CJC-1295 (No DAC), Ipamorelin 10mg (Blend) 10mg
Lot PX1CJCIPA10-0021
ILS Laboratories
Independent laboratory
HPLC purity
99.75%
High purity confirmed

CJC-1295 (No DAC) + Ipamorelin · 10mg

Made in the USA
Ships from the USA
Peptide Blends
Research monograph on Ipamorelin and CJC-1295 — a selective ghrelin-receptor pentapeptide and a long-acting GHRH analog, the most-studied secretagogue pairing in somatotropic-axis research.
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For research use only. Not for human or animal consumption.
Molecular weight
Not assigned for this material
Molecular formula
Not assigned for this material
CAS number
Not assigned for this material
Chain length
Not assigned for this material
Classification: Multi-component research blend
A blend has no single molecular formula, molecular weight, CAS number, or amino-acid sequence. Each component is identified separately on the lot documentation.
Batch verification
Independent testing with lot-specific analytical documentation.
Lot PX1CJCIPA10-0021
ILS Laboratories
Independent laboratory
HPLC purity
99.75%
High purity confirmed

Full GHS 16-section Safety Data Sheet for CJC-1295 + Ipamorelin, prepared per OSHA HazCom 2012 (29 CFR 1910.1200). Includes substance identity, handling & storage, PPE, stability, transport and regulatory information.
CAS No.
Not assigned
Formula
Not assigned
Mol. Weight
Per COA
Classification
Not hazardous (GHS)
1 CJC-1295 DAC 5mg
1 Ipamorelin 5mg
CJC-1295 DAC is a sophisticated peptide agent developed to act as a mimetic of endogenous Growth Hormone Releasing Hormone (GHRH). This state-of-the-art molecule is built to interact with specific pituitary receptors, potentially initiating a sequence of physiological events that boost the synthesis and systemic delivery of growth hormone (GH). In the context of preclinical trials, the use of CJC-1295 DAC has been shown to produce substantial elevations in GH concentrations, establishing it as a vital instrument for experimental science.
Growth Hormone Research Stack – How CJC-1295 DAC Works
The mechanism of CJC-1295 DAC involves mirroring the functional properties and molecular layout of native GHRH. This architectural resemblance permits it to bind successfully to GHRH receptors situated within the anterior pituitary's cellular structure. Following receptor activation, the peptide triggers the manufacturing and secretion of growth hormones into systemic circulation. Scientific exploration suggests that high levels of human growth hormone (HGH) may be maintained for several days post-application, demonstrating the compound’s durable effectiveness.
Growth Hormone Research Stack – Extended Half-Life for Prolonged Effects
A primary advantage of CJC-1295 DAC is its remarkably long half-life, distinguishing it from standard laboratory peptides. This longevity is facilitated by the proprietary Drug Affinity Complex (DAC) method, which permits the peptide to create secure attachments to albumin found in blood plasma. This metabolic conjugation greatly increases its duration in the system, resulting in sustained GH elevation over a long timeframe. While other peptides may face rapid degradation, CJC-1295 DAC provides a consistent platform for longitudinal research studies.
Growth Hormone Research Stack – Indirect Role in IGF-1 Production
Beyond its immediate influence on the secretion of growth hormone, CJC-1295 DAC also exerts a significant effect on the generation of Insulin-like Growth Factor-1 (IGF-1). As growth hormone enters the bloodstream and reaches the liver, it acts as a catalyst for IGF-1 production. Documentation indicates that CJC-1295 DAC raises both GH and IGF-1 levels. These hormones work in tandem to facilitate various physiological pathways, such as the repair of tissue and the proliferation of cells.
Growth Hormone Research Stack – The Science Behind DAC Technology
The "DAC" suffix signifies the Drug Affinity Complex, a technical breakthrough pioneered by researcher John J. Kopchick at Ohio University. By enabling binding with serum albumin, this technology maximizes the stability and residence time of the peptide, ensuring a measured and continuous release. This persistent biological activity makes CJC-1295 DAC a premier selection for experiments requiring ongoing stimulation of the growth hormone axis.
Growth Hormone Research Stack – CJC-1295 DAC Specifications
Growth Hormone Research Stack – Important Disclaimer CJC-1295 DAC is produced exclusively for in vitro experimental use and must be managed only by qualified experts. The FDA has not cleared this product for use in humans or animals; it is strictly prohibited from being marketed or utilized as a medication, food product, dietary supplement, or cosmetic.
Growth Hormone Research Stack – References
Ipamorelin 5mg: Unlock Your Growth Potential
Growth Hormone Research Stack – How Ipamorelin Works: Ipamorelin is a modern pentapeptide engineered to promote the natural synthesis of growth hormone (GH). By engaging growth hormone secretagogue receptors in the pituitary gland, it catalyzes a marked increase in GH output. Recognized as a highly specific Growth Hormone-Releasing Peptide (GHRP), Ipamorelin is noted for its ability to raise growth hormone levels with high precision, avoiding the disruption of other vital hormones like prolactin, cortisol, or thyroid-stimulating hormone.
Growth Hormone Research Stack – Why Choose Ipamorelin? The primary benefit of Ipamorelin is its highly focused physiological action, concentrating solely on the secretion of growth hormone. This precision makes it a more streamlined and reliable candidate compared to alternative peptides. Its capacity to stimulate GH without affecting levels of prolactin, thyroid markers, or luteinizing hormone provides a controlled approach to studying hormonal optimization.
Growth Hormone Research Stack – Key Features of Ipamorelin 5mg:
Growth Hormone Research Stack – Storage Instructions:
Note: This substance is strictly for research applications. Lab accessories and diluents are not provided.
Why PX1 Research? At PX1 Research, our focus is on providing high-quality, precise materials. Our 5mg Ipamorelin undergoes thorough testing to verify its potency and purity, establishing it as a dependable resource for the scientific community. Investigate the possibilities of Ipamorelin with PX1 Research and utilize the advantages of specialized peptide chemistry.
Purity (HPLC)
≥99%
Application
For Research Use only
Form
Lyophilized Powder
Storage
-20°C Long Term
Testing
Third Party Tested
Manufacture
USA
99%+ HPLC Purity
Independently verified by accredited US laboratory
Endotoxin-Screened
LAL tested, LPS-free, endotoxin report available
GMP-Certified Manufacturing
USA facility, ISO 9001:2015
Lyophilized for Stability
Shipped cold-packed and sealed for stability
Studied as a long-acting growth-hormone-releasing hormone that sustains GH and downstream IGF-1 levels for tissue repair research.
For research use only — not for human or animal consumption.
CJC-1295 without DAC (Mod GRF 1-29) is a 29-amino-acid GHRH analog; ipamorelin is a selective 5-amino-acid ghrelin-receptor pentapeptide. Combined, they are the most referenced research blend for studying complementary GHRH and secretagogue pathways of pulsatile growth-hormone release.
| Compound name | CJC-1295 (no DAC) + Ipamorelin |
|---|---|
| CAS registry number | 863288-34-0 (CJC-1295 no DAC); 170851-70-4 (ipamorelin) |
| Molecular formula | C152H252N44O42 (CJC-1295 no DAC); C38H49N9O5 (ipamorelin) |
| Molar mass | ≈3367.9 g/mol; ≈711.9 g/mol |
| Amino acid sequence | Ipamorelin: Aib-His-D-2-Nal-D-Phe-Lys-NH2 |
| Chain length | 29 amino acids; 5 amino acids |
| Physical form | Co-lyophilized white powder |
| Purity specification | ≥99% by reversed-phase HPLC per component; identity confirmed by LC-MS |
| Intended use | Research use only — not for human or veterinary use |
Research monograph
Ipamorelin is a synthetic pentapeptide (Aib-His-D-2-Nal-D-Phe-Lys-NH2) that acts as a selective agonist at the growth hormone secretagogue receptor GHS-R1a, the receptor for endogenous ghrelin. Its defining characteristic in the literature is selectivity: unlike earlier growth hormone-releasing peptides such as GHRP-2 and GHRP-6, ipamorelin showed minimal effect on cortisol and prolactin in the original characterization studies, which is why it became the reference ghrelin-mimetic for clean axis experiments.
CJC-1295 is a modified analog of GHRH(1-29). It exists in two distinct research forms that are routinely confused: CJC-1295 with DAC, which carries a drug-affinity complex enabling covalent binding to serum albumin and a substantially extended duration; and CJC-1295 without DAC (also called modified GRF 1-29), which retains four stabilizing amino-acid substitutions but has no albumin anchor and therefore a short duration. These are different test articles and should never be treated as interchangeable in a study design.
PX1 Research supplies both compounds individually and as the blended preparation, each released against a batch-specific certificate of analysis. Research use only — not for human or veterinary use.
The somatotropic axis has two independent stimulatory inputs at the pituitary somatotroph: the GHRH receptor and GHS-R1a. Because the receptors are distinct and their signaling converges downstream, co-stimulation in preclinical models produces a response larger than either input alone — a synergy that is one of the better-replicated findings in the field.
That is the mechanistic rationale behind the CJC-1295 + ipamorelin blend, which is among the most commonly requested research preparations in the class. The GHRH analog raises the amplitude of the release pulse while the ghrelin-mimetic increases pulse frequency and suppresses somatostatin tone, and study designs frequently isolate each contribution by running the two singles alongside the blend.
Comparative designs also bring in tesamorelin (a hexenoyl-stabilized GHRH(1-44) analog) and sermorelin (unmodified GHRH(1-29)) to separate duration effects from receptor effects, since the three GHRH-side molecules differ mainly in how they resist DPP-4 cleavage and clearance.
Laboratories that work with Ipamorelin and CJC-1295 typically characterize incoming material on three axes before it enters a study: identity, purity and content. Identity is established by high-resolution mass spectrometry against the theoretical monoisotopic mass (711.9 Da for ipamorelin; ≈3,647.2 Da for CJC-1295 with DAC and ≈3,367.9 Da for the non-DAC form), usually supported by MS/MS fragmentation that walks the backbone and confirms the sequence rather than just the total mass. A matching intact mass alone can be satisfied by a scrambled or partially epimerized sequence, which is why fragmentation data is the stronger identity evidence.
Purity is quantified by reversed-phase HPLC with UV detection, integrating every resolved peak in the chromatogram and expressing the main peak as a percentage of total area. The gradient matters more than the headline number: a shallow, well-optimized gradient resolves closely eluting process impurities such as deamidation products, oxidation variants, truncated sequences and acetate adducts, while an aggressive gradient can co-elute them under the main peak and inflate the reported purity. PX1 publishes the chromatogram itself, not only the integrated figure, so the resolution behind the number is auditable.
Content — how much peptide is actually in the vial once counter-ions and residual water are subtracted — is the axis most often skipped by low-cost suppliers. Net peptide content is a function of the labeled mass, the water content measured by Karl Fischer titration, and the counter-ion (typically trifluoroacetate or acetate) load. A vial that is 99% pure by HPLC can still under-deliver on content if it carries a high salt and moisture fraction, which is why the COA reports both.
Each lot is USA-manufactured and released at ≥99% purity by reversed-phase HPLC with LC-MS identity confirmation, kinetic chromogenic LAL endotoxin, GC residual solvents and Karl Fischer water content. For the blend, the release method resolves both peptides in a single chromatographic run and mass spectrometry confirms both intact masses — a blend released against a single-analyte method has only been half-characterized.
The DAC and non-DAC forms of CJC-1295 differ by roughly 279 Da, which makes mass spectrometry an unambiguous check that the vial contains the form on the label. Confirming this is worth doing, because mislabeling between the two forms is one of the more common quality failures in the research-peptide market.
The research-peptide market is unusually wide in quality. The same nominal Ipamorelin and CJC-1295 listing can represent USA-manufactured material released against a documented specification, or repackaged bulk of unknown origin with a generic certificate that was never generated from the lot in the vial. The distinction is invisible from the product photo and only becomes visible in the paperwork.
The practical test is traceability: the lot number printed on the vial label should appear on the certificate of analysis, and that certificate should show the actual chromatogram and mass spectrum for that lot rather than a representative example. A COA without a lot number, without instrument traces, or dated years before the vial was filled is a document, not evidence. PX1 publishes the batch-specific report directly on the product page so the chain from manufacturing to vial is checkable before purchase.
Beyond the certificate, consistent lab-grade supply depends on synthesis and release happening under one controlled process: domestic solid-phase manufacturing, preparative HPLC purification, lyophilization under validated cycle parameters, and third-party confirmation of purity and endotoxin. Ipamorelin and CJC-1295 sold by PX1 Research is produced and released on that pathway and is supplied strictly for laboratory research use — not for human or veterinary use.
A well-formed secretagogue experiment is factorial: vehicle, GHRH analog alone, ghrelin-mimetic alone, and the combination. Anything less cannot distinguish additivity from synergy, and synergy is the specific claim most often made about this pairing. Because the two receptor inputs differ in their kinetics, the sampling schedule must be dense enough to capture both the amplitude and the frequency components of the response.
Selectivity controls belong in the design when ipamorelin is chosen for its clean profile. Measuring cortisol and prolactin alongside growth hormone confirms in the specific model that the selectivity reported in the original characterization holds, and it provides the contrast that justifies using ipamorelin rather than GHRP-2 or GHRP-6.
The DAC question must be settled before the study starts, not after. CJC-1295 with DAC produces sustained exposure measured in days, while the non-DAC form is short-acting; a sampling schedule appropriate for one is wrong for the other, and a methods section that says only "CJC-1295" leaves the result uninterpretable. State the form, the lot and the confirmed mass.
Downstream, IGF-1 serves as the integrated readout that smooths pulsatile growth hormone data, but it lags the stimulus and saturates, so it complements rather than replaces direct sampling. Designs reporting both give a much clearer picture of whether an intervention changed pulse structure or only total output.
For in vitro work, somatotroph models should be characterized for both GHRH-receptor and GHS-R1a expression before use, since the synergy under investigation requires both receptors to be present at functional density. Verifying expression in the specific line prevents a null combination result that reflects receptor absence rather than pharmacology.
What makes ipamorelin "selective"? Earlier growth hormone-releasing peptides such as GHRP-2 and GHRP-6 stimulate the secretagogue receptor but were also reported to raise cortisol and prolactin, confounding any experiment attempting to isolate the somatotropic axis. The original ipamorelin characterization reported minimal effect on both, which made it the preferred tool compound for clean axis studies and remains the reason it is chosen over the older GHRPs.
What is the difference between CJC-1295 with and without DAC? With DAC, the molecule carries a maleimidopropionic acid drug-affinity complex that binds covalently to serum albumin, creating a long-lived circulating reservoir. Without DAC — commonly labeled modified GRF 1-29 — the sequence keeps four stabilizing substitutions but has no albumin anchor and a much shorter duration. They are different test articles, differ by roughly 279 Da, and mislabeling between them is one of the most common quality failures in this category.
Why combine a GHRH analog with a ghrelin-mimetic? They act at two independent receptors on the same cell, and co-stimulation in preclinical models produces a response greater than either alone. The GHRH side raises pulse amplitude while the ghrelin side affects pulse frequency and somatostatin tone, so the combination is a mechanistic design choice rather than simply a larger stimulus.
Should the blend or the singles be purchased? For a study isolating each receptor's contribution, the singles are required and the blend serves as the combination arm — most rigorous designs use all three. For method development or as a reference standard, the singles are the more useful stock because their impurity profiles can be characterized independently.
What should the certificate show for a co-lyophilized blend? Both intact masses confirmed by mass spectrometry, both peptides resolved on a single HPLC run with their individual impurity profiles integrated, and the ratio between the two analytes reported. Endotoxin, residual solvents and water content apply to the finished blend as filled, not to the components before blending.
Ipamorelin and CJC-1295 are stocked individually and as the co-lyophilized blend, which is the configuration most often requested for co-stimulation designs. A factorial study needs all three listings — the two singles and the blend — plus vehicle, so laboratories working in this area typically order the set together.
On the GHRH side the catalog comparators are Tesamorelin, the hexenoyl-stabilized GHRH(1-44) analog, and Sermorelin, the unmodified 1-29 fragment. On the ghrelin side they are GHRP-2 and GHRP-6, the earlier and less selective secretagogues against which ipamorelin's selectivity is defined.
IGF-1 LR3 completes the group as the direct-acting comparator that bypasses the pituitary. Every listing in the group is released against the same specification with a lot-matched certificate, and for the blend the certificate resolves both peptides in a single chromatographic run.
All products are sold strictly for laboratory and research use only. Not for human or veterinary use, diagnosis, treatment or consumption. Statements have not been evaluated by the FDA.
High Quality — 99% Purity Guaranteed
We are continuously conducting HPLC testing on all of our raw powders as well as our finished products to ensure the quality of what we ship. You can have the product you bought from us independently tested at any HPLC-licensed testing facility — and if the results come back negative, we will refund the following:
HPLC Test Fee
$100
Plus a full refund
Total order amount + shipping
CJC-1295 (No DAC), Ipamorelin 10mg (Blend)
$90.00