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  • CJC-1295 No Dac (Mod GRF 1-29) Sublingual Tablets

CJC-1295 No Dac (Mod GRF 1-29) Sublingual Tablets

$63.71 $117.23
Description Mod grf 1-29/CJC-1295 No Dac CAS Number 86168-78-7 Molar Mass 3357.93 g·mol−1 Chemical Formula C149H246N44O42S IUPAC Name L-Tyrosyl-L-alanyl-L-α-aspartyl-L-alanyl-L-isoleucyl-L-phenylalanyl-L-threonyl-L-asparaginyl-L-seryl-L-tyrosyl-L-arginyl-L-lysyl-L-valyl-L-leucylglycyl-L-glutaminyl-L-leucyl-L-seryl-L-alanyl-L-arginyl-L-lysyl-L-leucyl-L-leucyl-L-glutaminyl-L-α-aspartyl-L-isoleucyl-L-methionyl-L-seryl-L-argininamide Brief Introduction CJC-1295 NO DAC is a research peptide designed for laboratory use only. It is important to emphasize that this product is strictly intended for research purposes and cannot be associated with human consumption. Key Characteristics CJC-1295 NO DAC is a synthetic peptide derived from growth hormone-releasing hormone (GHRH). Its distinctive feature lies in its lack of Drug Affinity Complex (DAC), allowing for a longer half-life and potentially enhanced bioavailability. Research Applications This research peptide is commonly utilized in laboratory settings to explore its impact on growth hormone release and its potential applications in various physiological processes. Research Benefits Growth Hormone Secretion Modulation CJC-1295 NO DAC has been investigated for its ability to modulate growth hormone secretion, presenting potential implications for understanding and researching growth-related processes. Metabolic Effects Research studies have explored the metabolic effects of CJC-1295 NO DAC, indicating its potential influence on composition and metabolism. This could provide valuable insights into metabolic pathways. Enhanced Potential for Muscle Growth and Repair Studies suggest that CJC-1295 NO DAC may play a role in promoting muscle growth and repair mechanisms, offering researchers an avenue for investigating its impact on musculoskeletal physiology. Summary In summary, CJC-1295 NO DAC is a research peptide designed to explore its influence on growth hormone secretion, metabolic processes, and muscle-related mechanisms. This product is exclusively for research purposes and is not intended for human consumption. Disclaimer This content is presented exclusively for educational purposes and should not be construed as medical advice. THE MATERIALS REFERENCED HEREIN ARE EXCLUSIVELY INTENDED FOR LABORATORY AND RESEARCH USE. Any clinical research initiatives must be conducted under the guidance of the relevant Institutional Review Board (IRB). Similarly, preclinical research involving animals must comply with the directives of the Institutional Animal Care and Use Committee (IACUC), adhering to the standards delineated by the Animal Welfare Act (AWA). Our informational content is meticulously designed for research-oriented insights and is not a substitute for individual analysis and verification from credible sources before any purchasing decisions are made. Upon the finalization of your order and payment, you explicitly acknowledge and agree to adhere to our Terms and Conditions. Customer contentment stands as our paramount concern. Should you find any dissatisfaction with the product received, kindly contact us at 419-707-5450 or email our support team at [email protected]. IMPORTANT NOTICE: All products showcased on our platform are EXCLUSIVELY INTENDED FOR LABORATORY AND RESEARCH APPLICATIONS. They are expressly not intended for veterinary or human utilization. References Teichman SL, Neale A, Lawrence B, Gagnon C, Castaigne JP, Frohman LA. Prolonged stimulation of growth hormone (GH) and insulin-like growth factor I secretion by CJC-1295, a long-acting analog of GH-releasing hormone, in healthy adults. J Clin Endocrinol Metab. 2006 Mar;91(3):799-805. doi: 10.1210/jc.2005-1536. Epub 2005 Dec 13. PMID: 16352683. [Read More]. Powers SK, Jackson MJ. Exercise-induced oxidative stress: cellular mechanisms and impact on muscle force production. Physiol Rev. 2008 Oct;88(4):1243-76. doi: 10.1152/physrev.00031.2007. PMID: 18923182; PMCID: PMC2909187. [Read More].
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