Buy CJC 1295 DAC 12.5mg Online USA | Research-Grade Long-Acting GHRH Analog
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Premium CJC-1295 DAC for Advanced Scientific Research
CJC-1295 DAC is a synthetic growth hormone-releasing hormone (GHRH) analog widely studied in peptide science and endocrine research. It is designed as a modified form of GHRH that exhibits extended biological activity due to its ability to bind serum albumin through the Drug Affinity Complex (DAC) modification.
In laboratory research, CJC-1295 DAC is commonly investigated for its role in growth hormone signaling, IGF-1 regulation pathways, receptor activation dynamics, and long-duration peptide activity models.
Because of its extended half-life and sustained signaling characteristics, CJC-1295 DAC is frequently used in studies comparing pulsatile versus continuous endocrine stimulation models in controlled research environments.
Our CJC-1295 DAC 12.5mg is manufactured according to strict research-grade standards and is supplied exclusively for laboratory, scientific, and educational research purposes.
What Is CJC-1295 DAC?
CJC-1295 DAC is a synthetic analog of growth hormone-releasing hormone (GHRH) composed of a modified 29-amino-acid peptide structure. The addition of the Drug Affinity Complex (DAC) enables the peptide to bind to albumin, significantly extending its circulation time in research models.
In scientific literature, this compound is often studied for its ability to produce sustained activation of the growth hormone axis, making it distinct from its shorter-acting counterpart, CJC-1295 No DAC.
Researchers typically examine CJC-1295 DAC in experimental systems focused on endocrine signaling, hormone regulation pathways, and peptide-receptor interactions.
CJC-1295 DAC vs CJC-1295 No DAC (Research Context)
Within peptide science, the DAC and No DAC versions are studied for different biological behavior profiles:
- CJC-1295 DAC → long-acting, sustained signaling models
- CJC-1295 No DAC → shorter, pulsatile signaling models
This distinction makes CJC-1295 DAC particularly valuable in research models focused on prolonged hormonal stimulation and extended receptor engagement studies.
Researchers often compare both forms to better understand how duration of peptide exposure influences endocrine system responses.
Research Applications of CJC-1295 DAC
Endocrine Signaling Research
CJC-1295 DAC is widely studied in models examining growth hormone signaling pathways and downstream IGF-1 activity.
Growth Hormone Axis Studies
Researchers investigate how long-acting GHRH analogs influence hormonal regulation within controlled laboratory environments.
Molecular Biology Research
Used in studies focused on receptor activation, cellular communication, and peptide-mediated signaling pathways.
Pharmacokinetic Modeling
Its extended half-life makes it useful for studying sustained peptide activity and time-dependent biological responses.
Peptide Interaction Studies
Researchers evaluate how prolonged receptor stimulation affects downstream biological signaling networks.
Why Researchers Choose CJC-1295 DAC
Scientists select CJC-1295 DAC for its unique long-acting profile and research versatility.
Key reasons include:
- Extended half-life compared to non-DAC variants
- Valuable for sustained signaling studies
- Relevant in endocrine research models
- Useful in pharmacokinetic comparisons
- High interest in peptide science literature
- Research-grade manufacturing consistency
Its distinct biological profile makes it an important compound for advanced peptide research.
Product Specifications
| Specification | Details |
| Product Name | CJC-1295 DAC |
| Content | 12.5mg |
| Category | Research Peptide |
| Type | Long-Acting GHRH Analog |
| Modification | Drug Affinity Complex (DAC) |
| Appearance | Lyophilized Powder |
| Purity | ≥99% |
| Storage Temperature | 2°C–8°C |
| Intended Use | Laboratory Research Only |
Quality Assurance and Research Standards
Every batch of CJC-1295 DAC is produced under strict quality-control protocols designed to ensure purity, identity verification, and batch consistency.
Researchers depend on high-quality peptide materials to maintain reproducibility in experimental studies. Reliable sourcing and manufacturing standards are essential for endocrine and molecular biology research applications.
Our commitment to quality supports academic laboratories, biotechnology research, and independent scientific institutions worldwide.






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