Complimentary shipping over $350 · Every lot independently verified · For laboratory research use only
Longevity Research
$95.00
1000mg lyophilized vial · COA included
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250 in stock
Nicotinamide Adenine Dinucleotide (NAD+) is a naturally occurring coenzyme investigated extensively in laboratory research involving cellular energy metabolism, redox biology, mitochondrial function, and enzymatic activity. Researchers study NAD+ to better understand intracellular energy transfer, metabolic regulation, oxidative signaling, and cellular homeostasis across a variety of experimental models.
This compound is manufactured solely for scientific and laboratory investigation.
Product Classification: Research Use Only (RUO)
Total Content: 1000 mg lyophilized compound per vial
Compound: Nicotinamide Adenine Dinucleotide (NAD+)
Form: Sterile lyophilized powder
Purity: ≥99%
Storage: Store at −20°C in a dry, light-protected environment.
Packaging: Laboratory-grade glass vial.
Designed for laboratory investigations involving:
For laboratory research only.
Not intended for human consumption, veterinary use, therapeutic applications, or diagnostic procedures.
Abstract
Nicotinamide Adenine Dinucleotide (NAD+) is investigated as an essential coenzyme involved in cellular metabolism and energy transfer. Laboratory research focuses on mitochondrial biology, redox reactions, enzymatic function, and intracellular signaling pathways associated with metabolic regulation and cellular homeostasis.
Mechanistic Pathway
Cellular Energy Transfer
Supports laboratory studies involving intracellular energy production and metabolic communication.
Research Focus: Cellular energy regulation.
Mitochondrial Function
Researchers investigate NAD+ within mitochondrial signaling and oxidative metabolism models.
Redox Biology
Supports studies examining oxidation-reduction reactions and enzymatic pathway communication.
Pharmacokinetics / Research Profile
| Compound | Primary Research Pathways | Research Notes |
| NAD+ | Cellular Metabolism • Mitochondrial Function • Redox Biology | Energy metabolism research |
Research Models
Used exclusively in controlled laboratory environments to investigate cellular metabolism, mitochondrial biology, and enzymatic signaling pathways.
No human or veterinary dosing recommendations are provided.
Preclinical Research Highlights
Current laboratory investigations include:
Conclusion
NAD+ provides laboratories with a foundational research compound for investigating cellular metabolism, mitochondrial communication, redox biology, and intracellular energy regulation.