Research & Insights

Research, guides, and insights on peptide science.

Can NAD+ Infusions Reverse Immunosenescence?

NAD+ infusions may influence thymic involution and T-cell exhaustion, but human evidence is absent. Animal studies show partial effects, while peptide

Can NAD+ Infusions Delay Epigenetic Aging? DNA Methylation Clocks in the GLP-1 Era

NAD+ infusions may influence DNA methylation clocks, but human evidence is thin. We review animal data, GHK-Cu interactions, and GLP-1 era

GHK-Cu and NAD+ Stack for Senescent Cell Clearance: Can Copper Peptide Amplify NAD+'s Anti-Aging Effects on Cellular Senescence and SASP Reduction?

GHK-Cu and NAD+ may act as senomorphics, reducing SASP without killing senescent cells. This article reviews the mechanistic overlap and open

NAD+ and MOTS-c: Can the Mitochondrial Peptide Amplify NAD+’s Anti-Aging Effects on Vascular Endothelial Function?

Exploring whether the mitochondrial peptide MOTS-c can amplify NAD+'s anti-aging effects on vascular endothelial function, based on recent research into

GHK-Cu and MOTS-c Stack for Mitochondrial Rejuvenation: Can Copper Peptide Amplify MOTS-c’s Anti-Aging Effects on Cellular Energy?

Exploring whether GHK-Cu and MOTS-c stack can synergize for mitochondrial rejuvenation. We review evidence on metabolic regulation, copper

GHK-Cu and NAD+ for Circadian Rejuvenation: Can Copper Peptide Amplify NAD+'s Anti-Aging Effects on Sleep-Wake Cycles?

GHK-Cu and NAD+ may synergize on circadian rejuvenation by targeting SIRT1, copper homeostasis, and inflammation. This article reviews preclinical

NAD+ and Cortagen Stack: Can Brain Peptide Enhance NAD+’s Anti-Aging Effects on Cognitive Longevity?

NAD+ precursors and Cortagen, a brain-targeted tetrapeptide, are studied for cognitive longevity. Research suggests Cortagen may upregulate NAD+

NAD+ and Epitalon Stack: Synergizing Cellular Energy with Pineal Peptide

Exploring the research behind NAD+ and Epitalon for telomere support: how cellular energy and pineal peptide pathways might intersect, with cautious

GHK-Cu and Epigenetic Rejuvenation: Can Copper Peptide Modulate Age-Related DNA Methylation?

GHK-Cu, a copper peptide declining with age, may influence DNA methylation patterns. Recent studies hint at epigenetic rejuvenation potential, but