NAD+ Research Compound | Nicotinamide Adenine Dinucleotide

Price range: $25.00 through $51.00

NAD+ (Nicotinamide Adenine Dinucleotide) is a naturally occurring coenzyme studied extensively in biochemical and molecular research. LV Longevity Peptides supplies NAD+ as a research-use material for controlled laboratory and analytical applications involving redox chemistry, enzymatic activity, metabolic pathways and NAD+-dependent biochemical systems.

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Description

NAD+ (Nicotinamide Adenine Dinucleotide)

 

NAD+ Research Compound (Nicotinamide Adenine Dinucleotide), is a naturally occurring dinucleotide coenzyme involved in fundamental biochemical processes.

In laboratory research, NAD+ is commonly investigated in connection with oxidation-reduction reactions, electron transfer, enzyme activity, metabolic pathways and NAD+-dependent biochemical systems.

LV Longevity Peptides provides NAD+ as a research-use material for controlled laboratory and analytical applications.


What Is NAD+ Research Compound?

NAD+ is the oxidized form of nicotinamide adenine dinucleotide, a small-molecule coenzyme found throughout biological systems.

Unlike peptides such as BPC-157 or TB-500, NAD+ is not a peptide. It is a dinucleotide composed of nucleotide-derived components connected through phosphate groups.

This distinction is important when evaluating NAD+ research materials.

NAD+ is particularly relevant to research involving:

  • redox chemistry
  • electron-transfer mechanisms
  • enzyme-dependent reactions
  • metabolic pathway models
  • biochemical signaling
  • cellular energy-related research
  • analytical characterization

NAD+ Chemical Information

Property Information
Product Name NAD+
Full Name Nicotinamide Adenine Dinucleotide
Chemical Class Dinucleotide coenzyme
Oxidation State Oxidized form
CAS Number 53-84-9
Molecular Formula Verify against your batch/COA
Molecular Weight Approximately 663–664 g/mol depending on chemical form/reporting
Peptide? No

NAD+ Research Applications

NAD+ is relevant to several areas of controlled laboratory research.

Redox and Electron-Transfer Research

NAD+ participates in oxidation-reduction chemistry and can be studied in experimental systems involving electron-transfer mechanisms.

Enzyme Research

Researchers can investigate NAD+-dependent enzymatic reactions and biochemical pathways under defined laboratory conditions.

Metabolic Research

NAD+ is commonly examined in research involving metabolic pathway models and biochemical cofactor systems.

Mitochondrial-Associated Research

NAD+-related biochemical processes are frequently investigated in experimental models involving mitochondrial-associated pathways.

Analytical Research

NAD+ can also be evaluated through analytical techniques used to investigate:

  • identity
  • concentration/content
  • chemical characteristics
  • stability
  • degradation
  • chromatographic behavior

NAD+ and Cellular Energy Research

NAD+ is frequently discussed within biochemical research because of its role as a coenzyme in oxidation-reduction reactions.

In a controlled research setting, investigators can examine NAD+-dependent biochemical reactions and their relationship to metabolic systems.

NAD+ Nicotinamide Adenine Dinucleotide research compound
NAD+ (Nicotinamide Adenine Dinucleotide) — For Research Use Only

NAD+ Nicotinamide Adenine Dinucleotide research compound NAD+ Nicotinamide Adenine Dinucleotide research compound


NAD+ Product Specifications

Specification LV Product Data
Product Name NAD+
Chemical Name Nicotinamide Adenine Dinucleotide
CAS 53-84-9
Form [YOUR ACTUAL FORM]
Quantity [YOUR ACTUAL QUANTITY]
Concentration [IF APPLICABLE]
Molecular Formula [FROM COA/SUPPLIER]
Molecular Weight [FROM COA/SUPPLIER]
Appearance [ACTUAL SPECIFICATION]
Assay/Purity [DOCUMENTED RESULT]
Analytical Method [HPLC / LC-MS / OTHER]
Batch/Lot [BATCH INFORMATION]
Research Applications:

NAD+ is utilized in controlled research environments to support investigation of:

  • Oxidation-reduction (redox) reactions and electron transfer mechanisms
  • Coenzyme-dependent enzymatic activity in biochemical systems
  • Mitochondrial-associated pathway modeling in in vitro research settings
  • Intracellular signaling pathways involving NAD+-dependent processes
  • Stability, degradation, and analytical profiling in assay-based systems

All research applications are conducted in non-human, non-clinical experimental settings.

Storage and Handling:
  • Store lyophilized material at −20°C (−4°F)
  • After reconstitution, store at 2–8°C (36–46°F) and use promptly
  • Avoid repeated freeze-thaw cycles
  • Maintain aseptic techniques during laboratory handling
Product Specifications:
  • Purity: ≥99% (HPLC Certified)
  • Appearance: Lyophilized white powder
  • Solubility: Soluble in suitable laboratory agents

 

Chemical Information:
  • Molecular Formula: C21H27N7O14P2
  • Molecular Weight: 663.43 g/mol
  • Sequence: N/A (NAD+ is a small molecule, not a peptide)
  • Molecular Structure:

NAD+ Nicotinamide Adenine Dinucleotide research compound

Additional information

NAD+ Volumes

100MG, 500MG

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