GLOW (70mg)

GLOW 70MG is a powerful blend of GHK-Cu, BPC-157, and TB-500 designed for research exploring faster recovery, cellular rejuvenation, and enhanced performance resilience. Scientists value this trio for its potential to support tissue renewal, skin vitality, and healthy inflammation balance. Delivered at 99%+ purity, GLOW 70MG embodies the elite reliability of Zeus Peptides.

$299.99

In stock

What is GLOW (70mg)?

GLOW 70MG is a powerhouse research blend combining three highly regarded peptides—GHK-Cu, BPC-157, and TB-500—designed to help scientists explore pathways linked to recovery, repair, and cellular renewal. Researchers value this blend for its potential to support tissue restoration, skin vitality, and overall cellular resilience. With its synergistic profile and 99%+ purity, GLOW 70MG delivers the elite reliability and consistency expected from Zeus Peptides.

What Are the Effects of GLOW 70MG?

  • Supports deeper recovery by helping researchers explore how cells repair and rebuild after stress or physical strain
  • May promote healthier inflammatory balance, making it useful in studies focused on resilience and long-term wellness
  • Is being explored for its role in skin vitality, collagen expression, and overall tissue rejuvenation pathways
  • Combines three synergistic peptides for broad, multi-pathway research into renewal, performance, and structural support

Chemical Structure of GLOW (70mg)

  • Chemical Name: GHK-Cu, BPC-157, TB-500 (Composite Blend)
  • Sequence / Formula: Multiple peptide sequences — GHK-Cu (glycyl-L-histidyl-L-lysine copper complex), BPC-157 (Body Protection Compound fragment), TB-500 (Thymosin Beta-4 fragment 17-34)
  • Molecular Weight: Varies by component (total lyophilized mass 70mg)
  • Structural Notes: Supplied as a lyophilized powder; each peptide carries unique biological motifs contributing to the blend’s multi-pathway research utility

The Zeus Peptides Advantage

  • 99%+ purity — third-party lab verified
  • Premium USA-made research peptides
  • Exceptional stability and consistency for reliable results
  • Trusted by researchers seeking elite-level performance insights

Research-Use Only Disclaimer

This product is provided strictly for research purposes only. It is not approved for human or veterinary use, nor is it intended as a dietary supplement or medical therapy. Handle only in a controlled laboratory environment by qualified personnel using proper biosafety procedures. Keep out of reach of children. Misuse may lead to unknown adverse effects. The information provided is for educational and research context only and does not represent medical advice or validated therapeutic claims.

Storage & Handling Information

Zeus Peptides products are prepared using an advanced lyophilization (freeze-drying) process designed to protect compound integrity. This method allows peptides to remain stable during transit for approximately 3–4 months without degradation.

Once a peptide has been reconstituted with bacteriostatic water, it must be stored under refrigeration to maintain its stability. After mixing, reconstituted solutions are generally stable for up to 30 days when kept cold.

Lyophilization—sometimes referred to as cryodesiccation—is a controlled dehydration technique in which peptides are frozen and placed under reduced pressure. This environment causes moisture within the vial to convert directly from ice to vapor, resulting in a dry, crystalline powder. In this unreconstituted state, peptides may be safely kept at room temperature until preparation is required.

After delivery, peptides should be shielded from light and excessive heat. For short-term use—ranging from days to several weeks or months—refrigerated storage below 4°C (39°F) is typically sufficient. Lyophilized peptides often tolerate room-temperature storage for limited periods, making this acceptable when use is planned relatively soon.

For extended storage lasting several months or longer, peptides should be placed in a deep freezer at -80°C (-112°F). Long-term freezing offers the highest level of stability and is the preferred method for preservation over time.