CJC-1295 (DAC)

$60.00

Availability: In stock

Range Discount
2 - 3 3%
4 - 5 7%
6 - 9 10%
10 - 19 20%
20 - 29 25%
30 - 49 30%
50 + 35%
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CJC-1295 (Drug Affinity Complex) 5mg

Research Overview

CJC-1295 (Drug Affinity Complex) is a synthetic growth hormone-releasing hormone (GHRH) analogue studied in research models involving growth hormone axis regulation, pituitary physiology, endocrine signaling, peptide receptor biology, and neuroendocrine communication.

Engineered with a Drug Affinity Complex (DAC), CJC-1295 is designed to extend systemic exposure through reversible albumin binding, making it an important research peptide for investigating prolonged GHRH receptor activation and sustained endocrine signaling. Its pharmacokinetic profile has established it as a valuable tool for studying long-duration modulation of the growth hormone axis.

Lyophilized Vial Format

Precision-manufactured and lyophilized for stability, this research-grade peptide is produced to support reproducible laboratory workflows requiring accurate preparation, controlled storage, and consistent experimental performance.

Why Researchers Study CJC-1295 (With DAC)

CJC-1295 (With DAC) is investigated for its selective interaction with growth hormone-releasing hormone receptors within the anterior pituitary. The addition of the Drug Affinity Complex enables researchers to examine the biological effects of prolonged GHRH receptor stimulation compared to shorter-acting analogues, providing insight into sustained endocrine signaling and hormone regulation.

Its extended pharmacokinetic profile has made CJC-1295 (With DAC) a valuable research peptide for exploring pituitary physiology, peptide receptor biology, growth hormone axis function, and the molecular mechanisms that coordinate long-term endocrine communication.

Research Applications

Researchers commonly utilize CJC-1295 (With DAC) in laboratory investigations involving:

  • Growth hormone-releasing hormone (GHRH) signaling
  • Growth hormone axis regulation
  • Pituitary physiology
  • Prolonged endocrine signaling
  • Peptide receptor biology
  • Neuroendocrine communication
  • Hormonal feedback mechanisms
  • Growth hormone physiology
  • Metabolic endocrinology
  • Experimental endocrine models
For laboratory research use only. Not for human consumption or clinical application.
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