Redox biology
Research into electron-transfer reactions and cellular energy metabolism.
NAD+ is an essential cellular coenzyme involved in redox chemistry and energy metabolism. As a substrate for sirtuins, PARPs and CD38, it is researched in mitochondrial regulation, DNA-damage signalling, stress responses and metabolic communication.
Current work examines NAD+ availability and NAD-dependent pathways as mechanistic and translational research questions, not established clinical benefits.
Explore NAD+ researchResearch context only; not a therapeutic claim.GHK-Cu is a copper-binding tripeptide studied in gene-expression, extracellular-matrix, collagen- and elastin-related pathways, cellular migration, copper homeostasis and oxidative-stress responses.
Research also examines skin and tissue-repair mechanisms. Evidence remains primarily laboratory, preclinical or cosmetic and does not establish a therapeutic benefit.
Explore GHK-Cu researchResearch context only; not a therapeutic claim.NAD+ research collection
Explore NAD+ materials for laboratory and in-vitro research, with transparent product information and batch-led quality standards.
Research context
NAD+ is studied across redox chemistry, mitochondrial function, metabolism and cellular stress responses. This collection brings together formats intended for qualified research use.
Areas of study
Research into electron-transfer reactions and cellular energy metabolism.
Studies examining NAD+-dependent processes in mitochondrial regulation and signalling.
Work involving sirtuins, PARPs, CD38 and related response pathways.
Available formats
The Revitalise standard
Every product page is designed to make format, batch documentation and storage information straightforward to review before ordering.
For lawful laboratory and in-vitro research only. Not supplied as a medicine, cosmetic, food, or product for human use.