GH Secretagogues: GHRH vs GHRP — GenoPept research guide (research use only)

Growth Hormone Secretagogues Research Guide: GHRH Analogues vs GHRPs (Sermorelin, Tesamorelin, CJC-1295, Ipamorelin, GHRP-2, GHRP-6, Hexarelin)

Growth hormone secretagogues are synthetic peptides that act on the pituitary and hypothalamus to increase endogenous growth hormone (GH) release rather than supplying GH itself. They fall into two pharmacologically distinct families: GHRH analogues (sermorelin, tesamorelin, CJC-1295) that bind the GHRH receptor, and growth hormone-releasing peptides or GHRPs (ipamorelin, GHRP-2, GHRP-6, hexarelin) that bind the ghrelin receptor GHS-R1a. This guide is written for laboratory researchers comparing the two families in vitro and in preclinical models.

Updated ~14 min readReviewed by the GenoPept technical team

Key takeaways

  • Two receptor families, one output. GHRH analogues signal through the GHRH receptor (Gs/cAMP); GHRPs signal through GHS-R1a (Gq/IP3–Ca2+). Both converge on somatotroph GH release.
  • GHRPs are synthetic ghrelin mimetics. The receptor was cloned in 1996 by Howard and colleagues before its natural ligand ghrelin was identified by Kojima and colleagues in 1999.
  • Ipamorelin was described by Raun and colleagues in 1998 as the first GHRP with a selectivity profile that separated GH release from adrenocorticotropic hormone and prolactin release in preclinical models.
  • CJC-1295 exists in two distinct forms: with a drug affinity complex (DAC) that binds serum albumin, and without DAC — the latter is the tetrasubstituted GRF(1-29) analogue commonly listed as Modified GRF 1-29.
  • Teichman and colleagues (JCEM, 2006) reported prolonged GH and IGF-I elevation after single administration of CJC-1295 with DAC; Ionescu and Frohman (JCEM, 2006) reported that GH pulsatility persisted under continuous GHRH-receptor stimulation.
  • Molecular weights differ by more than an order of magnitude across the class — from 711.9 Da (ipamorelin) to 5135.9 Da (tesamorelin) — which changes the molar concentration of any given mg/mL stock solution.
  • All compounds described here are supplied by GenoPept as lyophilised vials for laboratory research only, with a per-batch certificate of analysis.

What are growth hormone secretagogues?

Growth hormone secretagogues (GHS) are compounds that stimulate the pituitary to release its own stored growth hormone, in contrast to recombinant somatropin, which is the 191-amino-acid hormone itself. The research literature divides them into two peptide families defined by which receptor they occupy: the GHRH receptor or the growth hormone secretagogue receptor 1a (GHS-R1a, the ghrelin receptor).

That distinction matters more than any marketing category. A GHRH analogue is a modified fragment of the endogenous 44-residue releasing hormone and can only amplify a signal the hypothalamus already sends. A GHRP is a small, largely unnatural peptide built around D-amino acids that mimics ghrelin, a gut-derived hormone with no structural relationship to GHRH at all.

Because the two families use separate G-protein pathways, they are frequently studied in combination in the published literature — the classic demonstration that a GHRH analogue and a GHRP together produce a larger somatotroph response than either alone.

The hypothalamic-pituitary growth hormone axis showing GHRH stimulation, somatostatin inhibition and ghrelin acting at GHS-R1a, the pathway targeted by growth hormone secretagogues The growth hormone axis Hypothalamus GHRH (releasing) Somatostatin (inhibiting) Stomach Ghrelin (acylated) natural GHS-R1a ligand Anterior pituitary somatotroph GHRH-R · Gs → cAMP → PKA GHS-R1a · Gq → IP₃ → Ca²⁺ Pulsatile GH release → hepatic IGF-I → negative feedback GHRH analogues bind here GHRPs bind here
Figure 1. The hypothalamic-pituitary axis targeted by growth hormone secretagogues: GHRH analogues engage the GHRH receptor while GHRPs engage GHS-R1a on the same somatotroph.

How the GH axis is regulated

GH secretion is pulsatile, set by the interplay of two hypothalamic peptides: GHRH drives release, somatostatin restrains it, and the alternation between them generates discrete bursts rather than a steady output. Steyn and colleagues review this dual-control model in detail in Comprehensive Physiology.

Ghrelin adds a third input. Discovered in 1999 as the endogenous ligand for the orphan receptor cloned three years earlier, it is an octanoylated 28-residue peptide from the stomach that acts at GHS-R1a in both the pituitary and the arcuate nucleus.

Downstream, GH acts on hepatocytes to induce IGF-I, and circulating IGF-I feeds back negatively on the hypothalamus and pituitary. Any experimental design using a secretagogue is therefore working inside a closed loop — the reason investigators typically sample GH over a time course rather than at a single point.

Note. Because secretagogues amplify an endogenous signal, their effect is bounded by pituitary reserve and by the prevailing somatostatin tone. This ceiling is the central pharmacological difference between a secretagogue and recombinant somatropin, which bypasses the pituitary entirely.

Family 1: GHRH analogues

GHRH analogues are truncated and stabilised versions of human growth hormone-releasing hormone, a 44-residue hypothalamic peptide. The 1-29 fragment retains essentially full receptor activity, making it the scaffold from which sermorelin, Modified GRF 1-29 and CJC-1295 are all built.

Sermorelin (GRF 1-29)

Sermorelin is the unmodified 29-residue fragment, CAS 86168-78-7, C149H246N44O42S, MW 3357.9 Da. It is the reference GHRH-receptor agonist in this class and has been used historically as a diagnostic probe of pituitary GH reserve. Its brevity in circulation reflects rapid dipeptidyl peptidase-4 (DPP-4) cleavage at the Tyr1-Ala2 bond.

Modified GRF 1-29 (CJC-1295 without DAC)

Modified GRF 1-29 carries four substitutions relative to sermorelin — most importantly D-Ala at position 2, which blocks the DPP-4 cleavage site. It is listed under CAS 863288-34-0, C152H252N44O42, MW 3367.9 Da. Note that it is the same peptide backbone as CJC-1295 with DAC, minus the albumin-binding attachment.

CJC-1295 with DAC

CJC-1295 with DAC adds an N-ε-maleimidopropionyl group to Lys30. That maleimide reacts covalently with a free cysteine thiol on circulating serum albumin, tethering the peptide to a long-lived carrier protein. The conjugate is described under CAS 446262-90-4, C165H269N47O46, MW 3647.3 Da. Teichman and colleagues reported sustained elevation of GH and IGF-I after single administration in healthy adults, and Ionescu and Frohman subsequently reported that GH pulsatility was preserved despite continuous receptor occupancy.

Tesamorelin

Tesamorelin is the full 44-residue GRF sequence bearing a trans-3-hexenoyl group on the N-terminal tyrosine (CAS 218949-48-5, C221H366N72O67S, MW 5135.9 Da). It is the only GHRH analogue in this group with a published phase 3 programme: Falutz and colleagues reported reductions in visceral adipose tissue in a randomised trial in people with HIV-associated lipodystrophy (New England Journal of Medicine, 2007). That work is cited here as research context only.

Family 2: GHRPs and the ghrelin receptor

Growth hormone-releasing peptides are short synthetic sequences, typically penta- or hexapeptides, that activate GHS-R1a. They were discovered by reverse pharmacology: Bowers and colleagues built them from opioid-peptide fragments in the 1980s, a decade before either the receptor or its natural ligand was known.

All four GHRPs stocked in the growth-hormone research category share a common design logic — D-amino acids and unnatural residues at positions vulnerable to peptidases, a C-terminal amide, and an aromatic cluster that occupies the receptor’s hydrophobic pocket.

Family tree of growth hormone secretagogues splitting into GHRH receptor analogues and GHS-R1a growth hormone releasing peptides Two families of GH secretagogue GH secretagogues GHRH analogues receptor: GHRH-R · Gs / cAMP GHRPs (ghrelin mimetics) receptor: GHS-R1a · Gq / Ca²⁺ Sermorelin — GRF(1-29), 3357.9 Da Mod GRF 1-29 — D-Ala², 3367.9 Da CJC-1295 DAC — albumin-bound Tesamorelin — GRF(1-44), 5135.9 Da Ipamorelin — pentapeptide, 711.9 Da GHRP-2 — hexapeptide, 818.0 Da GHRP-6 — hexapeptide, 873.0 Da Hexarelin — hexapeptide, 887.1 Da
Figure 2. Family tree of the eight growth hormone secretagogues in the GenoPept catalogue, grouped by receptor.

Ipamorelin

Ipamorelin is the pentapeptide Aib-His-D-2-Nal-D-Phe-Lys-NH2 (CAS 170851-70-4, C38H49N9O5, MW 711.9 Da) and the smallest compound in this guide. Raun and colleagues characterised it in 1998 as the first GHS whose GH-releasing potency in rodent and swine models was not accompanied by the adrenocorticotropic hormone and prolactin responses seen with earlier GHRPs.

GHRP-2 (pralmorelin)

GHRP-2 is D-Ala-D-2-Nal-Ala-Trp-D-Phe-Lys-NH2 (CAS 158861-67-7, C45H55N9O6, MW 818.0 Da). It has been formulated as a single-administration diagnostic agent for assessment of GH deficiency in Japan, which makes it one of the better-documented GHRPs in the human literature.

GHRP-6

GHRP-6 is His-D-Trp-Ala-Trp-D-Phe-Lys-NH2 (CAS 87616-84-0, C46H56N12O6, MW 873.0 Da) — the original hexapeptide from the Bowers programme and the reference GHS-R1a ligand in much of the receptor-pharmacology literature. In rodent studies it is the GHRP most consistently reported to increase food intake, consistent with ghrelin mimicry at the arcuate nucleus.

Hexarelin (examorelin)

Hexarelin is His-2-Me-D-Trp-Ala-Trp-D-Phe-Lys-NH2 (CAS 140703-51-1, C47H58N12O6, MW 887.1 Da), a 2-methylated GHRP-6 analogue. It is distinctive in the literature for reported binding to CD36 in cardiac tissue in addition to GHS-R1a, which is why it appears in cardiovascular preclinical work as well as somatotroph studies.

GHRH vs GHRP: side-by-side

The short answer: GHRH analogues raise the amplitude of GH pulses the hypothalamus already initiates, while GHRPs act partly by suppressing somatostatin tone and partly by direct somatotroph stimulation. Because the mechanisms are non-identical, the combined response in published pituitary and whole-animal work exceeds the arithmetic sum of the two alone.

Signalling comparison of GHRH receptor and GHS-R1a in the somatotroph showing cAMP and calcium pathways converging on growth hormone exocytosis Two pathways, one exocytotic endpoint GHRH receptor Class B GPCR, Gs-coupled adenylate cyclase → cAMP PKA → CREB → GH-1 transcription also drives somatotroph proliferation ligands: sermorelin, Mod GRF, CJC-1295 GHS-R1a (ghrelin receptor) Class A GPCR, Gq-coupled PLC → IP₃ → Ca²⁺ release plus reduced somatostatin tone high constitutive activity reported ligands: ipamorelin, GHRP-2/6, hexarelin GH granule exocytosis
Figure 3. Receptor signalling behind growth hormone secretagogues: distinct second messengers converging on the same secretory event.
Table 1. The eight growth hormone secretagogues in the GenoPept catalogue compared by class and receptor.
CompoundFamilyReceptorStructureDistinguishing feature in the literature
SermorelinGHRH analogueGHRH-RGRF(1-29), unmodifiedReference fragment; DPP-4 sensitive at Tyr1-Ala2
Mod GRF 1-29 (CJC-1295 no DAC)GHRH analogueGHRH-RGRF(1-29) with D-Ala2 + 3 further substitutionsDPP-4-resistant backbone without albumin conjugation
CJC-1295 with DACGHRH analogueGHRH-RSame backbone + maleimidopropionyl-Lys30Covalent albumin binding; prolonged IGF-I elevation reported
TesamorelinGHRH analogueGHRH-RGRF(1-44) + trans-3-hexenoyl on Tyr1Only member with completed phase 3 trials
IpamorelinGHRPGHS-R1aPentapeptide, C-terminal amideSelectivity for GH over ACTH and prolactin in preclinical models
GHRP-2 (pralmorelin)GHRPGHS-R1aHexapeptide, D-Ala1/D-2-Nal2Used as a diagnostic GH-stimulation agent in Japan
GHRP-6GHRPGHS-R1aHexapeptide, His1/D-Trp2Original Bowers hexapeptide; orexigenic in rodent studies
HexarelinGHRPGHS-R1a (+ CD36)2-methyl-Trp2 GHRP-6 analogueReported cardiac CD36 binding independent of GHS-R1a

Selectivity and off-target pituitary output

Selectivity within the GHRP family is the property that distinguishes ipamorelin from its predecessors. The somatotroph is not the only GHS-R1a-bearing cell in the anterior pituitary, and earlier hexapeptides were reported to raise adrenocorticotropic hormone, cortisol and prolactin alongside GH in preclinical work.

Raun and colleagues reported that ipamorelin released GH with potency comparable to GHRP-6 in their models while leaving those other axes substantially unaffected at GH-releasing concentrations. That is the specific claim that has kept ipamorelin in circulation as a research tool: it allows an experiment to attribute a downstream effect to the GH axis rather than to a generalised pituitary response.

GHRH analogues are inherently more selective because GHRH-R expression is largely confined to somatotrophs. The trade-off is that they cannot overcome high somatostatin tone, whereas GHRPs partly can.

Note. Selectivity data are compound-specific and model-specific. Findings reported in rat pituitary cell culture or in swine do not automatically transfer to other species or to intact systems, and none of the material above describes an effect in any person.

Specifications: CAS, formula, molecular weight

Molecular weight is the practical number in this class, because it determines how many nanomoles a given mass contains. A 5 mg vial of ipamorelin (711.9 Da) holds roughly seven times more molecules than a 5 mg vial of tesamorelin (5135.9 Da) — a difference that matters for any molar-concentration assay.

Table 2. Verified identity data for growth hormone secretagogues.
CompoundCASMolecular formulaMW (Da)Residues
Sermorelin86168-78-7C149H246N44O42S3357.929
Mod GRF 1-29863288-34-0C152H252N44O423367.929
CJC-1295 with DAC446262-90-4C165H269N47O463647.330 + linker
Tesamorelin218949-48-5C221H366N72O67S5135.944 + acyl
Ipamorelin170851-70-4C38H49N9O5711.95
GHRP-2158861-67-7C45H55N9O6818.06
GHRP-687616-84-0C46H56N12O6873.06
Hexarelin140703-51-1C47H58N12O6887.16

Handling, reconstitution and storage

All eight compounds ship as lyophilised powder and are reconstituted in the laboratory before assay. The concentrations below are a reference for preparing stock solutions for in-vitro and analytical work — they are not, and must not be read as, an amount for administration to any person or animal.

  1. Equilibrate. Bring the sealed vial to room temperature before opening to avoid condensation on the cake.
  2. Add diluent slowly. Direct the stream of bacteriostatic water down the vial wall rather than onto the lyophilised cake; peptides in this class are surface-active and foam readily.
  3. Dissolve by swirling. Do not vortex. Mechanical shear and air-liquid interface exposure both promote aggregation.
  4. Inspect. A correctly reconstituted solution is clear and colourless with no visible particulates.
  5. Aliquot. Divide into single-use volumes to avoid repeated freeze-thaw of the working stock.
  6. Record. Log batch number, diluent, date and resulting concentration against the vial’s certificate of analysis.
Table 3. Concentration reference for solution preparation (laboratory use).
Mass in vialDiluent addedResulting concentrationAmount per 0.1 mLIpamorelin molarity (MW 711.9)
2 mg1 mL2 mg/mL200 mcg2.81 mM
2 mg2 mL1 mg/mL100 mcg1.40 mM
5 mg1 mL5 mg/mL500 mcg7.02 mM
5 mg2 mL2.5 mg/mL250 mcg3.51 mM
5 mg3 mL1.67 mg/mL167 mcg2.34 mM
10 mg2 mL5 mg/mL500 mcg7.02 mM
10 mg3 mL3.33 mg/mL333 mcg4.68 mM
Handling. Lyophilised vials are stored at −20 °C and protected from light. Once reconstituted, solutions are refrigerated at 2–8 °C and used within the window established for the batch. Peptides with free cysteine or methionine residues are oxidation-sensitive; the GHRPs in this guide contain tryptophan, which is photolabile — keep working solutions in amber or foil-wrapped tubes.

Limitations of the published evidence

The evidence base for this class is uneven. Tesamorelin has completed randomised phase 3 trials; GHRP-2 has a defined diagnostic role in one jurisdiction; ipamorelin, hexarelin and CJC-1295 have published human pharmacology but no completed late-phase programme for any indication.

A second limitation is the gap between acute GH release and any durable outcome. Demonstrating a GH pulse after a secretagogue is straightforward; demonstrating that repeated pulses produce a stable physiological change is a different and much harder experiment, and most of the published work stops at the first step.

Third, ghrelin-receptor biology has expanded considerably since 1999. GHS-R1a shows high constitutive activity and heterodimerises with other receptors, and the truncated GHS-R1b isoform does not signal conventionally — complications that any receptor-level study using GHRPs should account for.

Frequently asked questions

What is the difference between a GHRH analogue and a GHRP?

A GHRH analogue is a modified fragment of growth hormone-releasing hormone that binds the GHRH receptor and signals through Gs and cAMP. A GHRP is a small synthetic peptide, structurally unrelated to GHRH, that binds the ghrelin receptor GHS-R1a and signals through Gq and intracellular calcium. Both increase pituitary GH release, but by separate second-messenger routes.

Is CJC-1295 the same as Modified GRF 1-29?

Not quite. Both share the same tetrasubstituted GRF(1-29) backbone. CJC-1295 with DAC additionally carries a maleimidopropionyl group on Lys30 that binds covalently to serum albumin, giving CAS 446262-90-4 and MW 3647.3 Da. Modified GRF 1-29 lacks that group and is listed under CAS 863288-34-0 with MW 3367.9 Da.

Why is ipamorelin described as selective?

Raun and colleagues reported in 1998 that ipamorelin released growth hormone in rodent and swine models with potency comparable to GHRP-6, but without the accompanying rises in adrenocorticotropic hormone and prolactin that earlier growth hormone-releasing peptides produced. That separation of pituitary outputs is what the term selectivity refers to in this literature.

Do growth hormone secretagogues need to be refrigerated?

Lyophilised vials are typically held at −20 °C for long-term storage and are stable for shorter periods at 2–8 °C. Once reconstituted, solutions are refrigerated and protected from light. Tryptophan-containing GHRPs such as GHRP-6 and hexarelin are photolabile, so amber or foil-wrapped vessels are preferred for working stocks.

Why are GHRH analogues and GHRPs often studied together?

Because they occupy different receptors on the same cell. In published pituitary and whole-animal work, combining a GHRH-receptor agonist with a GHS-R1a agonist produces a larger growth hormone response than either compound alone, and the combination is used experimentally to probe whether an effect depends on one pathway or both.

What is the ghrelin receptor and when was it identified?

GHS-R1a is a class A G-protein-coupled receptor cloned by Howard and colleagues in 1996 from pituitary and hypothalamus. It was an orphan receptor at that point. Its natural ligand, the octanoylated stomach peptide ghrelin, was identified by Kojima and colleagues in 1999 and published in Nature.

How does molecular weight affect stock solution preparation?

Molar concentration depends on molecular weight, so equal masses of different secretagogues give very different molarities. At 1 mg/mL, ipamorelin (711.9 Da) is approximately 1.40 mM while tesamorelin (5135.9 Da) is approximately 0.19 mM. Assays specified in nM or µM require the calculation to be done per compound.

Are these compounds the same as somatropin?

No. Somatropin is recombinant human growth hormone itself — a 191-amino-acid protein of roughly 22 kDa. Secretagogues are much smaller peptides that act upstream on the pituitary to increase release of endogenous growth hormone. Somatropin bypasses that regulation entirely; secretagogues remain subject to it.

References

  1. Bowers CY, Momany FA, Reynolds GA, Hong A. On the in vitro and in vivo activity of a new synthetic hexapeptide that acts on the pituitary to specifically release growth hormone. Endocrinology. 1984;114(5):1537–1545. Endocrinology
  2. Howard AD, Feighner SD, Cully DF, et al. A receptor in pituitary and hypothalamus that functions in growth hormone release. Science. 1996;273(5277):974–977. PubMed
  3. Kojima M, Hosoda H, Date Y, Nakazato M, Matsuo H, Kangawa K. Ghrelin is a growth-hormone-releasing acylated peptide from stomach. Nature. 1999;402(6762):656–660. PubMed
  4. Raun K, Hansen BS, et al. Ipamorelin, the first selective growth hormone secretagogue. European Journal of Endocrinology. 1998;139(5):552–561. PubMed
  5. Teichman SL, Neale A, Lawrence B, Gagnon C, Castaigne JP, Frohman LA. Prolonged stimulation of growth hormone (GH) and insulin-like growth factor I secretion by CJC-1295, a long-acting analog of GH-releasing hormone, in healthy adults. The Journal of Clinical Endocrinology & Metabolism. 2006;91(3):799–805. PubMed
  6. Ionescu M, Frohman LA. Pulsatile secretion of growth hormone (GH) persists during continuous stimulation by CJC-1295, a long-acting GH-releasing hormone analog. The Journal of Clinical Endocrinology & Metabolism. 2006;91(12):4792–4797. PubMed
  7. Falutz J, et al. Metabolic effects of a growth hormone-releasing factor in patients with HIV. New England Journal of Medicine. 2007;357(23):2359–2370. PubMed
  8. Steyn FJ, Tolle V, Chen C, Epelbaum J. Neuroendocrine regulation of growth hormone secretion. Comprehensive Physiology. 2016;6(2):687–735. Wiley

Research-grade growth hormone secretagogues, batch-verified

GenoPept supplies sermorelin, tesamorelin, CJC-1295 (with and without DAC), ipamorelin, GHRP-2, GHRP-6 and hexarelin as lyophilised vials with a per-batch third-party certificate of analysis covering HPLC purity and mass confirmation, dispatched from the UK strictly for laboratory research.

View GH & IGF research peptides See COA certificates

Research use only. All products described on this page are supplied strictly for in-vitro laboratory research and analytical purposes. They are not medicines, are not for human or veterinary use, and must not be used for diagnosis, treatment, cure or prevention of any disease or condition. Nothing on this page is medical, legal or dosing advice. Purchasers must be qualified researchers or institutions and must comply with all applicable laws. See our Research Use Only policy.

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