CJC 1295 NO DAC 5mg
€84.99
Research Grade CJC-1295 No DAC (Modified GRF 1-29) – 5mg
This high-purity synthetic GHRH analog is designed for precise endocrine research. CJC-1295 No DAC lacks the Drug Affinity Complex, allowing researchers to study pulsatile growth hormone release patterns in pituitary cell cultures without sustained elevation.
Primary Research Applications:
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Pituitary Somatotroph Function & GH Secretion Studies
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GHRH Receptor Signaling & cAMP Pathway Analysis
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Comparative Research with DAC-Containing Analogs
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Pulsatile GH Release & Metabolic Modeling
Intended for laboratory use only by qualified researchers. This product is strictly not for human or veterinary consumption.
Sequence: Tetra-substituted GRF 1-29
Purity: ≥98% (HPLC Verified)
Form: 5mg lyophilized powder
Storage: Store at -20°C or below, desiccated and protected from light.
A Precise Tool for Pulsatile GH Research
Researchers utilize CJC-1295 No DAC, also known as Modified GRF 1-29, to investigate the intricate dynamics of the hypothalamic-pituitary axis. This synthetic analog of Growth Hormone-Releasing Hormone (GHRH) is specifically engineered for enhanced stability and receptor binding. Specifically, it lacks the Drug Affinity Complex (DAC) moiety, which allows for the study of natural, pulsatile growth hormone (GH) release patterns. Consequently, scientists can explore physiological-like secretory bursts without the sustained elevation associated with long-acting versions.
Mechanisms of GHRH Receptor Agonism
The primary research value of this peptide lies in its potent agonism of the GHRH receptor located on pituitary somatotroph cells. Upon binding to these receptors, the compound initiates a signaling cascade involving cyclic AMP (cAMP) and protein kinase A (PKA). Moreover, this process triggers the synthesis and secretion of growth hormone from cellular storage vesicles. Therefore, the peptide serves as a critical instrument for measuring intracellular signaling and gene expression within immortalized somatotroph cell lines.
Enhanced Stability Through Structural Modification
This tetra-substituted analog incorporates specific amino acid modifications to resist enzymatic degradation by dipeptidyl peptidase-4 (DPP-4). Notably, substituting the first two amino acids with D-Ala significantly extends the peptide’s half-life compared to native GHRH (1-29). Similarly, these modifications ensure that the compound remains active long enough for thorough in-vitro analysis. Thus, researchers achieve more reliable and reproducible data during dose-response and time-course studies in laboratory settings.
Comparative Metabolic and Synergistic Studies
In addition, CJC-1295 No DAC is a vital comparator for studying the metabolic effects of discrete GH pulses versus continuous exposure. Researchers often combine this GHRH analog with ghrelin agonists, such as Ipamorelin or GHRP-2, to investigate synergistic secretory responses. Specifically, these experiments help dissect the balance of the growth hormone axis when influenced by opposing signals like somatostatin. Consequently, the compound provides essential insights into hepatocyte IGF-1 production and adipocyte lipolytic activity.
EliteBiogenix Quality and Technical Specifications
Finally, every vial of CJC-1295 No DAC from EliteBiogenix undergoes rigorous HPLC verification to ensure a purity level of $\ge$ 98%. This high standard ensures that experimental results are directly attributable to the peptide sequence rather than chemical impurities.
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Sequence: Tyr-D-Ala-Asp-Ala-Ile-Phe-Thr-Gln-Ser-Tyr-Arg-Lys-Val-Leu-Ala-Gln-Leu-Ser-Ala-Arg-Lys-Leu-Leu-Gln-Asp-Ile-Leu-Ser-Arg-NH₂
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Purity: $\ge$ 98% (HPLC Verified).
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Storage: Store at -20°C or below; protect from light and desiccate.
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Solubility: Soluble in sterile water or bacteriostatic water for precise volumetric dosing.
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Compliance: Strictly for in-vitro laboratory research; not for human or veterinary use.
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Thymosin Alpha-1 Research Peptide (99% Purity)
This premium synthetic 28-amino acid peptide is designed for advanced immunological and anti-aging research. Since this compound is highly pure ($\ge$99%), it remains a critical tool for studying complex biological pathways.
Essential Research Applications
Researchers primarily use this immunomodulatory compound to investigate various cellular processes. Specifically, it is essential for studying:
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T-cell Dynamics: Analyzing maturation, differentiation, and overall function.
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Immunosenescence: Investigating age-related immune decline.
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Inflammatory Pathways: Evaluating cytokine regulation and anti-inflammatory responses.
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Oncological Models: Testing adjunct therapies within specialized cancer research.
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Infection Response: Modulating responses in sepsis and viral infection models.
Ideal Study Environments
This peptide is perfectly suited for several specific research applications. For instance, it is often utilized in:
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Immunodeficiency and reconstitution studies.
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Anti-aging and "inflammaging" research projects.
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Innovative cancer immunotherapy combinations.
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Vaccine adjuvant response protocols.
Important Technical Specifications
Note on Reconstitution: This peptide is highly acidic. Consequently, it requires .1-1% Acetic Acid for proper reconstitution.
Please be aware that cloudiness or clumping may occur because the molecules are "intrinsically disordered." Furthermore, this physical characteristic is a natural property of the molecule.

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