For Research Use Only — Not for Human Consumption

NAD+ Nasal Spray

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Intranasal nicotinamide adenine dinucleotide (NAD+) is an essential coenzyme formulated for mucosal delivery in laboratory research. It is utilized to study rapid absorption pathways, blood-brain barrier permeability, and localized cellular energy metabolism without hepatic first-pass metabolism.

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Certificate of Analysis (CoA)

Batch #23NADS-1025 | HPLC & MS Analysis Verified

Purity Score
0 %
Impurity Profile
< 0 %
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product description

Nicotinamide adenine dinucleotide (NAD+) delivered via the intranasal route is a subject of growing interest in neurochemical and metabolic research. This delivery mechanism is studied primarily for its potential to bypass traditional digestive degradation, allowing researchers to evaluate direct central nervous system (CNS) availability and mucosal absorption rates.

Current laboratory applications focus on its role in mitochondrial homeostasis, neuroprotection, and cellular repair within concentrated tissue environments. By utilizing an intranasal application protocol in animal models or isolated tissue studies, researchers can observe how NAD+ interacts with poly(ADP-ribose) polymerases (PARPs) and sirtuins (SIRTs) when administered directly to mucosal membranes, providing distinct pharmacokinetic data compared to subcutaneous or intravenous applications.

Molecular Profile
Molecular Formula
C21H27N7O14P2
Molecular Weight
663.43 g/mol
Appearance
Clear Aqueous Solution
CAS Number
53-84-9
Storage Protocols
Storage Temp
2°C to 8°C (Refrigerate, Do Not Freeze)
Light Protection
Light Sensitive (Amber Bottle Required)
Solubility
Pre-Mixed Aqueous Solution
Usable Life
30 Days After Opening
Research Focus
Primary Mechanism
Intranasal Mucosal Absorption & Redox Signaling
Studied Alongside
Semax, Selank, Glutathione
Regulatory Status
Research Use Only

Clinical Bibliography

PubMed ID: 17700085

Intranasal administration with NAD+ profoundly decreases brain injury in a rat model of transient focal ischemia.

Frontiers in Bioscience. (2007)
PubMed ID: 37364580

Nicotinamide Adenine Dinucleotide in Aging Biology: Potential Applications and Many Unknowns.

Endocrine Reviews. (2023)
PubMed ID: 29752063

Therapeutic potential of NAD-boosting molecules: the in vivo evidence.

Cell Metabolism. (2018)
PubMed ID: 32380000

NAD+ metabolism and the control of energy homeostasis: a balancing act between mitochondria and the nucleus.

Cell Metabolism. (2020)

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