GHK-Cu + MOTS-c Frequently investigated in: Metabolic-regulation research Cellular-energy and mitochondrial-signaling pathways Recovery-focused metabolic pathways Physiological-resilience research Healthy-aging investigations Research commonly explores how mitochondrial-support pathways may interact with regenerative and tissue-maintenance signaling mechanisms
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Currency Considered for the Study 1.6
Angiogenesis and Vascular Formation Research has examined these peptides' effects on new blood vessel formation in various tissue models
Southon A, Szostak K, Acevedo KM, Dent KA, Volitakis I, Belaidi AA et al (2020) CuII (atsm) inhibits ferroptosis: implications for treatment of neurodegenerative disease
Key publications: 'Stimulation of collagen synthesis in fibroblast cultures by GHK-Cu' (1988, FEBS Letters), 'In vivo stimulation of connective tissue accumulation by GHK-Cu' (1993), 'GHK-Cu stimulates matrix metalloproteinase-2 expression' (2000)