RESEARCH BLEND

GLOW | GHK-Cu + BPC-157 + TB-500 Research Blend

GHK-Cu + BPC-157 + TB-500 Research Peptide Blend
$49.00
Three-component GHK-Cu, BPC-157, and TB-500 laboratory research blend. Component literature does not establish a blend-specific mechanism, synergy, or efficacy. Research use only. Not for human or veterinary use.
✓ Scientific Identity Established
⏳ Laboratory Testing In Progress
⏳ Batch Documentation Pending
✓ Research Use Only
✓ U.S. Fulfillment
In Laboratory Testing
Lot Verification Variant-specific documentation
Traceable Lots VBL lot identification
Primary Literature Peer-reviewed sources
Research Use Only Laboratory research materials

Scientific Specifications

Reference characteristics for this multi-component laboratory research material.

Chemical Identity — CAS · Molecular Formula · Molecular Weight
Not applicable — multi-component peptide blend

The governed scientific identity of each constituent is presented in the Components section below.

Research Classification
Research Use Only (RUO). Not for human or veterinary use.

Components

Governed scientific identity of each constituent of this multi-component research material, in specification order.

Component 1

GHK-Cu

CAS Number
89030-95-5
Molecular Formula
C14H22CuN6O4 (complex)
Molecular Weight
401.91
Storage
-20°C
Research Classification
Research Use Only (RUO). Not for human or veterinary use.
Component 2

BPC-157

CAS Number
137525-51-0
Molecular Formula
C62H98N16O22
Molecular Weight
1419.53
Storage
-20°C
Research Classification
Research Use Only (RUO). Not for human or veterinary use.
Component 3

TB-500

CAS Number
885340-08-9
Molecular Formula
C38H68N10O14
Molecular Weight
889.01
Storage
-20°C
Research Classification
Research Use Only (RUO). Not for human or veterinary use.

SCIENTIFIC OVERVIEW

Scientific background and research classification for this laboratory reference material.

GLOW is the catalog designation for a labeled three-component laboratory reference mixture of GHK-Cu, BPC-157, and TB-500. TB-500 identity is conflicted across supplied records; no disputed TB-500 identity or combined molecular identity is adopted here. Research use only.

Primary Research Category
Analytical Sciences
Material Type
Lyophilized Peptide
Intended Use
Laboratory Research
Research Categories
Identity Verification Analytical Chemistry Method Validation

Mechanism of Action

Molecular interaction profile describing how this research material engages receptor systems and influences downstream biological signaling pathways.

No combined mechanism, synergy, interaction, compatibility, or efficacy is assigned. Component literature does not characterize the exact mixture and does not resolve the TB-500 conflict.

Primary Organ Systems
  • Connective Tissue
  • Integumentary System

Research Documentation

Laboratory documentation is presented when available for the selected product specification and current lot.

In Laboratory Testing
Laboratory Documentation In Progress

Laboratory documentation for the current lot is being completed.

Scientific References
Peer-Reviewed Literature

Explore published literature, clinical investigations, and foundational scientific research.

View References →
Laboratory Resources
Technical Guidance

Storage guidance, handling recommendations, analytical methods, and laboratory best practices.

Related Research
Companion Materials

Discover complementary research materials frequently studied alongside this compound.

Research Center

Scientific literature, laboratory resources, and related materials curated to support research involving this research material.

Scientific References
Peer-Reviewed Literature

Explore curated publications from peer-reviewed journals including clinical investigations, mechanistic studies, and foundational scientific literature.

Browse References →
Scientific Dossier
Deeper Technical Treatment

Comprehensive scientific documentation including literature review, mechanism, pharmacology, and study data for this research material.

Laboratory Resources
Technical Guidance

Storage guidance, handling information, analytical standards, research policies, and laboratory support documentation.

Research Library

Curated peer-reviewed literature grouped by the scientific identity each source evidences.

GHK-Cu — Component Evidence

Mechanistic StudyFEBS Letters 1988

Stimulation of collagen synthesis in fibroblast cultures by the tripeptide-copper complex glycyl-L-histidyl-L-lysine-Cu2+

Mechanistic study demonstrating that the tripeptide-copper complex GHK-Cu stimulates collagen synthesis in fibroblast cultures at low concentrations.
Velora Research Insight
Defining mechanistic anchor for GHK-Cu's collagen-synthesis research context; evidence is specific to the copper complex.
Review ArticleInternational Journal of Molecular Sciences 2018

Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data

Review synthesizing regenerative and protective research findings for the GHK-Cu peptide, including gene-expression profiling data.
Velora Research Insight
Consolidates the modern research context for GHK-Cu across gene-expression and tissue-remodeling literature.

BPC-157 — Component Evidence

Preclinical StudyJournal of Applied Physiology 2011

The promoting effect of pentadecapeptide BPC 157 on tendon healing involves tendon outgrowth, cell survival, and cell migration

Preclinical study: BPC-157 accelerates tendon fibroblast outgrowth, survival under oxidative stress, and migration via FAK-paxillin signaling (ex vivo/in vitro rat Achilles tendon).
Velora Research Insight
Anchors the BPC-157 component's tendon-repair research context; component-scoped evidence, not a Wolverine blend claim.

TB-500 — Component Evidence

Preclinical StudyWound Repair and Regeneration 2003

Thymosin beta 4 and a synthetic peptide containing its actin-binding domain promote dermal wound repair in db/db diabetic mice and in aged mice

Preclinical study: thymosin beta-4 and the seven-amino-acid actin-binding domain peptide LKKTETQ promote dermal wound repair in db/db diabetic and aged mice; the fragment reproduced parent-molecule activity.
Velora Research Insight
Directly matches the governed TB-500 fragment sequence; component-scoped wound-repair evidence.