modulation of inflammatory pathways, cellular stress response, and tissue regeneration.

Parameters
Value
Form
Powder
Contents
70 mg powder in a glass vial (research material)
Concentration (test)
Unspecified
Packaging
Glass bottle with sterile cap
Storage
Store in a dry place, at room temperature, away from light.
Molecular formula
Unspecified
Molecular weight
Unspecified
IUPAC name
Unspecified
CAS number
Unspecified
Other names
GHK-Cu (Copper tripeptide-1), TB-500 (Thymosin Beta-4 fragment), BPC-157 (Body Protection Compound-157), GLOW blend

In laboratory studies, GLOW is associated with research in areas such as:

  • soft tissue regeneration, collagen synthesis and healing,
  • angiogenesis, cell migration and re-epithelialization,
  • modulation of inflammatory mediators and stress pathways,
  • neuromuscular recovery and resistance to stress,
  • extracellular matrix stability and cellular integrity.
This content is for educational purposes only. It is not a recommendation for human use. The substance is intended for laboratory research only.

What is GLOW (GHK-Cu, TB-500, BPC-157)

GLOW is a combination of three research peptides associated with the processes of regeneration and maintenance of the extracellular matrix. In experimental models, a synergistic effect on cell communication, tissue remodeling and restoration of damaged structures is observed.

Research focuses on the areas of tissue healing and stress response, evaluating parameters of integrity, cell migration, and local signaling in a stress environment.

How GLOW works

In model systems, GHK-Cu has been associated with effects on ECM and growth factor gene expression; TB-500 (Tβ4 fragment) with cytoskeletal dynamics and cell migration; BPC-157 with local signaling and tissue stabilization. The goal is to support processes that may influence angiogenesis, re-epithelialization, and collagen remodeling.

At the cellular level, pathways related to inflammation and stress are monitored, as well as the integrity of mitochondrial and membrane parameters that can affect cell survival under challenging conditions.

The evaluation uses models of mechanical/chemical tissue stress and monitors markers of stability and structural recovery.

Researched effects and interesting facts

  • ECM remodeling: Clues to the impact on collagen synthesis and matrix stability.
  • Angiogenesis: Supporting vascular processes in healing models.
  • Cell mobility: Observations on migration and re-epithelialization under stress conditions.
  • Anti-inflammatory modulation: Changes in mediators of inflammation and stress response.
  • Neuromuscular recovery: Performance and endurance parameters in loading models.

Dosage in studies

The values ​​listed are derived solely from research studies and are not intended for real-world use outside of a laboratory environment.
  • Dose: Not specified (total mg/day for the mixture or µg–mg/kg/day conversions are given according to the model and study objective)
  • Form: injectable after reconstitution (preferred sc or im)
  • Frequency: 1–2 times daily according to experimental protocol
  • Duration: approximately 4 - 12 weeks depending on the monitored parameters
The dosage information is a summary of experimental data and does not constitute instructions for use or a recommendation.

Possible side effects

  • Gastrointestinal manifestations in oral protocols (nausea, discomfort)
  • Local and systemic changes in inflammatory markers depending on the model
  • Potential changes in sleep or excitability according to the parameters used

Resources

  • Review papers on GHK-Cu and expression of ECM markers
  • Publications on Tβ4/TB-500 and cell migration
  • Studies on BPC-157 in models of healing and local signaling
  • Methodologies for assessing angiogenesis and re-epithelialization in tissue models
This article is for informational purposes only. It does not constitute a recommendation or solicitation for use. The information provided is a summary of existing scientific literature and is for educational purposes only.

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Warning

This product is not intended for human or veterinary use. It is for collection or research purposes only. It cannot be used as food, dietary supplement or medicine! The information provided in the text on this page is for educational purposes only and does not constitute medical or other advice.