4-peptide research blend in one vial: GHK-Cu + BPC-157 + TB-500 + KPV. Four-peptide research blend — GHK-Cu, BPC-157, TB-500 and KPV in one vial.
Also known as: Recovery Code Formula
A blend has one whole-vial purity, but the number that decides what you're holding is the net content of each component — an HPLC run resolves a separate peak for each. So we verify KLOW component by component. Each links to its own compound page, where its full independent testing lives.
| Component | Typical mg | Role in the blend | Verified purity | |
|---|---|---|---|---|
| GHK-Cu | 50 mg | Collagen synthesis, angiogenesis, ECM remodelling | 99.7% · 692 tests | View testing → |
| BPC-157 | 10 mg | Local soft-tissue and gut-lining repair | 99.3% · 784 tests | View testing → |
| TB-500 | 10 mg | Cell migration, systemic recovery signalling | 99.4% · 350 tests | View testing → |
| KPV | 10 mg | Anti-inflammatory signalling (NF-κB pathway) | 99.6% · 198 tests | View testing → |
Composition varies by vendor. The components above are consistent across shops, but the milligrams can differ — always dose by the individual component amounts printed on your vial, never by a generic “blend dose.”
A blend is the single hardest product to trust — the whole-vial purity tells you the material is clean, but not whether every peptide is present in the right amount. Two questions decide that, and both are answerable in a lab.
Mass spec (or a clean HPLC peak per compound) confirms each peptide is in the vial — not one short, not a cheaper substitute standing in for the expensive one.
Tested milligrams vs. labelled milligrams, per component. This is where blends fail quietly — one component underdosed to pad margin while the vial still “contains” everything.
Tests run on a KLOW vial as sold — broken down per component. This is the data no shop and no competitor publishes.
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| KPV | — | 10.27 mg | ✓ present | — |
| GHK-Cu | — | 50.86 mg | ✓ present | — |
| BPC-157 | — | 10.32 mg | ✓ present | — |
| TB-500 | — | 10.49 mg | ✓ present | — |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | 50 mg | 51.31 mg | ✓ present | Within (+2.6%) |
| KPV | 10 mg | 11.48 mg | ✓ present | Over (+14.8%) |
| BPC-157 | 10 mg | 11.61 mg | ✓ present | Over (+16.1%) |
| TB-500 | 10 mg | 10.51 mg | ✓ present | Within (+5.1%) |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | — | 51.79 mg | ✓ present | — |
| BPC-157 | — | 10.26 mg | ✓ present | — |
| TB-500 | — | 10.46 mg | ✓ present | — |
| KPV | — | 10.15 mg | ✓ present | — |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | 50 mg | 53.49 mg | ✓ present | Within (+7%) |
| KPV | 10 mg | 10.63 mg | ✓ present | Within (+6.3%) |
| BPC-157 | 10 mg | 9.29 mg | ✓ present | Within (-7.1%) |
| TB-500 | 10 mg | 10.31 mg | ✓ present | Within (+3.1%) |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | 50 mg | 50.21 mg | ✓ present | Within (+0.4%) |
| BPC-157 | 10 mg | 10.09 mg | ✓ present | Within (+0.9%) |
| TB-500 | 10 mg | 10.26 mg | ✓ present | Within (+2.6%) |
| KPV | 10 mg | 10.12 mg | ✓ present | Within (+1.2%) |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| TB-500 | 10 mg | 11.46 mg | ✓ present | Over (+14.6%) |
| BPC-157 | 10 mg | 11.89 mg | ✓ present | Over (+18.9%) |
| KPV | 10 mg | 11.94 mg | ✓ present | Over (+19.4%) |
| GHK-Cu | 50 mg | 52.19 mg | ✓ present | Within (+4.4%) |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | — | 51.76 mg | ✓ present | — |
| KPV | — | 11.78 mg | ✓ present | — |
| BPC-157 | — | 9.45 mg | ✓ present | — |
| TB-500 | — | 10.23 mg | ✓ present | — |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | — | 57.01 mg | ✓ present | — |
| KPV | — | 12.63 mg | ✓ present | — |
| BPC-157 | — | 10.35 mg | ✓ present | — |
| Thymosin-Alpha 1 (A1) | — | 10.06 mg | ✓ present | — |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| GHK-Cu | 50 mg | 51.57 mg | ✓ present | Within (+3.1%) |
| KPV | 10 mg | 10.54 mg | ✓ present | Within (+5.4%) |
| BPC-157 | 10 mg | 10.18 mg | ✓ present | Within (+1.8%) |
| TB-500 | 10 mg | 10.42 mg | ✓ present | Within (+4.2%) |
| Component | Labelled | Net content (tested) | Identity (LC-MS) | Vs. label |
|---|---|---|---|---|
| TB-500 | 10 mg | 11.44 mg | ✓ present | Over (+14.4%) |
| BPC-157 | 10 mg | 10.81 mg | ✓ present | Within (+8.1%) |
| KPV | 10 mg | 11.04 mg | ✓ present | Over (+10.4%) |
| GHK-Cu | 50 mg | 53.77 mg | ✓ present | Within (+7.5%) |
Until more KLOW vials are tested, the strongest signal is how each component performs in single-compound testing across the shops we track. Tap any card for its full data.
KLOW is a four-peptide research blend combining GHK-Cu, BPC-157, TB-500, and KPV in one lyophilised vial, sold strictly for research use only. The lab test table and shop directory above show Peptigrity's independent verification data for KLOW vials — whole-vial HPLC purity plus per-component net content — updated as new certificates are submitted.
KLOW is a four-peptide research blend combining GHK-Cu, BPC-157, TB-500 (labelled on most certificates as Thymosin Beta-4), and KPV in a single lyophilised vial, most commonly at 80 mg total in a 50:10:10:10 ratio. It is the three-peptide GLOW blend plus KPV — the "K." Each component is a distinct compound with its own mechanism: the blend targets overlapping tissue-repair and anti-inflammatory pathways rather than a single receptor. KLOW is not an approved drug in any jurisdiction.
The four components, and what each contributes:
| Component | Class & attributes | Typical mg | Role in the blend |
|---|---|---|---|
| GHK-Cu | Copper tripeptide (glycyl-L-histidyl-L-lysine + Cu²⁺), MW ~340 Da | 50 mg | Collagen synthesis, angiogenesis, ECM remodelling |
| BPC-157 | 15-amino-acid pentadecapeptide, MW 1419.5 Da | 10 mg | Local soft-tissue and gut-lining repair |
| TB-500 (Thymosin β-4) | 43-amino-acid synthetic fragment of thymosin beta-4 | 10 mg | Cell migration, systemic recovery signalling |
| KPV | Tripeptide (Lys-Pro-Val), C-terminal fragment of α-MSH | 10 mg | Anti-inflammatory signalling (NF-κB pathway) |
The copper in GHK-Cu gives a correctly-made KLOW vial a distinctive pale-blue tint — a labelled "Blue Lyophilized Powder" on a certificate is consistent with GHK-Cu being present, though it is a visual cue, not a purity guarantee.
No controlled clinical trial of the KLOW blend itself has been published as of July 2026 — every efficacy claim about the combination is extrapolated from single-compound research, most of it preclinical. The four components differ sharply in how much evidence stands behind them, so they should not be treated as equally proven.
GHK-Cu has the broadest human-relevant record, largely from the foundational copper-peptide work of Dr. Loren Pickart, with documented effects on collagen and wound-repair gene expression — much of it in dermatological and in vitro contexts (evidence level: preclinical and cosmetic-human). BPC-157 is supported by more than 100 preclinical studies, predominantly from Prof. Predrag Sikirić's group at the University of Zagreb, beginning with the 1993 foundational paper; a 2025 orthopaedic systematic review found only one clinical study met inclusion criteria among 544 screened, underscoring that human data remains minimal (evidence level: preclinical; no human RCTs). TB-500 (thymosin beta-4) has extensive preclinical wound-healing data and reached a first-in-human Phase 1 safety trial, but no efficacy RCT (evidence level: preclinical efficacy, Phase 1 safety only). KPV has preclinical anti-inflammatory data via NF-κB inhibition and no human trials (evidence level: preclinical only).
The component-level science is covered in depth in the GHK-Cu science guide, the BPC-157 science guide, and the TB-500 science guide.
KLOW is GLOW with one added component: GLOW is a three-peptide blend (GHK-Cu, BPC-157, TB-500); KLOW adds KPV for a fourth. GLOW is oriented toward tissue repair and skin, while KLOW layers in KPV's anti-inflammatory signalling. GLOW's composition varies widely between shops (from roughly 10 mg to 70 mg total), whereas KLOW is more standardised around 80 mg at 50:10:10:10. Neither blend has controlled human trial data; both inherit their rationale from single-compound research.
| Blend | Components | Typical total | Difference | Research focus |
|---|---|---|---|---|
| KLOW | GHK-Cu + BPC-157 + TB-500 + KPV | 80 mg (50:10:10:10) | Adds KPV | Repair + anti-inflammatory |
| GLOW | GHK-Cu + BPC-157 + TB-500 | Varies (~10–70 mg) | No KPV | Repair + skin |
For the two-peptide repair pairing many buyers compare against, see BPC-157 vs TB-500.
A blend is harder to verify because a single purity figure cannot tell you whether all four peptides are present in the right amounts. A certificate reports a whole-vial HPLC purity (how clean the material is, e.g. 99.62%) — but that number can read above 99% while one component is substantially underdosed. The verifiable questions for a blend are therefore per-component: identity (is each peptide actually in the vial, confirmed by mass spectrometry) and net content (does each component's tested milligram amount match the label). This is exactly where a blend can fail quietly — a vial can be clean, correctly labelled overall, and still short one expensive component. Peptigrity's independent lab-test database tracks both dimensions; for how to read these results yourself, see how to read peptide lab test results.
Peptigrity verifies a KLOW vial through four independent measurements from an accredited third-party lab: LC-MS identity confirming each of the four peptides is present, HPLC-UV purity for the whole vial, per-component net content (tested mg versus labelled mg for GHK-Cu, BPC-157, TB-500, and KPV individually), and endotoxin testing. On a representative certificate from Freedom Diagnostics, a KLOW vial returned 99.62% HPLC purity with all four identities confirmed — but net content showed GHK-Cu measured at roughly 57 mg against a 50 mg label, the kind of per-component variance a single purity number would conceal. Peptigrity purchases vials anonymously at standard pricing and publishes the unedited certificate; the methodology, including the trust-score weighting applied to shops, is documented in how we calculate trust scores. The wider verification process is covered in the how to test peptides hub and the testing labs directory.
In a fixed blend you can only set the dose of one component — the ratio then determines the other three, which is what makes blend dosing different from single-peptide dosing. If you reconstitute an 80 mg KLOW vial and dose to a target amount of BPC-157, the GHK-Cu, TB-500, and KPV amounts are locked by the 50:10:10:10 ratio and cannot be adjusted independently. The blend calculator works this math per component so the peptide you care about isn't accidentally underdosed. No clinical dosing protocol exists for KLOW; any figure is community-derived from single-compound research, not a validated regimen. For component-level dosing context, see the GHK-Cu dosage guide and the BPC-157 + TB-500 stack guide.
None of KLOW's four peptides is approved by the FDA or any other regulator for human use as of July 2026, and KLOW is sold strictly as a research-use-only compound. In April 2026 the FDA removed BPC-157, TB-500, and KPV from its 503A Category 2 bulk-substances list but did not add them to Category 1, leaving them in a regulatory gray zone — neither prohibited nor authorised for pharmacy compounding, with no FDA-approved product and no USP monograph. The FDA's Pharmacy Compounding Advisory Committee is scheduled to review BPC-157, KPV, and TB-500 on July 23–24, 2026, and the agency's pre-meeting briefing documents propose not adding them to the 503A Bulks List; these are advisory proposals, not final determinations. Injectable GHK-Cu sits on a separate, later review track anticipated by early 2027. BPC-157 and TB-500 are both prohibited by the World Anti-Doping Agency (BPC-157 under S0, thymosin beta-4 as a prohibited growth factor), so any blend containing them is banned in sport. Buyers are responsible for confirming local import rules for research chemicals in their jurisdiction.
In a blend you can only set the dose of one component — the rest follow the fixed ratio. Our calculator does that math so you don't underdose the peptide you actually care about.
Enter each component's milligrams and your BAC water — get per-component units for one syringe draw.
Open the blend calculator →How much bacteriostatic water, mixing without shaking, storage, and shelf life once mixed.
Read the reconstitution guide →KLOW is GLOW plus KPV. GLOW is a three-peptide blend of GHK-Cu, BPC-157, and TB-500 aimed at tissue repair and skin; KLOW adds KPV, the Lys-Pro-Val tripeptide from α-MSH, to layer in anti-inflammatory signalling. The base three peptides are the same. KLOW is also more standardised in composition — typically 80 mg at 50:10:10:10 — whereas GLOW's total and ratio vary considerably between shops.
Yes, but it takes two kinds of measurement rather than one. A lab reports a single whole-vial HPLC-UV purity — how clean the material is — plus the net content of each of the four peptides separately, with mass-spec identity confirmation. Both matter: whole-vial purity can read above 99% while one component is underdosed, so the per-component net content is the number that tells you what's really in the vial.
There is no standardised KLOW recipe. The four components are consistent across vendors, but each shop sets its own total and ratio. Most KLOW is sold at 80 mg (50 mg GHK-Cu, 10 mg each of BPC-157, TB-500, and KPV), but this is a market convention, not a specification. Always read the specific milligram amounts on your own vial's label and certificate before doing any dosing math.
KLOW is generally sold as a research chemical for laboratory use, not as an approved drug, and it is not approved for human consumption anywhere as of July 2026. Legality of purchase for research use varies by jurisdiction, and buyers are responsible for verifying their local import rules. Because it contains BPC-157 and TB-500, KLOW is also prohibited in competitive sport under WADA.
No. Peptigrity is an independent review platform, not a medical authority, and KLOW is not approved for human use. No controlled clinical trial has established a dose for the blend, and translating single-compound research into a self-administration protocol is a medical decision. Anyone considering use of investigational compounds should consult a licensed physician.