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Ipamorelin

A selective pentapeptide growth-hormone secretagogue studied for GHSR-1a signaling

Price range: $12.00 through $130.00
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Research Use OnlyNot for human or veterinary consumption.
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About this compound

Ipamorelin is a synthetic pentapeptide growth-hormone secretagogue that activates the growth hormone secretagogue receptor type 1a, also known as the ghrelin receptor. Research commonly examines pituitary growth-hormone release, pulsatile endocrine signaling, downstream IGF-1 biology and its comparatively selective profile versus earlier GHRP compounds.

Pentapeptide GH secretagogue · GHSR-1a agonist

Formula
C38H49N9O5
Molecular weight
711.85 g/mol
Form
Lyophilized powder
CAS / ID
170851-70-4
Read the full Ipamorelin research monograph
Third-party lab verified

Independently tested. Verifiably pure.

Every batch of Ipamorelin is reviewed against its independent laboratory documentation before fulfillment.

  • HPLC Purity AnalysisReported purity: Lot-specific purity — see COA
  • Mass SpectrometryMass-spectrometric identity — see lot COA
  • Heavy Metals ScreeningLot-specific result — see COA
  • Endotoxins (LPS)Lot-specific result — see COA
  • Sterility TestingLot-specific result — see COA
  • Net Peptide ContentLot-specific result — see COA
Certificate of Analysis · Independent third-party laboratory Pass
Verified
HPLC Purity
Lot-specific purity — see COA
Identity
Mass-spectrometric identity — see lot COA
Endotoxin (LAL)
Lot-specific result — see COA
Lab
Independent third-party laboratory
View full Certificate of Analysis
Research Use Only.

Not for human or veterinary use. For in-vitro laboratory research only. This product is not intended to diagnose, treat, cure, or prevent any disease.

The Ipamorelin molecule

A five-residue secretagogue engineered for selective GH-axis research.

Ipamorelin is a compact synthetic pentapeptide with the sequence Aib-His-D-2-Nal-D-Phe-Lys-NH₂. Its non-natural residues and C-terminal amide support receptor activity and distinguish it from endogenous ghrelin.

Molecular class

Synthetic pentapeptide

A five-residue growth-hormone secretagogue containing non-proteinogenic amino-acid components.

Primary target

GHSR-1a

Activates the growth hormone secretagogue receptor expressed in pituitary and hypothalamic signaling systems.

Research emphasis

Selective GH secretion

Frequently studied as a tool for examining GH release with less ACTH, cortisol and prolactin recruitment than older GHRPs.

02 · Molecular structure

The Ipamorelin molecule visualized.

The animated structure represents its five-residue peptide backbone, non-natural side chains and terminal amide.

Molecular formulaC38H49N9O5
Molecular formulaC38H49N9O5
Molecular weight711.85 g/mol
SequenceAib-His-D-2-Nal-D-Phe-Lys-NH₂
Sequence length5 residues
CAS / ID170851-70-4
Physical formLyophilized powder
Use classResearch use only
Documented purityLot-specific purity — see COA
Published research observations

Published research areas associated with Ipamorelin.

The summaries below describe preclinical and endocrine research themes and are not directions for administration or clinical use.

Receptor pharmacologyGHSR-1a

Ghrelin-receptor agonism

Ipamorelin is used to study selective activation of the growth hormone secretagogue receptor.

Pituitary outputGH

Dose-dependent secretion

Preclinical work has examined concentration-dependent growth-hormone release and pulse characteristics.

SelectivityLow off-axis signal

Reduced ACTH, cortisol and prolactin recruitment

Published comparisons describe a cleaner endocrine profile than several earlier GHRP compounds.

GHSR-1a signaling researchPrimary
Pituitary GH-release researchPrimary
GH / IGF-1 axis researchHigh
Bone-growth model researchPreclinical
Mechanism map

Ipamorelin signaling pathways visualized.

The animated pathway map follows GHSR-1a activation through pituitary signaling, growth-hormone release and downstream IGF-1 biology.

MEMBRANE · GHSR-1a

Growth hormone secretagogue receptor activation

Ipamorelin binds GHSR-1a on pituitary somatotrophs and initiates receptor-dependent signaling.

INTRACELLULAR · PLC / IP3 / Ca²⁺

Secretory signal recruitment

GHSR-1a signaling can engage phospholipase pathways and intracellular calcium mobilization.

PITUITARY · GH

Pulsatile growth-hormone release

The activated somatotroph releases endogenous GH in a pulse-like endocrine response.

LIVER · IGF-1

Downstream somatotropic signaling

Pituitary GH can stimulate hepatic IGF-1 production and related downstream pathways.

Research landscape

Ipamorelin compared with earlier GHRP compounds.

Ipamorelin, GHRP-2 and GHRP-6 share GHSR-1a activity, but differ in endocrine selectivity and appetite-related signaling.

Ipamorelin

Selective GH secretagogue

Designed to stimulate GH release with limited ACTH, cortisol and prolactin elevation in comparative research.

GHRP-2

Broader pituitary activation

Can produce robust GH release while also recruiting additional endocrine outputs.

GHRP-6

GH and appetite signaling

Known for strong GHSR activity and more prominent orexigenic effects in research models.

CompoundPrimary receptorGH releaseComparative research profile
IpamorelinGHSR-1aDose-dependentGreater endocrine selectivity
GHRP-2GHSR-1aStrongMore ACTH/cortisol recruitment
GHRP-6GHSR-1aStrongMore appetite-related signaling
Triple agonism visualized

Endocrine selectivity visualized.

These bars summarize the published comparative profile and are not universal quantitative binding-affinity measurements.

Growth-hormone releasePrimary
ACTH elevationMinimal in comparative studies
Cortisol elevationMinimal in comparative studies
Prolactin elevationMinimal in comparative studies
Appetite-pathway activationLower than GHRP-6
Pharmacokinetics

Short direct exposure with a longer endocrine response window.

Published discussions commonly describe rapid peptide clearance and a growth-hormone response that peaks after administration and persists beyond the period of highest circulating peptide concentration. Exact values depend on study design, assay and species.

Molecular identity confidenceWell characterized
GHSR-1a literature depthEstablished
Plasma persistenceShort
Reported plasma half-life≈2 hr

Rapid-clearance secretagogue

The commonly cited value should be treated as study-dependent rather than universal.

GH responsePeak ≈40 min

Prompt pituitary output

Published human research has described an early peak in growth-hormone response.

Research vialLot-specific

Use analytical documentation

Identity, purity and net peptide content should be verified using the actual Aurelia lot COA.

Full specification

Full specification.

The fields below describe compound identity. Final analytical values must match the actual Aurelia lot documentation.

Compound

Ipamorelin

Synthetic pentapeptide growth-hormone secretagogue.

Compound class

GHSR-1a agonist

A ghrelin-receptor-active secretagogue.

Sequence

Aib-His-D-2-Nal-D-Phe-Lys-NH₂

Five-residue peptide with a C-terminal amide.

Sequence length

5 residues

Classified as a pentapeptide.

Molecular formula

C38H49N9O5

Elemental composition of Ipamorelin.

Molecular weight

711.85 g/mol

Calculated molecular mass.

CAS / ID

170851-70-4

Common Ipamorelin identifier.

Analytical testing

See lot COA

Confirm identity, purity, net content, sterility and endotoxin results.

Clinical research status

From GHSR-1a binding to downstream endocrine signaling.

This is an illustrative mechanistic sequence, not a dosing or treatment timeline.

GHSR-1a binding

Ipamorelin engages the growth hormone secretagogue receptor on pituitary somatotrophs.

Intracellular calcium signaling

Receptor activation recruits secretory signaling pathways that support vesicular hormone release.

Growth-hormone pulse

Endogenous GH is released into the experimental system.

IGF-1 and feedback response

Downstream hepatic signaling and endocrine feedback shape the overall response.

Handling reference

Handle as a sensitive research peptide.

Use the storage conditions validated for the actual Aurelia lot and document all preparation and hold-time variables.

Lyophilized material

Cold, dry and protected

Protect from moisture, direct light, excessive heat and repeated temperature cycling.

Prepared material

Solution stability is conditional

Stability depends on solvent, pH, concentration, container, temperature and contamination control.

Peptide handling

Avoid repeated freeze-thaw events

Aliquoting and validated low-binding containers may reduce degradation and adsorption.

  1. Record the lotLink every experiment to the vial identifier and corresponding COA.
  2. Follow validated storageUse the temperature range stated on the Aurelia label and lot documentation.
  3. Minimize agitationHandle gently to reduce foaming, adsorption and peptide degradation.
  4. Document preparationRecord solvent, concentration, pH, container, temperature and elapsed hold time.

For in-vitro laboratory research only. Not for human or veterinary use.

Research library

Ipamorelin literature library.

The publications below provide context for selective GH secretion, sleep-associated endocrine release and GHSR biology.

Sources

References.

Independent literature supporting the molecular and mechanistic context used in this dossier.

  1. Raun K et al. Ipamorelin, the first selective growth hormone secretagogue. European Journal of Endocrinology. 1998.Open source ↗
  2. Frieboes RM et al. Growth hormone-releasing peptides stimulate GH secretion in human subjects during nocturnal sleep. 2004.Open source ↗
  3. Kojima M, Kangawa K et al. Ghrelin and growth hormone secretagogue receptors: functional characterization. 2001.Open source ↗
  4. Arvat E et al. Comparative endocrine responses to GHRP-class secretagogues. 2000.Open source ↗