Laboratory research materials for in vitro use only.

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Hexarelin

For laboratory research use only (in vitro). Not for human or animal use.

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Volume Pricing

QuantityDiscountUnit Price
1-2 unitsStandard$47.99Your price
3-4 units5% off$45.59Your price
5-9 units10% off$43.19Your price
10+ units Best Value15% off$40.79Your price

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The 25% pre-order discount is the maximum available and overrides volume pricing. There is no additional volume discount.

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Why researchers choose PBC:

  • HPLC-verified purity on every lot
  • Certificate of Analysis included
  • Temperature-controlled shipping
  • Canadian lab — documented supply chain
  • Batch-level traceability

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Certificate of Analysis available upon request. Contact us for lot-specific documentation.

Product Specifications

Amino Acid Sequence His-D-2-methyl-Trp-Ala-Trp-D-Phe-Lys-NH2
Molecular Weight 887 Da
Molecular Formula C47H58N12O6
CAS Number 140703-51-1
Purity ≥98% (HPLC)
Format Lyophilized Powder
Vials Per Kit 10
Storage Store at -20C. Reconstituted: 2-8C
Research Status Phase2

For laboratory research use only (in vitro). Not for human or animal use.

Description

Chemical Identity

Hexarelin (also known as Examorelin or HEX) is a synthetic hexapeptide growth hormone secretagogue with the molecular formula C47H58N12O6 and a molecular weight of 887 Da (CAS number 140703-51-1). The amino acid sequence is His-D-2-methyl-Trp-Ala-Trp-D-Phe-Lys-NH2, incorporating a methylated tryptophan residue that contributes to its potency among the GHRP class of compounds.

Hexarelin is distinguished from other growth hormone secretagogues by its dual receptor binding profile: it activates both the GHS-R1a (ghrelin) receptor for GH release and the CD36 scavenger receptor, conferring GH-independent cardioprotective effects that have been a significant focus of clinical investigation.

Property Value
Molecular Formula C47H58N12O6
Molecular Weight 887 Da
CAS Number 140703-51-1
Sequence His-D-2-methyl-Trp-Ala-Trp-D-Phe-Lys-NH2
Research Status Phase 2 clinical trials

Research Overview

Hexarelin has been investigated in Phase 2 clinical trials and extensive preclinical research spanning growth hormone secretion, cardioprotection, and ischemia-reperfusion injury. The GH-releasing mechanism involves activation of GHS-R1a on anterior pituitary somatotrophs, triggering Gq/11-coupled phospholipase C signaling and calcium-dependent GH exocytosis. Hexarelin is considered among the most potent synthetic GH secretagogues characterized to date.

The unique CD36 receptor binding distinguishes Hexarelin pharmacologically. CD36 is a scavenger receptor expressed on cardiomyocytes, macrophages, and endothelial cells, and Hexarelin’s interaction with this receptor mediates cardioprotective effects independent of GH release.

Key areas of published research include:

  • Growth Hormone Release: Hexarelin produces robust, dose-dependent GH release in clinical studies. It is among the most potent GHRP-class compounds, though it also stimulates cortisol and prolactin to a greater degree than more selective secretagogues like ipamorelin.
  • Cardioprotection: Phase 2 clinical trials have evaluated Hexarelin for cardioprotective effects. Preclinical ischemia-reperfusion models have demonstrated significant reduction in myocardial damage, mediated through CD36 receptor activation independent of GH signaling.
  • CD36 Receptor Biology: Hexarelin’s binding to CD36 has made it a valuable research tool for studying scavenger receptor pharmacology, atherosclerosis, and cardiac repair mechanisms.

Hexarelin has advanced to Phase 2 clinical trials but has not received regulatory approval for any indication.

Specifications

All Hexarelin supplied by Prescott Bio Canada is manufactured to research-grade standards.

Specification Detail
Purity >98% (HPLC)
Form Lyophilized powder
Appearance White to off-white powder
Storage (lyophilized) -20°C, protected from light
Storage (reconstituted) 2-8°C, use within 30 days
Solubility Soluble in bacteriostatic water, sterile water, or normal saline

Each vial is accompanied by a Certificate of Analysis (COA) documenting purity, identity, and endotoxin testing.

Research Applications

Hexarelin is supplied exclusively for in vitro and in vivo laboratory research. Published experimental applications include:

  • Growth hormone secretagogue receptor pharmacology and potency comparison studies
  • Cardioprotective mechanism research including ischemia-reperfusion models
  • CD36 scavenger receptor signaling and binding studies
  • Comparative GH secretagogue studies examining selectivity profiles
  • Atherosclerosis and vascular biology research

Researchers should consult the primary literature and institutional review protocols before designing experiments with Hexarelin.

Storage and Handling

Lyophilized powder: Store at -20°C in the original sealed vial, protected from light and moisture. Under these conditions, Hexarelin maintains stability for up to 24 months.

Reconstituted solution: Reconstitute with bacteriostatic water or sterile water to the desired concentration. Store reconstituted Hexarelin at 2-8°C and use within 30 days. Avoid repeated freeze-thaw cycles.

Handling precautions: This product is intended for research use only (RUO). Not for human or veterinary diagnostic or therapeutic use. Handle using standard laboratory safety practices including appropriate PPE.

Additional information

Size

2mg, 5mg, 10mg

Published Research

4 references

References are provided for informational purposes to support in vitro laboratory research. No claims are made regarding therapeutic applications.

Growth hormone-releasing activity of hexarelin, a new synthetic hexapeptide, after intravenous, subcutaneous, intranasal, and oral administration in man

Ghigo E, Arvat E, Muccioli G, et al. (1994). Journal of Clinical Endocrinology and Metabolism. PubMed 8126144

Cardiac effects of hexarelin in hypopituitary adults with GH deficiency

Broglio F, Benso A, Valetto MR, et al. (2000). European Journal of Pharmacology

Hexarelin protects the heart from acute myocardial ischemia-reperfusion injury through CD36 scavenger receptor

Bhatt N, Bhatt P, et al. (2005). American Journal of Physiology – Heart and Circulatory Physiology

Desensitization of the GH response to hexarelin during chronic administration in adults with GH deficiency

Arvat E, Di Vito L, Broglio F, et al. (1997). Journal of Clinical Endocrinology and Metabolism. PubMed 9589671

For laboratory research use only (in vitro). Not for human or animal use.

Research Use Certification

This website supplies laboratory reference materials intended solely for in vitro research purposes. By entering, you confirm: