Articles
GHK-Cu and Epitalon for Skin Fibrosis After GLP-1 Weight Loss
GHK-Cu and Epitalon target different mechanisms in skin fibrosis after GLP-1 weight loss. Copper peptide signaling and telomerase activation may
Epitalon and Cortagen for Circadian Longevity
Epitalon and Cortagen target pineal melatonin and HPA cortisol output. GHK-Cu supports the structural network. Evidence is preliminary but
Epitalon and Circadian Rhythm Rejuvenation After DST
Daylight saving time (DST) shifts the clock by one hour, yet the pineal gland does not reset on command. Melatonin secretion follows...
Can GHK-Cu Counteract Skin Laxity from Rapid GLP-1 Weight Loss?
GHK-Cu directly boosts collagen and elastin density, while Epitalon targets fibroblast senescence. For post-GLP-1 skin laxity, evidence favors GHK-Cu for
GHK-Cu and Epitalon: Skin Collagen Density and Fibroblast Senescence in 2024
Skin aging research has moved toward measurable histological endpoints, and two peptide families keep appearing in that literature. GHK-Cu (a
GHK-Cu and Vesugen: Vascular Rejuvenation via Endothelial Aging
Vascular aging sits at the center of most age-related decline. The endothelium, a single layer of cells lining every blood vessel, loses...
Epitalon and Thymalin Stack: Telomere Protection vs. Immune Aging
The rapid weight loss achieved with GLP-1 receptor agonists brings an underdiscussed side effect: a measurable decline in dermal collagen. This collagen
GHK-Cu and Cortagen: New DNAm PhenoAge Data on Epigenetic Reversal
The search for interventions that might slow, or even partially reverse, biological aging has turned toward the epigenome. DNA methylation (DNAm) clocks
GHK-Cu and Thymalin Synergy: Skin Remodeling Meets Immune Senescence
Two peptide families from the Russian bioregulator tradition, the copper-binding tripeptide GHK-Cu and the thymic extract Thymalin, operate on seemingly