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CJC-1295

Product Specifications

  • Synthetic GHRH analog for laboratory study
  • ≥99% purity – verified by third-party testing
  • Stable lyophilized format for research applications
  • Investigated in GH/IGF-1 signaling models
  • For lab use only – not for human or veterinary use

CJC-1295 is a synthetic analogue of growth hormone-releasing hormone (GHRH) studied for its potential role in sustained somatotropic stimulation, GH pulse amplification, and downstream IGF-1 axis modulation. Supplied in a 5mg lyophilized vial for laboratory research only.

Requires reconstitution with bacteriostatic water (Sold Here)

$65.00

SKU LIFE05MGCJC129 Category Tag Brand:

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About this Peptide

Information About CJC-1295

CJC-1295 is a synthetic research peptide developed to mimic the effects of Growth Hormone Releasing Hormone (GHRH)—a naturally occurring hormone involved in regulating the body’s production of growth hormone. While not approved for clinical use, CJC-1295 has become a central point of investigation in lab-based models focused on endocrine signaling and cellular regeneration.

At Lifestyle Peptides, we provide high-purity, research-grade CJC-1295 for professionals committed to expanding the boundaries of growth hormone science. With its enhanced molecular stability and extended half-life, CJC-1295 is an ideal compound for studying hormonal feedback loops, GH pulsatility, and IGF-1 response mechanisms in non-human systems.

Whether you’re mapping the complexities of the hypothalamic-pituitary axis or examining how GHRH analogs interact with secretagogues like GHRP-6 or Ipamorelin, CJC-1295 offers a powerful tool to support your research.

Why Researchers Choose CJC-1295

  • Investigated for GH-release stimulation in preclinical models
  • Designed for extended half-life and receptor binding stability
  • Commonly studied alongside GH secretagogues to analyze synergy
  • Used in rodent and in vitro studies focused on endocrine feedback and IGF-1 signaling
  • Researched for applications in performance, aging, and metabolic function modeling

Please note: CJC-1295 is not approved for human or veterinary use. It is provided strictly for laboratory research purposes and must not be consumed, injected, or applied in any way.

Research Use Only Disclaimer

Lifestyle Peptides sells CJC-1295 for research use only. This compound is not intended to treat, diagnose, cure, or prevent any disease, and should not be used in or on humans or animals. We do not provide medical advice, usage instructions, or product application support beyond its intended laboratory use.

Product specifications

Name

CJC-1295

Concentration

5mg per vial

Form

Lyophilized powder

Purity

≥99%, confirmed by HPLC and MS

Packaging

Sterile, sealed vial

Storage

-20°C in a dark, dry environment

Documentation

Certificate of Analysis (COA) available upon request

FAQs

Frequently Asked Questions

CJC-1295 is a synthetic peptide that acts as a Growth Hormone-Releasing Hormone (GHRH) analog. In preclinical models, it is studied for its potential to influence growth hormone (GH) secretion and related signaling pathways. It’s often explored in research involving IGF-1 production, metabolic function, and endocrine regulation.

CJC-1295 is similar in function to Sermorelin but includes modifications that extend its half-life, making it more stable and long-lasting in laboratory testing environments. It is frequently studied alongside peptides like Ipamorelin for synergistic modeling of growth hormone stimulation in non-human settings.

CJC-1295 is supplied as a lyophilized (freeze-dried) powder and should be stored at -20°C in a dry, dark environment. Once reconstituted by trained lab personnel, storage guidelines may vary depending on the protocol. Avoid repeated freeze-thaw cycles.

No prescription is required to purchase CJC-1295 from Lifestyle Peptides because it is not intended for therapeutic use. It is not a drug or supplement, and is sold exclusively for research use only, in accordance with applicable laws and regulations.

CJC-1295 is commonly used in endocrinological and metabolic research. In laboratory settings, it has been studied for its ability to influence growth hormone release patterns, IGF-1 signaling, and pituitary gland response. These studies are typically conducted in non-human models or in vitro environments to better understand peptide-receptor interactions and hormone regulation mechanisms.

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