Ipamorelin 10mg is a selective Growth Hormone Secretagogue (GHS) used in research settings to study growth hormone release, metabolic regulation, and cellular recovery pathways. Supplied as a sterile lyophilized powder for laboratory use only.
Ipamorelin 10mg is a selective Growth Hormone Secretagogue (GHS) used in research settings to study growth hormone release, metabolic regulation, and cellular recovery pathways. Supplied as a sterile lyophilized powder for laboratory use only.
546,00 د.إ
Ipamorelin 10mg is a research-grade pentapeptide known for its highly selective activation of the Growth Hormone Secretagogue Receptor (GHSR). Unlike older GHRP compounds, Ipamorelin is recognized for its clean receptor selectivity, meaning it stimulates growth hormone (GH) release without significantly influencing cortisol, prolactin, or ACTH levels.
This selectivity makes Ipamorelin a preferred peptide in experimental studies focused on growth hormone physiology, metabolism, and cellular recovery. It is provided as a 10mg lyophilized sterile powder, ensuring maximum stability, purity, and consistency for laboratory environments.
Researchers commonly utilize Ipamorelin in studies exploring:
Growth hormone secretion mechanisms
IGF-1 pathway and anabolic signaling
Muscle tissue recovery and protein synthesis
Cellular repair and regeneration models
Metabolic rate and fat utilization pathways
Circadian rhythm influence on GH pulses
Its ability to mimic natural GH release patterns without broad endocrine disruption makes it a valuable tool in GH-related scientific research.
Name: Ipamorelin
Strength: 10mg per vial
Form: Lyophilized sterile peptide powder
Purity: ≥ 98% (HPLC verified)
Sequence: A pentapeptide GHRP analogue
Storage:
Lyophilized: –20°C, protected from light
After reconstitution: refrigerate under sterile conditions
Use: For laboratory and scientific research use only
At Dynasty Clinic, peptide information such as Ipamorelin is shared solely for educational and scientific purposes. The clinic supports advanced regenerative research concepts while ensuring all peptide descriptions remain compliant, accurate, and strictly non-medical.