Ipamorelin/CJC-1295 (no DAC) 5MG/5MG

$60.00

In stock

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Description

Ipamorelin + CJC 1295 (No DAC)

Ipamorelin and CJC 1295 (No DAC) are frequently studied together in research settings due to their complementary activity within growth hormone signaling pathways. Ipamorelin is commonly investigated as a selective ghrelin receptor agonist that may stimulate growth hormone release, while CJC 1295 (No DAC) is studied as a growth hormone releasing hormone analog that may support pulsatile GH secretion. When evaluated together, researchers often explore this pairing for potential effects related to recovery physiology, body composition signaling, and cellular repair mechanisms.

Product Details

Concentration: 5 mg Ipamorelin + 5 mg CJC 1295 (No DAC) per vial
Purity: 99 percent or greater (COA verified)
Manufacturing: USA, GMP compliant facility
Format: Lyophilized powder intended for laboratory reconstitution
Use: Research use only

Product Care and Storage

Store refrigerated at 36°F to 46°F (2°C to 8°C).
Keep in the original container and protect from light.
Avoid repeated temperature fluctuations and unnecessary handling.
After reconstitution, store according to your laboratory SOP and any applicable lot documentation.

Documentation and Verification

Moon Peptides supports lot traceability and independent verification. Certificates of Analysis are available for specific lots upon request so researchers can document identity and reported purity for their records.

Product Note

This product is intended strictly for research use only. Not for human consumption. Not for clinical, diagnostic, therapeutic, or veterinary use. Not for unsupervised or recreational use.

The Science

In research contexts, ipamorelin is studied as a selective growth hormone secretagogue that interacts with ghrelin associated receptor pathways, with investigations often noting GH release dynamics while evaluating off target signaling such as appetite or stress hormone related pathways. CJC 1295 (No DAC) is studied as a GHRH analog designed to support endogenous GH pulse signaling. Together, this combination is commonly investigated for downstream markers associated with lean mass signaling, fat metabolism pathways, recovery and repair physiology, and age related endocrine research in controlled experimental models.

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