
GHK-Cu
Research-grade GHK-Cu 100mg lyophilised powder — 99.3% HPLC purity, COA verified. Copper peptide complex for wound healing and skin research.
Free shipping over $199

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GLOW is available in Australia from Peptide Warehouse Australia with fast domestic shipping to all states and territories.
GLOW is a combined research blend supplying three of the most studied repair-and-recovery peptides in a single 70mg vial: GHK-Cu (copper tripeptide, studied for collagen and skin biology), BPC-157 (studied for tissue repair), and TB-500 (Thymosin Beta-4 fragment, studied for cell migration and recovery). The blend format lets researchers study these complementary repair pathways together under a single reconstitution.
⚠ For in-vitro laboratory research use only. Not approved for human or veterinary use. Not drugs, food supplements, or cosmetics. Not evaluated or approved by the TGA. You must be 18 years of age or older to purchase. By placing this order, you confirm you are a qualified researcher and will use this compound strictly in accordance with all applicable Australian laws and regulations.
| Purity | ≥99% (HPLC) |
|---|---|
| Format | Lyophilized Blend powder |
| Testing | HPLC purity + mass spectrometry identity, COA verified |
| Storage | Lyophilised: −20°C · Reconstituted: 2–8°C, use within 28 days |
| Research Use | In-vitro laboratory research use only |
GLOW is a combined research blend supplying three complementary repair-and-recovery peptides in a single 70mg vial: GHK-Cu (copper tripeptide, studied for collagen and skin biology), BPC-157 (studied for tissue repair and angiogenesis), and TB-500 (a Thymosin Beta-4 fragment, studied for cell migration and recovery). It is intended as a single-reconstitution research tool for studying these pathways together. Each component is supplied at research grade with ≥99% HPLC purity. For in-vitro research use only.
A combined blend lets researchers study three complementary repair pathways under a single reconstitution and protocol, rather than preparing three separate vials. Researchers who need to vary the ratio of each component independently may prefer to purchase GHK-Cu (/products/ghk-cu), BPC-157 (/products/bpc-157) and TB-500 (/products/tb-500) separately. The GLOW blend is offered for convenience in combination-pathway research. Not for human consumption — for research use only.
Reconstitution: Add 2–3mL of bacteriostatic water slowly down the inside wall of the vial with a 31G syringe and swirl gently until fully dissolved; do not shake. Because the blend contains GHK-Cu, the reconstituted solution will appear slightly blue-green in colour due to the copper complex — this is normal and expected, not contamination. Storage: Lyophilised — store at −20°C for up to 24 months. Reconstituted — refrigerate at 2–8°C and use within 4 weeks, protected from light. BAC water is available at /products/bac-water-10ml. Not for human consumption — for research use only.
Legal status: the peptides in the GLOW blend are legal to purchase in Australia for legitimate laboratory research purposes. The blend is not for human consumption, therapeutic, cosmetic, or veterinary use and is not TGA-approved. Purchasers must be 18+ and confirm research-only intent. Quality: each batch is independently verified by third-party HPLC at ≥99% purity with a full COA including HPLC purity %, mass spectrometry identity confirmation, and sterility screening. Full COAs are available in our COA Library.
Peptide Warehouse Australia stocks the GLOW 70mg blend and ships nationwide via Australia Post with full tracking. Orders placed before 12PM AEST dispatch the same business day from our Melbourne warehouse; orders after 12PM AEST dispatch the next business day. Standard Post $8.99 (2–6 business days); Express Post $13.99 (1–3 business days); free shipping on all orders over $199 AUD. All orders ship in discreet plain packaging with no external branding. Not for human consumption — for research use only.
The 70mg total is split across the three component peptides in a single vial: a copper-tripeptide component (GHK-Cu) studied for collagen and skin biology, a tissue-repair component (BPC-157), and a Thymosin Beta-4 fragment component (TB-500) studied for cell migration and recovery. The exact per-component split is provided on the Certificate of Analysis for each batch. Researchers who need to vary the ratio independently should instead purchase the three peptides separately — GHK-Cu (/products/ghk-cu), BPC-157 (/products/bpc-157) and TB-500 (/products/tb-500). Not for human consumption — for research use only.
Both are combination research blends covering skin and tissue-repair pathways, but they differ in composition. The GLOW blend pairs GHK-Cu with BPC-157 and TB-500 — weighting it toward copper-peptide skin biology plus repair. The KLOW blend (/products/klow-peptide-blend) adds a melanocortin/KPV-type component to the repair peptides, shifting the research emphasis. They are distinct research tools; the right choice depends on which pathway combination the protocol is investigating. Not for human consumption — for research use only.
GHK-Cu (copper tripeptide) is one of the most studied peptides in skin biology, investigated for collagen and elastin synthesis, antioxidant signalling and extracellular-matrix remodelling. BPC-157 is studied for tissue-repair and angiogenesis pathways across multiple tissue models. TB-500 (a Thymosin Beta-4 fragment) is studied for actin regulation, cell migration and recovery. Combined, they let researchers examine complementary skin-and-repair pathways under a single reconstitution rather than three separate preparations. Not for human consumption — for research use only.
The blue-green tint comes from the GHK-Cu component: copper(II) ions coordinated in the tripeptide complex absorb light in the red-orange range (~600–700 nm), giving the characteristic blue-green colour by transmitted light — the same chemistry behind copper-sulfate solutions. This is normal and expected for any GHK-Cu-containing preparation and is not a sign of contamination. A clear blue-green solution indicates correct reconstitution; a cloudy or particulate solution would indicate a problem. Not for human consumption — for research use only.
GHK-Cu and Thymosin Beta-4 fragments are both frequently cited in dermatological research literature in the context of topical-application models, so combination blends like GLOW are of interest in skin-research settings. Our GLOW blend is supplied as a lyophilised research-grade powder for in-vitro laboratory use; researchers working with topical formulation models would dissolve it in an appropriate aqueous vehicle suited to their experimental design. Not for human consumption or cosmetic use — for research use only.
Because the blend contains three peptides, good storage practice protects all of them: keep the lyophilised vial at −20°C, away from moisture and light, for up to 24 months. Once reconstituted, refrigerate at 2–8°C, protect from light, and use within about 4 weeks; avoid repeated freeze-thaw cycles which can degrade peptide integrity. The copper component makes light protection particularly worthwhile. Always confirm the solution is clear (blue-green is expected) before use. Not for human consumption — for research use only.

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GHK-Cu: Copper Peptide Research Guide
A detailed review of GHK-Cu (glycyl-L-histidyl-L-lysine copper complex) preclinical research, mechanisms, and protocols for tissue repair and skin biology research.
Research deep-dive →What Is TB-500? Thymosin Beta-4 Research Guide
TB-500 is a synthetic peptide fragment of thymosin beta-4, studied for its roles in angiogenesis, actin regulation, and tissue repair. Here is what the current research shows.
Research deep-dive →BPC-157 Research Overview: What the Science Shows
A comprehensive review of preclinical BPC-157 research including its studied mechanisms, molecular structure, and key findings from published literature.
Research deep-dive →Part of our
Skin & Cellular Research research collection →Or use our Peptide Calculator to work out reconstitution and syringe units for this compound.
Pricing, stock, and COA last verified June 2026
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