NAD+
NAD+ (Nicotinamide Adenine Dinucleotide, oxidized form) is a central coenzyme involved in cellular redox reactions and metabolic pathway regulation.
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NAD+ (Nicotinamide Adenine Dinucleotide, oxidized form) is a central coenzyme involved in cellular redox reactions and metabolic pathway regulation. It plays a foundational role in mitochondrial function research, oxidative phosphorylation models, and cellular energy transfer systems.
NAD+ functions as an electron carrier in numerous biochemical reactions and is widely studied in laboratory settings for its role in:
- Cellular respiration pathways
- Redox balance regulation
- Mitochondrial metabolic processes
- Enzyme-dependent signaling cascades
- NAD-dependent deacetylase research models
As a biochemical cofactor, NAD+ is integral to fundamental metabolic research frameworks across cellular biology, molecular signaling, and enzymatic pathway studies.
Product Details:
โ Form: Lyophilized NAD+ (oxidized form)
โ Purity: โฅ99% (analytically verified)
โ Molecular Classification: Coenzyme
โ Certificate of Analysis (COA): Available upon request
โ Intended Use: Laboratory research only
NAD+ functions as a critical redox cofactor within cellular metabolic systems.
Redox Role
NAD+ participates in oxidation-reduction reactions by accepting electrons and becoming NADH. This electron transfer function is essential in:
- Glycolysis research
- Citric acid cycle modeling
- Oxidative phosphorylation studies
Enzyme Interaction
NAD+ serves as a substrate for several enzyme classes including:
- Sirtuins (NAD-dependent deacetylases)
- PARPs (Poly ADP-ribose polymerases)
- CD38 and related enzymatic pathways
These enzyme systems are widely investigated in cellular signaling and gene expression research.
Cellular Metabolic Integration
NAD+ supports research into:
- Mitochondrial pathway modeling
- Energy metabolism frameworks
- Redox homeostasis systems
- DNA repair pathway investigation
- Intracellular signaling cascade analysis
All research use must adhere to institutional and regulatory guidelines.
NAD+ is utilized in laboratory environments for:
- Mitochondrial function research
- Redox balance studies
- Enzyme activity modeling
- NAD-dependent signaling research
- Cellular metabolism pathway analysis
- Biochemical reaction system investigation
It is commonly used in controlled in vitro biochemical assays and metabolic pathway experiments.
NAD+ is composed of:
- Two nucleotides joined via phosphate groups
- An adenine base
- A nicotinamide moiety
Its oxidized structure enables electron acceptance during metabolic reactions, distinguishing it from its reduced form (NADH).
This structural framework makes it a central molecule in biochemical energy-transfer research.
Each batch of NAD+ undergoes analytical verification including:
- High-Performance Liquid Chromatography (HPLC) purity testing
- Identity confirmation analysis
- Batch-level traceability documentation
- Controlled lyophilization standards
- Sterile sealed packaging
Certificates of Analysis are available upon request.
NAD+ is supplied as a sterile lyophilized powder.
Storage Guidelines:
- Store refrigerated at 2โ8ยฐC
- Protect from light exposure
- Minimize moisture exposure
- Avoid repeated freeze-thaw cycles
- Follow proper laboratory handling protocols
The compound is supplied dry and is not pre-reconstituted.
This product is intended strictly for laboratory research purposes only.
It is not intended for human consumption, veterinary use, therapeutic application, or diagnostic use.
By purchasing this product, the buyer affirms compliance with all applicable laws and research regulations.
NAD+ (Nicotinamide Adenine Dinucleotide) is a naturally occurring coenzyme involved in cellular redox reactions and metabolic pathway research.
It is used in laboratory settings to study mitochondrial function, redox balance, enzyme activity, and metabolic signaling pathways.
No. NAD+ is a coenzyme and not a peptide compound.
It is supplied as a sterile lyophilized powder for laboratory research use.
No. NAD+ is strictly intended for laboratory research purposes only.
Each batch is analytically verified to โฅ99% purity. COA documentation is available upon request.
Store refrigerated at 2โ8ยฐC, protected from light and moisture, and handled using proper laboratory procedures.
Combination research must comply with institutional guidelines and regulatory standards.
COA documentation may be requested through our support team by referencing your order details.

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