GLOW GHK-Cu (50mg) / BPC-157 (10mg) / TB500 (10mg)

$165.00

SKU: YPB.218 Categories: ,

Description

A three-component co-formulation supplied for controlled research environments. Suitable for studies involving peptide characterization and method development in model systems.


Composition

• GHK-Cu
• BPC-157
• TB-500 (Thymosin Beta 4)
Appearance: Lyophilized powder in a sealed research vial


Research Focus (non-clinical)

• Combined evaluation of copper peptide, BPC-157, and TB-500 in in-vitro or ex-vivo assay systems
• Assay development, including chromatographic separation of three co-formulated peptides
• Stability characterization of a three-analyte lyophilized blend under laboratory storage conditions
• Method documentation for HPLC/LC-MS identity and purity assessments

For qualified research professionals and institutional laboratories. Not for human use.


Documentation & Quality Assurance

Each lot is sourced through our verified global supply chain with emphasis on traceability and quality control. We work diligently to obtain and maintain third-party analytical reports (HPLC/LC-MS) and Certificates of Analysis for each batch, as part of our ongoing quality process. These documents are reviewed internally and displayed as they become available. Independent third-party testing is also performed on select lots to confirm identity, purity, and alignment with our internal specifications.


Important Notice

This product is intended for laboratory research use only. It is not intended for human or veterinary use, and must not be used for diagnostic, therapeutic, or clinical purposes.
This material is not a drug, medical device, or dietary supplement, and has not been evaluated by the U.S. Food and Drug Administration.


Quality & Manufacturing

All materials are sourced from carefully vetted domestic and international manufacturing partners who follow quality systems consistent with ISO and cGMP principles. Each supplier is reviewed for reliability, documentation integrity, and transparency in testing.

We require a verified purity of 99% or higher and perform independent third-party spot testing to confirm that select lots meet our internal standards for identity, purity, and composition. Where available, endotoxin testing results are included on Certificates of Analysis to verify laboratory purity; their inclusion is for research quality assessment only and does not imply suitability for human or veterinary use.

All research materials are sealed for integrity and packaged for stability during storage and transport from manufacturing through final delivery.

Additional information

Weight 0.2 lbs

Storage Instructions

All our research peptides are manufactured using a lyophilization (freeze-drying) process. This method is designed to maintain product integrity and allows vials to remain stable during shipping for approximately 3–4 months.

Once a vial is reconstituted with bacteriostatic water, it should be stored in the refrigerator to help maintain stability. Under these conditions, reconstituted material is generally considered stable for up to 30 days.

Lyophilization is a dehydration technique in which compounds are frozen and then exposed to low pressure. This causes the water in the vial to sublimate directly from solid to gas, leaving behind a stable, crystalline white structure. This powder can be kept at room temperature until reconstitution.

Upon receipt, products should be stored away from heat and light. For short-term use, refrigeration at approximately 4°C (39°F) is suitable. For long-term storage (several months to years), vials may be placed in a freezer at approximately -80°C (-112°F). Freezing is the preferred method for preserving product stability over extended periods.

⚠️ Important Notice: These products are intended for research use only. Not for human consumption.

Certificate of Analysis

Every batch undergoes rigorous third-party laboratory testing to verify identity, purity (≥98%), and quality before release.

View Certificate of Analysis
Third-Party Verified ≥98% Purity HPLC & MS Tested

Research Use Only

These studies reference research-grade peptides for laboratory and scientific investigation only. Not for human consumption. Not intended to diagnose, treat, cure, or prevent any disease.

Published Scientific Research

Peer-reviewed laboratory research investigating regenerative peptides from leading scientific databases

In Vitro Study
PubMed

Bioinspired Engineering of Streamlined Skeletal Interoception: Neural Bioprinted Piezoelectric Scaffolds for Neuro-Vascularized Bone Regeneration.

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 2026

Moreover, beyond their canonical role within the interoceptive pathway, these neurons exert a direct effector role by secreting calcitonin gene-related peptide (CGRP) to promote bone repair. Upon sensing ultrasound (US) stimulation, the piezoelectric poly(l-lactide) (PLLA) component mediates mechanoelectrical coupling, triggering a Ca influx-induced effector response in the incorporated DRG neurons that enhances CGRP secretion and expression.

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Molecular Analysis
PubMed

FPR2 at the crossroads of inflammation and repair in the eye.

Drug discovery today 2025

Formyl peptide receptors (FPRs) belong to the G protein-coupled receptor family and are involved in regulating inflammatory processes, neuronal survival, and angiogenesis. We also examine the molecular mechanisms, signaling pathways, and ligand specificity that drive these divergent effects, positioning FPR2 as a promising yet complex therapeutic target in ophthalmology.

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In Vitro Study
PubMed

Dual Factor-Loaded Artificial Periosteum Accelerates Bone Regeneration.

ACS biomaterials science & engineering 2024

In the clinic, inactivation of osteosarcoma using microwave ablation would damage the periosteum, resulting in frequent postoperative complications. The prepared artificial periosteum showed a sustained release of SDF-1α and CGRP after 14 days of immersion.

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Molecular Analysis
PubMed

Thrombospondin-1.

The international journal of biochemistry & cell biology 1997

The molecular mechanisms underlying these activities are beginning to be examined. Medical interest in thrombospondin-1 centres on its roles in haemostasis and its effects on angiogenesis.

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