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Bottom line

Kisspeptin-54 (KP-54), originally named metastin, is the longest biologically active cleavage product of the KISS1 metastasis-suppressor gene. It acts as an endogenous agonist at KISS1R (GPR54) to stimulate GnRH and subsequent LH/FSH release. KP-54 is investigational only — no FDA- or EMA-approved product was identified — with phase 1/2 trials in hypothalamic amenorrhea, hypogonadotropic hypogonadism, and as a potential fertility treatment. It has a longer plasma half-life (28 min) than kisspeptin-10 (~4 min), making it the preferred isoform for most clinical studies.

Identity and composition

FieldVerified information
Preferred nameKisspeptin-54
Key aliasesKP-54; metastin; KISS1 (68-121); human metastin
Molecular/sequence identity54-amino-acid peptide; C-terminal decapeptide (residues 45-54) = kisspeptin-10
Modifications/formC-terminal amidation; full-length KISS1 product
Stable identifiersUniProt Q8NG95 (KISS1); IUPHAR/BPS ligand 1288
Identity caveatsHuman KP-54 sequence differs from other species, limiting translation. KP-54 and KP-10 are equipotent at KISS1R in vitro, but KP-54 has longer in vivo half-life

Development and approval status

JurisdictionStatus and indicationProduct/sourceAs of
No jurisdictionInvestigational; phase 1/2 clinical trials onlyResearch-grade peptide2026

Registered trials: NCT05633966 (KASPR, KP-10), NCT05896293 (KP-10), NCT04648969 (KP-10); intranasal KP-54 study (Abbara et al. 2025, EBioMedicine).

Mechanism and pharmacology

Full agonist at KISS1R on GnRH neurons, stimulating pulsatile GnRH release. KP-54 has a plasma half-life of ~28 min in humans (vs. ~4 min for KP-10), and a volume of distribution of ~129 mL/kg. Continuous infusion can produce desensitisation, whereas pulsatile administration maintains responsiveness. KP-54 is equipotent with KP-10 in vitro but produces greater AUC for gonadotropins in vivo due to longer half-life.

Evidence by claim

Claim/indicationStageGradeBest human evidenceMain resultImportant limitations
LH/FSH stimulation in healthy humansPhase 1BDouble-blind, placebo-controlled crossover (Dhirn et al. 2005)i.v. KP-54 (4 pmol/kg/min × 90 min) significantly increased LH, FSH, and testosteroneSmall n=6; acute only
Hypothalamic amenorrhea — LH pulsatiltyPhase 1/2CSingle-blind, dose-ranging (Jayasena 2013, PMID 24517142)KP-54 infusion increased LH pulses 3-fold vs. vehicle in HA womenSmall n=5; infusion only, no ovulation endpoint
Intranasal delivery feasibilityPhase 1CRCT crossover (Abbara 2025)Intranasal KP-54 (12.8 nmol/kg) increased LH in healthy and HA subjectsIncludes KP-54 not KP-10; early stage

Key studies

StudyDesign/populationExposure studiedEndpoints and resultLimitations
Dhirn et al. (2005)DBPC crossover; healthy men (n=6)i.v. KP-54 4 pmol/kg/min × 90 min vs salineLH 10.8 vs 4.2 IU/L; FSH and T also significantly increasedn=6; short duration
Jayasena et al. (2013)Single-blind; women with HA (n=5)i.v. KP-54 infusion (0.01-1.0 nmol/kg/h × 8 h)Peak LH pulses 5.0/8h vs 1.6/8h (vehicle)Small n; intravenous not practical for chronic use
Abbara et al. (2025)DBPC crossover RCT; healthy men, women, HA patientsIntranasal KP-54 (3.2-25.6 nmol/kg)LH rise within 30-45 min; no AEsFirst intranasal data; small; device-dependent

Dose and administration evidence

Approved labeled regimen

Not applicable — not approved.

Studied regimens (not recommendations)

  • Intravenous infusion: 0.01-1.0 nmol/kg/h (8 hours; research only).

  • Intravenous bolus: 0.3-25.6 nmol/kg (single dose).

  • Intranasal spray: 3.2-25.6 nmol/kg (single dose; research only).

  • Subcutaneous infusion: 0.1-1.0 nmol/kg/h (8 hours).

What is not established

No established or recommended human dose.

Safety

Human-study signals

  • Well-tolerated in all reported human studies.

  • No serious adverse events.

  • Mild subjective warmth, flushing at high doses.

  • No nausea or vasomotor symptoms reported with intranasal KP-54.

  • Desensitisation with continuous exposure; mitigated by pulsatile delivery.

Unknowns and product-quality risks

  • No chronic safety data (>2 weeks exposure).

  • No carcinogenicity or reproductive toxicity studies.

  • Online "kisspeptin-54" products are unregulated and may not be pure or correctly dosed.

Interactions and special populations

  • Not studied in pregnancy, lactation, children.

  • Baseline oestradiol levels affect LH response magnitude in women.

  • No studies with concurrent hormonal contraception.

Regulatory, compounding, and sport notes

  • Approval: No FDA-approved product or EMA-authorized medicine was identified; status elsewhere requires a current national-register check.

  • WADA: The 2026 List explicitly names kisspeptin and its agonist analogues under S2.2.1 as testosterone-stimulating peptides prohibited at all times in males. Kisspeptin stimulates endogenous GnRH release but is not itself a GnRH analogue.

  • Compounding: No general exemption or lawful-compounding conclusion follows from investigational status; applicable rules are product-, jurisdiction-, and fact-specific.

Evidence gaps

  • Chronic safety and desensitisation risk.

  • Efficacy for ovulation induction (phase 2/3 needed).

  • Optimal formulation and route.

  • Comparison with standard gonadotropin therapy.

Search notes

  • Databases and registries: PubMed, ClinicalTrials.gov, IUPHAR/BPS Guide to Pharmacology

  • Search terms: kisspeptin-54, KP-54, metastin, kisspeptin, human clinical trial

  • Last searched: 2026-08-06

  • Inclusion emphasis: Human clinical studies, registered trials

Sources

  1. Dhirn WS, et al. Kisspeptin-54 stimulates the HPG axis in human males. J Clin Endocrinol Metab. 2005;90(12):6609-15. PMID 16174713.

  2. Jayasena CN, et al. Increasing LH pulsatility in HA using KP-54 infusion. J Clin Endocrinol Metab. 2014;99(2):E243-51. PMID 24517142.

  3. Abbara A, et al. Intranasal KP-54 stimulates gonadotropin release. EBioMedicine. 2025. https://www.thelancet.com/journals/ebiom/article/PIIS2352-3964(25)00133-1/fulltext

  4. Chan YM, et al. Direct comparison of kisspeptin-10, -54, and GnRH. Hum Reprod. 2015;30(8):1849-56. PMID 26089302.

  5. IUPHAR/BPS Guide – kisspeptin-54 ligand ID 1288. https://www.guidetopharmacology.org/GRAC/LigandDisplayForward?ligandId=1288

  6. UniProt Q8NG95 (KISS1 precursor).

  7. WADA. 2026 Prohibited List. https://www.wada-ama.org/en/resources/world-anti-doping-program/prohibited-list

Questions

Is kisspeptin-54 FDA-approved?

No. Kisspeptin-54 (KP-54, also called metastin) is investigational only. No FDA-approved product or EMA-authorized medicine was identified as of August 2026. Phase 1/2 trials are exploring it for hypothalamic amenorrhea and as a potential fertility treatment.

What evidence exists for kisspeptin-54?

A double-blind placebo-controlled crossover study (n=6) found IV KP-54 significantly increased LH, FSH, and testosterone. A single-blind study in hypothalamic amenorrhea (n=5) showed a 3-fold increase in LH pulses vs. vehicle. Grade B–C due to small sample sizes.

How does kisspeptin-54 differ from kisspeptin-10?

KP-54 is the full-length 54-amino-acid product of the KISS1 gene, while KP-10 is a 10-mer C-terminal fragment. KP-54 has a longer plasma half-life (~28 min vs. ~4 min for KP-10), making it the preferred isoform for most clinical studies.

What are kisspeptin-54's safety signals?

KP-54 is well-tolerated in all reported human studies with no serious adverse events. Mild subjective warmth and flushing occur at high doses. Reported tolerability in small studies was good, with no nausea signal noted. Desensitisation with continuous exposure is mitigated by pulsatile delivery.

Is kisspeptin-54 prohibited in sport?

Yes. Kisspeptin-54 falls within the kisspeptin and agonist-analogue language in section S2.2.1 of the 2026 WADA Prohibited List. That provision treats these as testosterone-stimulating peptides prohibited at all times in males; kisspeptin-54 is an endogenous KISS1 product, not a GnRH analogue.

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