Research Grade
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Mechanisms
How each peptide class interacts with biological systems at the molecular level.
Upregulates VEGF expression and NO synthesis, accelerating angiogenesis. Modulates dopamine and serotonin systems. Demonstrates cytoprotective effects across gastric, tendon, muscle, and neural tissue in preclinical models.
The active fragment Ac-SDKP binds G-actin, reducing polymerization. This promotes cell migration, proliferation, and differentiation — critical for wound healing and tissue regeneration research.
Copper peptide complex activates decorin, upregulates collagen I & III, elastin, and fibronectin. Downregulates TGF-beta1 in fibrotic tissue models. Exhibits strong antioxidant activity.
CJC-1295 extends GHRH half-life via DAC technology (albumin binding). Ipamorelin selectively stimulates pituitary GH release via ghrelin receptor without elevating cortisol or prolactin.
Binds GLP-1 receptors in pancreatic beta-cells, hypothalamus, and GI tract. Enhances insulin secretion, suppresses glucagon, slows gastric emptying, and reduces appetite signaling in CNS models.
Tetrapeptide Ala-Glu-Asp-Gly activates telomerase in somatic cells, elongating telomere length in vitro. Research suggests anti-aging potential via epigenetic modulation of the pineal gland.