Skip to content
Protocolos
Compounds › Repair and tissue

KPV

Anti-inflammatory tripeptide, fragment of α-MSH

Not approvedRepair and tissue

Experimental material. Read before using anything from here.

Nothing on this page is a medical recommendation, prescription or treatment plan. It is an organized translation of protocols circulating in research communities and, where it exists, of what published trials tested. The two are marked differently — and they are not equivalent.

Most of the compounds here have no FDA approval for human use. Several are sold labeled "research use only", which means they have not gone through purity, sterility or dosage controls for human consumption. A community-reported dose is not a validated dose: it is what someone reported having done.

Talk to a licensed health professional before considering any of these compounds. If you already use one and feel anything unexpected, seek care — do not wait for the next routine test.

Summary

Short peptide studied mainly in laboratory and animal research. It is the terminal fragment of α-MSH and the component that sets the KLOW blend apart from GLOW. Interest lies in intestinal and skin inflammation. It comes in 5 mg and 10 mg vials.

Quick reference

Route
Subcutaneous and topical.
Vials
5 mg and 10 mg lyophilized.
Origin
Terminal fragment of α-MSH; it is what sets KLOW apart from GLOW.
Status
Not approved. Laboratory and animal research.

KPV Peptide Dosage Chart

KPV Peptide Dosage Chart
Research calculation5 mg vial + 1 mL10 mg vial + 2 mLU-100 syringe units
200 mcg0.04 mL0.04 mL4 units
300 mcg0.06 mL0.06 mL6 units
400 mcg0.08 mL0.08 mL8 units
500 mcg0.10 mL0.10 mL10 units

KPV 10 mg Dosage Chart

KPV 10 mg Dosage Chart
Research calculationVolumeU-100 unitsApproximate calculations per vial
200 mcg0.04 mL4 units50
300 mcg0.06 mL6 units33
400 mcg0.08 mL8 units25
500 mcg0.10 mL10 units20

KPV 5 mg Dosage Chart

KPV 5 mg Dosage Chart
Research calculationVolumeU-100 unitsApproximate calculations per vial
200 mcg0.04 mL4 units25
300 mcg0.06 mL6 units16 full calculations, with some remaining
400 mcg0.08 mL8 units12 full calculations, with some remaining
500 mcg0.10 mL10 units10

KPV Protocol: Daily Dose, Frequency, and Schedule

KPV Protocol: Daily Dose, Frequency, and Schedule
RouteCommonly discussed research rangeFrequency discussed in community protocolsEvidence label
SubQ200–500 mcgGenerally 1×/dayCommunity-reported practice; not clinically established
Oral200–500 mcgGenerally 1× or 2×/dayCommunity-reported practice; not clinically established
TopicalFormulation-specificGenerally 1× or 2×/dayFormulation and clinic practice vary

Reconstitution formulas

Reconstitution formulas
Vial sizeBAC water addedConcentration200 mcg300 mcg500 mcg
5 mg1 mL5,000 mcg/mL0.04 mL (4 units)0.06 mL (6 units)0.10 mL (10 units)
5 mg2 mL2,500 mcg/mL0.08 mL (8 units)0.12 mL (12 units)0.20 mL (20 units)
10 mg2 mL5,000 mcg/mL0.04 mL (4 units)0.06 mL (6 units)0.10 mL (10 units)
10 mg3 mL3,333 mcg/mL0.06 mL (6 units)0.09 mL (9 units)0.15 mL (15 units)
10 mg5 mL2,000 mcg/mL0.10 mL (10 units)0.15 mL (15 units)0.25 mL (25 units)

KPV vs BPC-157 vs alpha-MSH

KPV vs BPC-157 vs alpha-MSH
FeatureKPVBPC-157alpha-MSH (full-length)
OriginC-terminal tripeptide of alpha-MSHSynthetic 15-aa gastric-protein fragmentEndogenous 13-aa melanocortin hormone
Primary mechanismPepT1 uptake; NF-kB inhibitionAngiogenesis; tissue-protective signalingMelanocortin-receptor activation
Primary use modelInflammation control; gut-barrier supportStructural tissue repairPigmentation; melanocortin signaling
Oral viabilityYes (PepT1)YesLimited
Pigmentation effectsNoNoYes
Clinical evidencePreclinical onlyLimited human + broad preclinicalExtensive hormonal research

KPV Cycle Length Chart

KPV Cycle Length Chart
FrameworkReported active periodReported breakEvidence level
Short cycle4 weeks2–4 weeksCommon community reference; no controlled human trial
Standard community range6–8 weeks2–4 weeksFrequently discussed; not clinically established
Extended cycle12 weeksAbout 4 weeks or longerReported extension with limited long-term evidence
Long extensionUp to 16 weeks4–8 weeksAnecdotal; no KPV trial validates this duration

Community KPV Cycles vs. Research Study Durations

Community KPV Cycles vs. Research Study Durations
SourceExample durationWhat was studiedWhat it tells us
Community protocols4–8 weeksOral or SubQ research frameworksShows a commonly discussed schedule, not a validated cycle
Extended community protocols8–12 weeksLonger research planningDocuments an extension, not proof that longer is better
Dalmasso et al. (2008)48 hours to 8 daysMouse colitis models and PepT1 transportSupports short preclinical research, not a human cycle
Kannengiesser et al. (2008)Days in murine colitis modelsKPV in DSS and transfer-colitis modelsShows animal anti-inflammatory research only
Xiao et al. (2017)Daily treatment in a short DSS modelOral KPV-loaded nanoparticles in miceSupports a delivery-system experiment, not free-KPV cycle guidance
Dalmasso et al. (2016)Repeated DSS periods with recovery windowsColitis-associated cancer model in miceShows a longer animal design, not a continuous human protocol

What About a 6- to 8-Week KPV Cycle?

What About a 6- to 8-Week KPV Cycle?
Active periodDaysTotal KPV10 mg vials
6 weeks4221 mg3 vials
8 weeks5628 mg3 vials

Does KPV Need to Be Cycled?

Does KPV Need to Be Cycled?
Active frameworkReported breakEvidence note
4 weeks2–4 weeksCommunity convention; no trial comparison
6–8 weeks2–4 weeksCommonly discussed; no proven reset period
12 weeksAbout 4 weeks or longerExtended community pattern; not clinically established
16 weeks4–8 weeksAnecdotal framework with major evidence gaps

Does the KPV Route Change the Cycle Length?

Does the KPV Route Change the Cycle Length?
RouteWhat is discussedCycle evidence
OralGut-focused community frameworks and animal PepT1 studiesNo established human oral cycle
SubQSystemic community protocolsNo completed human SubQ dose or cycle trial
TopicalFormulation-specific skin researchNo standard concentration or cycle across formulations

Storage and handling

The rules below apply to practically every lyophilized peptide in this reference. Where a compound has its own requirement, it appears in the table in the previous section.

  • Lyophilized powder, sealed: refrigerator, between 2 and 8 °C, protected from light. Many tolerate room temperature for short transport periods, but that is tolerance, not a recommendation.
  • After reconstitution: always refrigerated, between 2 and 8 °C. The stability window drops to days or a few weeks, depending on the compound.
  • Never freeze after reconstituting. The freeze–thaw cycle degrades the peptide.
  • Do not shake. Swirl the vial slowly. Shaking breaks the peptide chain.
  • Bacteriostatic water down the wall of the vial, in a slow stream, not squirted directly onto the powder.
  • Cloudy solution, with particles or a color change: discard. There is no recovery.

Lab tests and monitoring

This list is the one that appears recurrently in the source, with small variations by compound. It serves as a starting point for a conversation with a professional — not as a substitute for that conversation.

  • Before starting: complete blood count, comprehensive metabolic panel, lipid panel, fasting glucose and HbA1c, TSH and free T4, blood pressure and resting heart rate.
  • Depending on the compound: IGF-1 (GH axis), lipase and amylase (VIP and the incretin agonists), serum copper and ceruloplasmin (GHK-Cu and blends containing it), CRP.
  • Reassessment: most protocols review between week 4 and week 8, and then every 8–12 weeks.
  • Do not wait for the routine lab test in the face of abdominal pain, visual changes, a change in a mole, shortness of breath, asymmetric swelling or any new and persistent symptom. That is a reason to seek care, not a spreadsheet item.

Evidence limits

What these numbers are and what they are not. The values above were preserved exactly as they appear in the source, without reinterpretation. What the source describes as community practice is marked as such in the tables; what came from a published trial is too. A dose repeated by many people does not become a validated dose by repetition.

Data source: peptidedosingprotocols.com, accessed on September 3, 2026. Translation and organization in Portuguese are original work. No primary source (PubMed, trial registry, package insert) was checked in building this page — the check was against the secondary source, and that alone.

← Back to all compounds