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Product image is a representation โ actual packaging and label may vary.
Nasal Sprays ยท 7ml
๐ Pre-order โ ships from 31 August 2026
This product is pre-order only right now. Your order will be dispatched once stock arrives on 31 August 2026.
$143
AUD ยท 1 pack
Flat rate ยท ships with your order
NAD+ Nasal Spray (7ml) delivers nicotinamide adenine dinucleotide directly via nasal mucosa for rapid systemic availability. Studied for cellular energy metabolism, DNA repair support, sirtuin activation, and anti-aging research pathways. Pre-mixed, metered-dose pump.
Chemical Properties
Research Use Only โ Disclaimer
These consumable supplies are intended solely for use in research and laboratory settings. All items are sterile and individually packaged for professional handling. BAC water is for peptide reconstitution purposes only and is not intended for injection without appropriate professional supervision. Not for human or animal consumption in any form.
NAD+
Nicotinamide Adenine Dinucleotide
Nicotinamide adenine dinucleotide (NAD+) is a coenzyme found in every living cell, essential for over 500 enzymatic reactions. It exists in oxidised (NAD+) and reduced (NADH) forms. Cellular NAD+ levels decline by approximately 50% between age 40 and 70 across multiple tissues โ a reduction proposed as a contributing factor to age-associated metabolic decline, mitochondrial dysfunction, and reduced DNA repair capacity.
NAD+ serves dual biochemical roles. As a hydride-transfer agent it accepts electrons in glycolysis, beta-oxidation, and the TCA cycle, then donates them to the mitochondrial electron transport chain for ATP synthesis. As a signalling substrate it fuels three distinct enzyme families: sirtuins (SIRT1โ7), NAD+-dependent deacylases that regulate gene expression, mitochondrial biogenesis, and metabolism; PARP enzymes (PARP1/2/3), which consume NAD+ in single-strand DNA break repair; and CD38/CD157 NAD+ases, which generate cyclic ADP-ribose for calcium signalling. Replenishing NAD+ therefore supports metabolic flexibility, genome integrity, and cellular stress responses simultaneously.
Intravenous NAD+ has been studied in addiction recovery (alcohol and opioid dependence), neurodegenerative disease, chronic fatigue, and anti-ageing protocols. Animal studies using NAD+ precursors (NMN, NR) demonstrate restoration of mitochondrial function, improved muscle endurance, and cognitive benefits in aged subjects. Human NAD+ infusion studies have documented rapid increases in blood and tissue NAD+ levels, with subjective improvement in energy, focus, and sleep in some populations.
Key References
For research reference only. All information pertains to preclinical or published human trial data. Not intended as medical advice. This product is for research use only.