Kisspeptin
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Kisspeptin

Substance: Kisspeptin

Fabricator: Dragon Pharma, Europe
Unit: 1 x vial
Strength: 10mg

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Dragon Pharma Kisspeptin

Overview of Kisspeptin profile, dosage range, and key reproductive hormone-regulating peptide properties.

Manufacturer

Brand Dragon Pharma
Last Lab Tested None

Core Information

Substance Kisspeptin
Classification GnRH stimulator / reproductive peptide
Active Half-Life 30 minutes
Typical Dosage (Men) 100–200 mcg/day

Effects & Properties

Water Retention No
Aromatization No
Hepatotoxicity No
Hair Loss Risk (HBR) No
Acne No

Synthetic Decapeptide Research Compound

Kisspeptin-10 occupies a unique position in peptide research. Discovered first as a tumor metastasis suppressor in melanoma biology — the KISS1 gene name itself traces to that origin — it was later identified as the master upstream regulator of the hypothalamic-pituitary-gonadal (HPG) axis, controlling reproductive endocrinology at the level of GnRH pulse release from hypothalamic KNDy neurons. Few research peptides carry dual biological heritage across two fields as distinct as oncology and reproductive neuroendocrinology.

Dragon Pharma Kisspeptin-10 delivers the biologically active C-terminal decapeptide sequence Tyr-Asn-Trp-Asn-Ser-Phe-Gly-Leu-Arg-Phe-NH₂ in lyophilized research-grade form — the shortest naturally occurring fragment of the kisspeptin family that retains complete binding activity at its cognate receptor KISS1R (GPR54). The critical C-terminal amide (-NH₂), which defines the kisspeptin RFamide family and is structurally required for KISS1R engagement, is explicitly confirmed by LC-MS in every Dragon Pharma batch — a quality checkpoint that HPLC purity analysis alone cannot provide.

Product Specifications

Parameter Detail
Brand Dragon Pharma
Compound Kisspeptin-10 (KP-10 / Metastin 45–54 / KiSS-1 45–54)
Sequence Tyr-Asn-Trp-Asn-Ser-Phe-Gly-Leu-Arg-Phe-NH₂
(YNWNSFGLRF-NH₂)
Peptide Length 10 residues (decapeptide)
Fragment Origin KISS1 gene product, C-terminal residues 45–54
Target Receptor KISS1R / GPR54 (Gq/11-coupled class A GPCR)
Receptor Affinity Ki ~2.33 nM (human KISS1R); ~1.59 nM (rat KISS1R)
Molecular Formula C₆₃H₈₃N₁₇O₁₄
Molecular Weight 1302.5 g/mol (monoisotopic: 1301.63 Da)
CAS Number 374675-21-5
PubChem CID 25240297
Purity ≥99% (RP-HPLC)
Identity Verification LC-MS (sequence, mass, C-terminal amidation)
Appearance Lyophilized white powder
Solubility Water-soluble; bacteriostatic water for reconstitution
COA Independent third-party, per batch
Storage (dry) -20°C, protect from light; 24+ months stable
Storage (reconstituted) 2–8°C, 28–30 days
Research Use In vitro research only

KISS1R Pharmacology and Downstream Signaling

At its most fundamental level, Dragon Pharma Kisspeptin-10 is a tool compound for GPR54 pharmacology. KISS1R is a class A G protein-coupled receptor belonging to the Gq/11 subfamily, located at chromosome 19p13.3. It is the sole endogenous receptor for the kisspeptin family and serves as one of the most well-validated entry points for studying the neuroendocrine regulation of reproductive biology in laboratory settings.

When KP-10 engages KISS1R, the following signaling cascade is initiated:

  • Gq/11 activation — G-protein coupling triggers phospholipase C (PLC) activation
  • IP3 and DAG generation — PLC cleaves phosphatidylinositol 4,5-bisphosphate into inositol trisphosphate (IP3) and diacylglycerol (DAG)
  • Intracellular Ca²⁺ mobilization — IP3 triggers endoplasmic reticulum calcium release producing rapid [Ca²⁺]i elevation
  • PKC activation — DAG activates protein kinase C, which phosphorylates downstream substrates
  • ERK1/2 phosphorylation — downstream MAPK signaling; a commonly measured endpoint in KISS1R activation studies
  • β-arrestin recruitment — receptor desensitization pathway, measurable in KISS1R-expressing cell lines

Quantified receptor pharmacology: Ki ~2.33 nM (human KISS1R), ~1.59 nM (rat KISS1R); EC50 ~1.0 nM in CHO-GPR54 IP accumulation assays. These values establish Kisspeptin-10 as a high-affinity reference ligand suitable for binding competition assays, dose-response characterization, and comparative GPR54 pharmacology studies.

Five Active Research Domains

1. Neuroendocrine and HPG Axis Research

KP-10 is the primary tool compound for investigating hypothalamic-pituitary-gonadal axis regulation at the GnRH level. In hypothalamic models, KISS1R activation on KNDy neurons (co-expressing kisspeptin, neurokinin B, and dynorphin) drives pulsatile GnRH secretion, which governs downstream pituitary LH and FSH release and gonadal sex steroid biology. Research areas include GnRH pulsatility modeling, KNDy neuron circuitry characterization, puberty onset mechanisms, hypogonadotropic hypogonadism pathway investigation, and HPG axis regulation in both male and female reproductive biology contexts.

2. Cell Motility and Trophoblast Biology

The KISS1 gene was originally identified as a metastasis suppressor in melanoma — its product inhibits cell migration and invasion. In placental trophoblast research, KP-10 has been studied as a physiological inhibitor of cell motility. Research in HTR8/SVneo placental cells demonstrated reduced migration via an ERK1/2-p90rsk-GSK3β-FAK signaling feedback loop. In first-trimester trophoblast cultures, KP-10 raised intracellular calcium and inhibited motility without altering proliferation — consistent with a signaling-specific rather than cytotoxic mechanism. Downstream investigations have examined associated changes in MMP and TIMP expression, alongside VEGF-A modulation through KISS1R/ERK1/2 pathways.

3. Neuronal Protection Models

Published research has characterized a neuroprotective activity of Kisspeptin-10 in cholinergic neuronal models that operates independently of KISS1R binding — a mechanistically significant finding that opens a research thread entirely separate from GPR54 pharmacology. In SH-SY5Y-derived neurons engineered to overexpress wild-type or E46K mutant α-synuclein, KP-10 was shown to reduce α-synuclein-linked apoptosis and mitochondrial depolarization through receptor-independent direct peptide-protein interactions. This positions Kisspeptin-10 as a research tool for neurodegeneration biology relevant to conditions characterized by α-synuclein pathology, alongside its established role in GPR54 signaling.

4. Cardiac Fibroblast and ECM Biology

Research in cardiac fibroblast cultures has documented that Kisspeptin-10 increases intracellular collagen content through focal adhesion kinase (FAK) phosphorylation, alongside shifts in the balance between matrix metalloproteinases and their tissue inhibitors. This extends KP-10's documented biology into cardiovascular connective tissue research, creating a research application profile that spans neuroendocrine, reproductive, neuronal, and cardiac tissue systems — an unusually broad multi-system footprint for a ten-residue peptide.

5. Radiotheranostic and Imaging Research

Published work from 2025 demonstrated that a DOTA-conjugated Kisspeptin-10 analogue retained comparable KISS1R activation capacity to unconjugated KP-10, measured by inositol phosphate accumulation in KISS1R-expressing HEK293 cells. The conjugate was characterized for serum stability and evaluated as a potential gallium-68/lutetium-177 pan-tumour radiopharmaceutical targeting KISS1R-expressing tumours. This work positions the KISS1R system as a target for receptor-targeted radiotheranostic research — an emerging application domain for which unconjugated Kisspeptin-10 serves as the essential reference comparator.

In Vitro Research Applications

Research Area Application
Receptor pharmacology KISS1R binding characterization; IP1 accumulation (HTRF); Ca²⁺ flux (fluorometric); ERK1/2 phosphorylation; β-arrestin recruitment
Neuroendocrine models KNDy neuron research; GnRH pulsatility; HPG axis pathway investigation; LH/FSH secretion signaling
Cell motility assays Trophoblast migration/invasion; ERK1/2-GSK3β-FAK loop characterization; HTR8/SVneo culture models
Extracellular matrix MMP/TIMP expression; VEGF-A pathway modulation; angiogenesis-related signaling in trophoblast cultures
Neuroprotection α-synuclein apoptosis and mitochondrial depolarization in SH-SY5Y cholinergic neurons; KISS1R-independent mechanism
Cardiac fibroblast FAK phosphorylation; collagen content modulation; MMP/TIMP balance in myocardial fibroblast culture
Radiolabeling chemistry DOTA-KP-10 analogue characterization; Ga-68/Lu-177 radiotheranostic receptor targeting research
Metastasis biology KiSS-1/GPR54 expression analysis in melanoma, gastric, pancreatic, ovarian, bladder, and prostate cancer cell line models

Key Features

  • C-terminal amide (-NH₂) confirmed by LC-MS per batch — the structural feature required for KISS1R binding potency; verified independently of HPLC purity which cannot detect this modification
  • ≥99% purity by reverse-phase HPLC — research-grade threshold for receptor pharmacology, cell signaling, and in vitro biology applications
  • Quantified KISS1R affinity (Ki ~2.33 nM human) — characterized as a high-affinity GPR54 ligand in published receptor binding assays; not inferred from biological activity observations alone
  • Five distinct research domains in published literature — neuroendocrine, trophoblast motility, neuroprotection, cardiac fibroblast, and radiotheranostic applications, each supported by peer-reviewed studies
  • Water-soluble — no organic co-solvent needed — dissolves directly in bacteriostatic water for standard laboratory concentrations; simplifies reconstitution protocol
  • Lyophilized white powder without fillers — no excipients that could confound downstream assay results
  • Independent third-party COA per batch — lot-specific documentation traceable from vial label to laboratory results; not reused across production runs
  • Dual heritage: oncology + neuroendocrinology — KISS1 originally identified as metastasis suppressor in melanoma; later established as HPG axis master regulator; both research threads remain active
Research Context — WADA Classification: WADA has classified kisspeptin and agonist analogues under the Prohibited List category S2.2.1 (Testosterone-Stimulating Peptides in Males). This reflects the cascade by which KISS1R activation in hypothalamic KNDy neurons drives GnRH release, stimulating pituitary LH/FSH, and downstream gonadal testosterone production. Researchers involving Kisspeptin-10 in protocols with sports science, HPG axis, or testosterone-related research contexts should document this classification in institutional and ethical review materials. Dragon Pharma Kisspeptin-10 is supplied for in vitro research use only.

Research Benefits

The only endogenous high-affinity KISS1R ligand available in research-grade form. Kisspeptin-10 is the natural ligand for GPR54 — not a synthetic agonist analogue. This makes it the appropriate reference compound for any study establishing baseline receptor pharmacology, characterizing KISS1R-selective drug candidates, or building structure-activity relationships around the GPR54 binding domain. Synthetic analogues require KP-10 as the comparator; KP-10 requires no comparator.

Seven peer-reviewed publications directly supporting its research applications. Unlike many research peptides backed primarily by manufacturer descriptions or forum reports, Kisspeptin-10's research profile spans publications in Placenta, Journal of Cell Science, PLoS One, International Journal of Molecular Sciences, Scientific Reports, Genes & Diseases, and Journal of Neuroendocrinology — covering receptor pharmacology, trophoblast biology, neuronal protection, cardiac fibroblast, and radiotheranostic research respectively.

Receptor-independent mechanism opens a second research axis. The KISS1R-independent neuroprotective activity documented in SH-SY5Y models creates a research angle that does not require GPR54-expressing cell systems — expanding the compound's utility beyond receptor pharmacology into direct peptide-protein interaction research relevant to neurodegeneration biology.

A precision quality checkpoint other suppliers omit. Standard peptide quality assurance verifies purity by HPLC. Dragon Pharma additionally confirms C-terminal amidation by LC-MS — a structural feature that is invisible to chromatographic methods but is the defining characteristic of KISS1R-active kisspeptin. A non-amidated KP-10 at 99% purity is a different and inferior research compound.

Why Dragon Pharma Quality Matters for KP-10

Kisspeptin-10 presents a specific quality challenge that most research peptides do not: the C-terminal amide. This modification is not detectable by HPLC purity analysis. A batch of non-amidated YNWNSFGLRF-OH can show 99% HPLC purity while being pharmacologically inactive at KISS1R — it would fail every receptor binding assay while appearing flawless on a chromatogram.

Dragon Pharma's batch testing for Kisspeptin-10 explicitly includes:

  • Reverse-phase HPLC — ≥99% purity, main peak area confirmation
  • LC-MS — molecular ion confirmation at 1302.5 g/mol (average) / 1301.63 Da (monoisotopic); sequence verification; explicit C-terminal amide confirmation distinguishing YNWNSFGLRF-NH₂ from YNWNSFGLRF-OH
  • Sterility and endotoxin testing — per batch
  • Residual solvent screening
  • Batch-specific independent COA — lot-traceable documentation from third-party laboratory

Product Summary

Dragon Pharma Kisspeptin-10 is a synthetic decapeptide (Tyr-Asn-Trp-Asn-Ser-Phe-Gly-Leu-Arg-Phe-NH₂ / KP-10 / CAS 374675-21-5) corresponding to the C-terminal 45–54 fragment of the KISS1 gene product. It is the primary endogenous ligand for KISS1R (GPR54), a Gq/11-coupled class A GPCR, with characterized binding affinity of Ki ~2.33 nM (human). Research applications span five documented domains: GPR54 pharmacology and neuroendocrine HPG axis signaling, trophoblast cell motility inhibition, KISS1R-independent neuroprotection in α-synuclein neuronal models, cardiac fibroblast collagen and FAK biology, and DOTA-conjugate radiotheranostic research. Supplied as lyophilized white powder at ≥99% HPLC purity, with LC-MS confirmation of sequence, molecular mass, and C-terminal amidation. Independent third-party COA per batch. For research use only.

Research domains: GPR54 pharmacology • Neuroendocrine signaling • Cell motility • Neuroprotection • Cardiac fibroblast • ECM biology • Radiotheranostic research

Frequently Asked Questions

Everything you need to know about Dragon Pharma Kisspeptin-10, KISS1R receptor pharmacology, signaling pathways, research applications, and quality standards.

Why is Kisspeptin-10 preferred over Kisspeptin-54 for most research applications?

Kisspeptin-10 is the bioactive C-terminal fragment that constitutes the KISS1R receptor interaction domain shared by all kisspeptin family members. Since KP-54, KP-14, KP-13, and KP-10 all bind KISS1R through the same shared C-terminal decapeptide, KP-10 delivers equivalent receptor potency in a smaller, more easily synthesized, and more cost-effective research format. For GPR54 pharmacology and signaling studies, KP-10 is the standard tool compound.

What makes the C-terminal amide critical and how does Dragon Pharma verify it?

The C-terminal amide (-NH₂) is structurally required for KISS1R binding potency. A non-amidated KP-10 would show equivalent HPLC purity but severely reduced or absent receptor activity. Dragon Pharma verifies C-terminal amidation by LC-MS per batch, which distinguishes the correctly amidated YNWNSFGLRF-NH₂ from the non-amidated YNWNSFGLRF-OH through molecular mass and fragmentation pattern analysis — a quality checkpoint that HPLC purity analysis alone cannot provide.

What cell lines are commonly used for KISS1R research with KP-10?

Published research has used KISS1R-transfected HEK293 cells for receptor characterization and IP accumulation assays; CHO-GPR54 cells for Ki and EC50 determination; HTR8/SVneo placental cells for trophoblast motility studies; SH-SY5Y-derived cholinergic neurons for neuroprotection research; primary human trophoblasts for invasion and MMP/TIMP studies; and cardiac fibroblast cultures for FAK and collagen biology.

What standard assay endpoints are used in KP-10 receptor research?

The primary pharmacological endpoints documented in KP-10 receptor research include: IP1 accumulation measured by HTRF assay (most common for KISS1R Gq coupling characterization); intracellular Ca²⁺ mobilization measured by fluorometric methods; ERK1/2 phosphorylation by Western blot or ELISA; and β-arrestin recruitment by bioluminescence resonance energy transfer (BRET) or equivalent assay.

What is the KISS1R-independent neuroprotective mechanism of KP-10?

Research demonstrated that in SH-SY5Y-derived neurons overexpressing wild-type or E46K mutant α-synuclein, Kisspeptin-10 reduced apoptosis and mitochondrial depolarization via mechanisms that do not require KISS1R. This was established by demonstrating protective activity in cell systems without functional GPR54 signaling. The precise molecular target of this receptor-independent activity remains under active investigation — opening a research question about direct peptide-protein interactions that is mechanistically distinct from all other characterized KP-10 biology.

What working concentrations are typical for in vitro KP-10 research?

Given the characterized EC50 of approximately 1.0 nM in GPR54 IP accumulation assays, in vitro receptor signaling studies typically use KP-10 concentrations in the 1 nM to 100 nM range for EC50 characterization curves. Cell motility studies in trophoblast models and neuronal protection assays have used concentrations in the nanomolar to low micromolar range. Exact concentrations should be determined per experimental protocol and cell system.

Is there recent research on Kisspeptin-10 and radiotheranostics?

Yes. Research published in 2025 (Kleynhans et al., Journal of Neuroendocrinology) characterized a DOTA-conjugated Kisspeptin-10 analogue that retained KISS1R activation capacity comparable to unconjugated KP-10, evaluated as a potential gallium-68/lutetium-177 pan-tumour radiopharmaceutical. This establishes KISS1R as a target for receptor-targeted radiotheranostic research, for which Dragon Pharma unconjugated Kisspeptin-10 serves as the essential reference comparator.

How does the WADA classification affect research use of Kisspeptin-10?

WADA has classified kisspeptin and agonist analogues under the Prohibited List category S2.2.1 (Testosterone-Stimulating Peptides in Males). For in vitro laboratory research, this is a contextual note — researchers designing protocols involving KP-10 in sports science or HPG axis contexts should address this classification in institutional review documentation. It does not restrict legitimate in vitro research use by qualified investigators. Dragon Pharma Kisspeptin-10 is supplied for research use only.

What distinguishes Dragon Pharma Kisspeptin-10 from lower-grade suppliers?

Dragon Pharma Kisspeptin-10 offers three primary differentiators: (1) C-terminal amide confirmation by LC-MS — a quality checkpoint most suppliers omit and HPLC cannot provide; (2) ≥99% purity threshold exceeding the ≥98% standard at lower price points; (3) independent third-party batch-specific COA rather than in-house or reused documentation. For receptor pharmacology research requiring sub-nanomolar binding activity, these distinctions directly affect assay reliability and data integrity.

Is Dragon Pharma Kisspeptin-10 for human use?

Dragon Pharma Kisspeptin-10 is a research chemical intended strictly for in vitro laboratory testing and experimentation by licensed, qualified professionals. It is not a drug, food supplement, or therapeutic compound and is not for human consumption, parenteral administration, or any application outside a controlled laboratory research setting.

Storage

Proper handling and preservation guidelines for Kisspeptin peptide.

Dragon Pharma Kisspeptin is a peptide that should be stored correctly to help maintain its stability and long-term effectiveness. Proper handling conditions are important to preserve peptide quality from manufacturing through to use.

In its lyophilized (powder) form, Kisspeptin should be kept in a cool, dry, and dark environment. For extended storage, refrigeration between 2–8°C is recommended, while freezing at approximately -20°C may further help preserve stability over time.

Once reconstituted with bacteriostatic water, the peptide must be kept refrigerated at 2–8°C. It should not be exposed to room temperature for long periods, as this can gradually reduce peptide integrity.

Exposure to heat, direct sunlight, or moisture should be avoided, as these factors can accelerate degradation and reduce overall effectiveness.

Tip: For best results, always keep the vial tightly sealed and stored in its original packaging to minimize contamination and environmental exposure.
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