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Ipamorelin 10mg Selective GHRP Analog

  • Unit Size: 10mg

  • Form: Lyophilized powder

  • Molecular Weight: ~711.86 Da

  • Solubility: Soluble in bacteriostatic or sterile water

  • Storage: Store lyophilized in a cool, dry location. After reconstitution, keep at 2°C–8°C.

Original price was: $69.99.Current price is: $59.99.

Description

What is Ipamorelin?

Ipamorelin is a synthetic pentapeptide and selective Growth Hormone Releasing Peptide (GHRP) analog that was developed specifically to address a research limitation of earlier GHRP compounds. The first-generation GHRPs — GHRP-2 and GHRP-6 — were effective at stimulating growth hormone release in laboratory models, but they also triggered cortisol and prolactin secretion as off-target effects, which complicated the interpretation of research findings. Ipamorelin was designed to be selective — stimulating GHS-R1a (the ghrelin receptor) without producing those secondary hormonal responses in laboratory models. That selectivity is the defining characteristic of ipamorelin research peptide 10mg and the primary reason it became a widely referenced tool in growth hormone biology research.

The 10mg format supplied here by Atlanta Advanced Peptides is suited for laboratory protocols requiring larger compound volumes, extended research study designs, or multi-session investigations. It is available at ≥99% purity in a single lyophilized vial, supplied exclusively for in-vitro and in-vivo scientific research. Researchers who also work with CJC-1295 will find Ipamorelin frequently referenced alongside it in published growth hormone axis research — more on that below.


Ipamorelin 10mg Compound Specifications

Specification Detail
Common Name Ipamorelin
Full Name Selective Growth Hormone Releasing Peptide Analog
Sequence Aib-His-D-2-Nal-D-Phe-Lys-NH₂
Molecular Formula C₃₈H₄₉N₉O₅
Molecular Weight 711.85 g/mol
Format 10mg lyophilized powder
Purity ≥ 99%
CAS Number 170851-70-4
Storage Store at -20°C, away from light and moisture
Reconstitution Bacteriostatic water recommended
Research Use In-vitro and in-vivo laboratory research only

Why Selectivity Matters in GHRP Research

To understand what makes ipamorelin GHRP research distinct, it helps to understand what came before it. GHRP-6 was among the first synthetic growth hormone secretagogues studied in laboratory settings, but it consistently triggered significant cortisol and prolactin release alongside growth hormone stimulation in research models. GHRP-2 showed similar off-target hormonal effects. For researchers trying to isolate growth hormone axis biology specifically, those secondary responses were a confounding variable that made clean experimental interpretation difficult.

Ipamorelin was developed to solve exactly that problem. Published laboratory studies have documented that Ipamorelin stimulates growth hormone release through GHS-R1a receptor engagement without producing significant cortisol or prolactin responses in research models — a selectivity profile that no earlier first-generation GHRP had achieved. That single characteristic changed how researchers could design growth hormone biology studies, and it is the reason Ipamorelin became one of the most referenced GHRPs in published peptide research literature from the late 1990s onward.


Ipamorelin in Scientific Research

The published literature on ipamorelin research peptide 10mg is focused and consistent — almost entirely centred on the growth hormone axis, somatotroph biology, and the downstream metabolic and physiological pathways that GH secretion influences in laboratory models. Here is an honest overview of what that literature documents.

GHS-R1a Receptor Biology and Growth Hormone Secretion Research

The foundational area of ipamorelin GHRP research involves GHS-R1a receptor engagement and its downstream effects on pituitary somatotroph cells. Published in-vitro and in-vivo studies have documented how Ipamorelin stimulates growth hormone pulse secretion in laboratory models, with researchers examining the amplitude and frequency of GH pulses, the dose-response relationship at the receptor level, and the selectivity profile compared to other GHRPs in controlled experimental environments. This receptor biology research established Ipamorelin’s place as a reference compound in growth hormone secretagogue investigation.

Ipamorelin and CJC-1295 — The Combination Research Model

One of the most well-documented aspects of Ipamorelin research is its frequent pairing with CJC-1295 in published laboratory studies. The scientific rationale is straightforward — Ipamorelin operates through the ghrelin receptor pathway, while CJC-1295 acts on the GHRH receptor. In laboratory models, stimulating both pathways simultaneously produces a more pronounced growth hormone response than either compound alone. Published research has examined this combination extensively, making the Ipamorelin/CJC-1295 pairing one of the most studied dual-pathway growth hormone secretagogue combinations in the peptide research literature. For researchers working specifically in this area, both compounds are available separately or as our pre-formulated CJC-1295 / Ipamorelin blend.

Bone Biology and Skeletal Research Models

Published laboratory research has examined Ipamorelin’s interaction with bone biology in in-vivo research models, with studies investigating its influence on bone mineral density signaling, osteoblast activity, and skeletal growth pathway regulation in controlled environments. This area of buy ipamorelin 10mg research investigation is less widely referenced than its growth hormone secretion studies but represents a meaningful subset of the published literature — particularly in research contexts examining the relationship between GH pulse patterns and skeletal biology outcomes.

Gastrointestinal Motility Research

An often-overlooked area of published Ipamorelin research involves gastrointestinal motility. GHS-R1a receptors are expressed in the GI tract as well as the pituitary, and published laboratory studies have examined how Ipamorelin interacts with gastric motility signaling pathways in controlled in-vitro and in-vivo models. This GI biology research context is distinct from its growth hormone secretagogue profile and represents an independent line of investigation in the published literature that researchers working in GI biology should be aware of.

Metabolic and Body Composition Research Models

Growth hormone’s downstream effects on metabolism have made Ipamorelin relevant to metabolic biology research beyond the pituitary. Published laboratory studies have examined how GH stimulation through GHRP pathways influences lipid metabolism, protein synthesis signaling, and glucose regulation in animal research models. These metabolic research contexts overlap with the broader field of GH axis biology investigation, where Ipamorelin serves as a cleaner research tool than earlier GHRPs precisely because of its selective receptor engagement profile.

Research Disclaimer: All research references above relate exclusively to published scientific literature and controlled laboratory investigations. Ipamorelin 10mg supplied by Atlanta Advanced Peptides is for research use only and is not approved for human or veterinary application under any circumstances.


Ordering Ipamorelin 10mg

To buy Ipamorelin 10mg from Atlanta Advanced Peptides, add the compound to your cart and complete checkout through our secure encrypted payment gateway. Orders are processed Monday through Friday during standard business hours. All orders ship via USPS Ground Advantage or USPS Priority Mail with full tracking provided by email.

All purchases are made with the explicit understanding that:

  • The purchaser is 18 years of age or older
  • The compound will be used solely for legitimate in-vitro or in-vivo laboratory research
  • The product will not be used for human or veterinary purposes under any circumstances

Reconstitution Guidelines for Research Use

Ipamorelin 10mg is supplied as a lyophilized powder and requires reconstitution before use in laboratory protocols. It is compatible with bacteriostatic water as the reconstitution solvent. Inject solvent slowly down the inner wall of the vial without shaking vigorously, store the reconstituted compound refrigerated at 2–8°C, and apply standard laboratory PPE and sterile technique throughout all handling steps.


Related Research Compounds

Researchers working with Ipamorelin frequently reference these related compounds in their laboratory studies:

  • CJC-1295 / Ipamorelin 5mg/5mg Research Blend — the most widely co-referenced compound pairing in GH secretagogue research, available as a pre-formulated blend
  • Tesamorelin 10mg — GHRH analog studied in growth hormone and metabolic biology research, operates through the GHRH receptor rather than GHS-R1a
  • MOTS-c 10mg — mitochondrial-derived peptide referenced alongside GH-axis compounds in metabolic regulation research models
  • GLP-1 SM 10mg — GLP-1 receptor agonist analog studied in metabolic and appetite regulation research contexts alongside GHRP compounds
  • Bacteriostatic Water 10ml — recommended reconstitution solvent for laboratory use

Research Disclaimer

⚠️ For Laboratory Research Use Only

Ipamorelin 10mg supplied by Atlanta Advanced Peptides is intended strictly for in-vitro and in-vivo scientific research conducted by qualified researchers in controlled laboratory environments. This compound is not approved for human consumption, veterinary use, or any clinical application whatsoever. It is not classified as a drug, supplement, food product, or therapeutic agent. All purchasers must be 18 years of age or older. By completing a purchase, the buyer explicitly confirms that this compound will be used solely for legitimate scientific research purposes and in full compliance with all applicable local, state, and federal laws and regulations.

Additional information

Weight 0.2 lbs
Unit Size

10mg

Molecular Weight

711.86 Da

Form

Lyophilized powder

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