GLOW is a three-peptide regenerative blend combining BPC-157, TB-500 and GHK-CU for research involving tissue remodeling, cellular repair, and inflammatory pathways.
The GLOW blend brings together three well-studied peptides frequently used in models of tissue regeneration and structural recovery. GHK-Cu is researched for its copper-mediated influence on gene expression, collagen support, and wound environments. BPC-157 is examined for its role in angiogenesis, gut-derived signaling, and inflammatory modulation. TB-500, a fragment of thymosin beta-4, is used in studies involving actin regulation, cellular migration, and structural organization. Together, the 50mg/10mg/10mg ratio is designed to support synergistic investigation across cellular repair, inflammation balance, and remodeling pathways.
Pen Dosage Chart
MitoRepair Blend SS-31 10mg / MOTS-c 10mg QuickPen Pro
Volume
3.0 mL
mg/mL
3.33 mg/mL of each peptide
Click-to-Dose
1 click = 0.033 mg of each peptide
Example(s)
30 clicks(10 of Pen Scale) = 1 mg of each peptide
Benefits
Comprehensive Regeneration Through Synergistic Action: The Glow Blend combines BPC-157, TB-500, and GHK-Cu to deliver a powerful, multi-pathway regenerative effect. Together, these peptides support cellular repair, angiogenesis, and collagen synthesis, addressing structural, vascular, and dermal regeneration simultaneously. Their combined activity creates a broad-spectrum research model for recovery, rejuvenation, and tissue optimization.
Acceleration of Tissue and Wound Healing: BPC-157 accelerates connective tissue healing through angiogenic and fibroblast activation, while TB-500 enhances cell migration and cytoskeletal organization. GHK-Cu contributes by stimulating collagen and elastin synthesis, supporting rapid wound closure and improved structural integrity. This synergistic process results in faster, more complete healing across multiple tissue types.
Enhanced Collagen Production and Skin Renewal: GHK-Cu within the Glow Blend upregulates collagen, elastin, and glycosaminoglycan synthesis, improving dermal structure and elasticity. BPC-157 supports fibroblast proliferation, while TB-500 optimizes tissue organization. Together, they promote smoother skin texture, improved tone, and visible rejuvenation in experimental models of skin repair and regeneration.
Stimulation of Angiogenesis and Microcirculation: All three peptides synergize to enhance angiogenesis and microvascular regeneration. TB-500 upregulates VEGF and actin-based migration, BPC-157 stabilizes endothelial cells and vessel integrity, and GHK-Cu stimulates new capillary formation. This leads to improved blood flow, oxygenation, and nutrient delivery in injured or aging tissues.
Reduction of Inflammation and Oxidative Stress: Research indicates that the Glow Blend significantly reduces inflammatory cytokines (TNF-α, IL-6) and increases antioxidant enzyme activity. This helps minimize oxidative damage, swelling, and tissue degradation, providing a balanced internal environment for regeneration and recovery under inflammatory or post-injury conditions.
Muscle and Tendon Recovery Enhancement: The combination of BPC-157 and TB-500 provides targeted support for muscle, tendon, and ligament regeneration. Their coordinated activation of fibroblasts, satellite cells, and angiogenic pathways improves the healing rate and biomechanical quality of repaired tissues. GHK-Cu adds structural stability by enhancing collagen matrix integrity.
Support for Skin Health, Elasticity, and Youthful Appearance: GHK-Cu contributes to epidermal renewal and dermal elasticity by regulating extracellular matrix protein synthesis and skin hydration. When combined with the regenerative and anti-inflammatory activity of BPC-157 and TB-500, the Glow Blend provides a comprehensive model for dermal rejuvenation, elasticity maintenance, and visible anti-aging research outcomes.
Neuroprotective and Vascular Repair Effects: BPC-157 supports neuronal regeneration and neurovascular protection, while TB-500 aids in microcapillary restoration. Together with GHK-Cu’s ability to improve vascular wall repair and reduce oxidative stress, this trio supports nervous system recovery, cognitive function, and peripheral circulation integrity in experimental models.
Improved Joint and Connective Tissue Flexibility: Through its collagen-regenerative and anti-fibrotic activity, the Glow Blend enhances joint lubrication, cartilage health, and connective tissue flexibility. Studies indicate improved mobility and faster recovery from joint inflammation or injury, making it suitable for regenerative orthopedic research applications.
Anti-Aging and Longevity Pathway Activation: GHK-Cu’s influence on gene expression combined with the regenerative signaling of BPC-157 and TB-500 supports cellular rejuvenation and longevity-associated pathways. Research shows modulation of genes linked to tissue repair, inflammation control, and oxidative balance, making the Glow Blend a strong candidate in anti-aging and vitality research.
Protection Against Fibrosis and Scarring: Each component of the Glow Blend contributes to the reduction of scar formation and fibrosis. BPC-157 regulates nitric oxide signaling and collagen arrangement, TB-500 improves cellular alignment, and GHK-Cu modulates TGF-β to minimize fibrotic tissue buildup. Together, they promote functional and aesthetic tissue recovery.
Synergy in Systemic Regeneration and Recovery: When combined, BPC-157, TB-500, and GHK-Cu act on complementary molecular pathways — cytoskeletal repair, angiogenesis, fibroblast activity, and antioxidant defense. This multi-axis synergy supports comprehensive regeneration across muscular, dermal, neural, and vascular systems, making Glow Blend a robust research model for holistic recovery and rejuvenation.
In most jurisdictions, purchasing peptides for legitimate scientific research is legal. However, laws vary by country and region. It is the researcher’s responsibility to ensure compliance with all local regulations. We do not sell to individuals for personal use.
We accept major credit cards, bank transfers, and cryptocurrency. Most domestic orders ship within 24–48 hours. International shipping is available to approved research institutions (delivery times vary by country and customs regulations).
Yes. Every batch undergoes independent third-party HPLC and mass spectrometry testing to verify purity (typically ≥98%) and identity. Certificates of Analysis (CoA) are available upon request for every product.
Reconstitution is typically done using bacteriostatic water or sterile water. Gently inject the solvent down the side of the vial and allow it to dissolve slowly. Do not shake vigorously. Refer to the specific peptide’s certificate of analysis or research protocol for recommended concentration.
For maximum stability, lyophilized (freeze-dried) peptides should be stored in a freezer at –20°C or below. Reconstituted peptides should be kept refrigerated (2–8°C) and typically used within 30–60 days. Always protect from light and avoid repeated freeze-thaw cycles.
Research peptides are short chains of amino acids designed for laboratory and scientific investigation. They are used exclusively for in vitro and in vivo research to study biological processes, tissue repair, cellular signaling, and other physiological mechanisms. They are not intended for human or animal consumption.
No. All peptides sold on this website are strictly for research and laboratory use only. They have not been evaluated by the FDA for safety or efficacy in humans. Researchers must comply with all applicable local, state, and federal regulations.
BPC-157 (Body Protection Compound-157) is a synthetic peptide derived from a protective protein found in the human stomach. It is one of the most widely studied research peptides for its potential effects on tissue healing, angiogenesis, gut health, and anti-inflammatory pathways in preclinical models.
The QuickPen Pro is a ready-to-use, ultra-convenient peptide delivery device designed for precise and consistent research dosing. It combines a high-quality pen injector with pre-measured research peptides for improved accuracy and ease of laboratory application.
A research-focused overview of ipamorelin — its mechanism as a selective GHS-R1a agonist, research applications in GH axis and metabolic studies, and how it compares to other GH secretagogues.
A research-focused overview of ipamorelin — its mechanism as a selective GHS-R1a agonist, research applications in GH axis and metabolic studies, and how it compares to other GH secretagogues.
A research-focused comparison of BPC-157 and TB-500 — two of the most studied peptides for tissue repair, covering their distinct mechanisms and why they are often investigated together.
A research-focused comparison of BPC-157 and TB-500 — two of the most studied peptides for tissue repair, covering their distinct mechanisms and why they are often investigated together.
GHK-Cu is a naturally occurring copper tripeptide complex with one of the broadest research profiles in regenerative biology. Studied for collagen synthesis, wound healing, hair follicle stimulation, antioxidant gene activation,...
GHK-Cu is a naturally occurring copper tripeptide complex with one of the broadest research profiles in regenerative biology. Studied for collagen synthesis, wound healing, hair follicle stimulation, antioxidant gene activation,...