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Description

This formulation offers a refined strategy for regenerative investigation, uniting three well-characterized peptides in balanced proportions. BPC-157 contributes exceptional stability and wide-ranging protective actions, GHK-Cu provides gene modulation and structural remodeling benefits, and TB-500 supports enhanced cellular migration and tissue organization. Collectively, they deliver a versatile research tool that influences healing across multiple biological layers—from molecular signaling pathways to tissue-level architecture. This combination is particularly valuable for exploring complex regenerative models where simultaneous activation of diverse repair mechanisms is required.

Additional Information

  • Weight: 0.08 lbs

  • Dimensions: 0.87 × 1.18 × 0.87 in

  • Size: 50mg

For laboratory investigation only. Not approved for administration in humans or animals

Blend Composition

PEPTIDE COMPONENTS

  • BPC-157 – 5 mg (Body Protection Compound)

  • GHK-Cu – 35 mg (Copper Peptide)

  • TB-500 – 10 mg (Thymosin Beta-4 Fragment)

  • Formulation Ratio: 1 : 7 : 2 (BPC : GHK : TB)

PHYSICAL PROPERTIES

  • Total Content: 50 mg peptide mixture

  • Presentation: Lyophilized powder formulation

  • Appearance: Pale blue coloration attributed to GHK-Cu

  • Storage Conditions: Refrigerate at 36–46 °F (2–8 °C)

Combined Biological Activities

The combined activity of BPC-157, GHK-Cu, and TB-500 produces heightened repair and renewal effects.

Distinct Roles of Each Peptide

BPC‑157 (5 mg): Drives angiogenesis, modulates growth factors, coordinates systemic repair, and supports gastrointestinal protection.

GHK‑Cu (35 mg): Key agent for collagen remodeling, antioxidant defense, gene regulation, and anti‑aging activity.

TB‑500 (10 mg): Promotes cell migration, organizes actin structures, reduces inflammation, and enhances tissue flexibility.

Collective Outcomes of the Blend

Advanced Matrix Renewal: Collagen stimulation from GHK‑Cu reinforced by BPC‑157’s growth factor activity and TB‑500’s cellular organization.

Rapid Vascular Formation: BPC‑157 and TB‑500 synergize to accelerate angiogenesis.

Holistic Protection: Multiple antioxidant and cytoprotective mechanisms act in parallel.

Streamlined Healing Process: Each peptide contributes to distinct stages of the repair cascade, ensuring coordinated regeneration.

Research Highlights

This synergistic blend creates valuable opportunities in the field of regenerative investigation.

Regenerative Tissue Engineering

Exploring advanced strategies for tissue restoration:

• Superior scaffold integration and vascular development

• Strengthened extracellular matrix assembly

• Accelerated tissue maturation processes

• Lowered inflammatory response to biomaterial implants

Innovative Wound Repair Research

Comprehensive approaches to healing:

• Rapid epithelialization and wound closure

• Improved scar quality with reduced fibrosis

Greater tensile strength in repaired tissue

Shortened recovery time in chronic wound models

Athletic Recovery Applications

Insights for sports medicine and performance:

• Faster muscle and tendon regeneration

• Enhanced repair of exercise‑induced microdamage

• Improved flexibility and range of motion

• Reduced downtime between training sessions

Anti‑Aging and Longevity Studies

Investigating age‑related tissue decline:

• Skin rejuvenation and improved elasticity

• Potential for hair follicle regeneration

• Systemic anti‑aging benefits across multiple markers

• Enhanced mitochondrial function and cellular vitality

Experimental Guidelines

Critical Parameters for Successful Experimental Outcomes:

Preparation Instructions

Use bacteriostatic water and swirl gently to maintain peptide stability.

Formulation Balance

The 1 : 7 : 2 ratio highlights GHK‑Cu’s role in tissue remodeling.

Post‑Reconstitution Handling

Store refrigerated and utilize within the recommended timeframe.

Experimental Framework

Assess the blend’s performance against individual peptides to evaluate synergistic effects

This blend ratio strengthens tissue remodeling without compromising comprehensive recovery mechanisms.

Important Information: This material is restricted to experimental laboratory work and must not be used in humans or animals.

References

Synergy of GHK‑Cu and hyaluronic acid on collagen IV upregulation. Int J Cosmet Sci, 2023.

The potential of GHK as an anti‑aging peptide. Aging Pathobiol Ther, 2022.

Biotinylated GHK complexes with antioxidant properties. Int J Mol Sci, 2020.

Regenerative and protective actions of GHK‑Cu in light of new gene data. Int J Mol Sci, 2018.

Effect of copper tripeptide on hair growth mechanisms. Ann Dermatol, 2016.

GHK peptide modulation of cellular pathways in skin regeneration. Int J Mol Sci, 2015.

Mechanisms of peptides in preventing aged skin. Int J Cosmet Sci, 2009.

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