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| Quantity | Discount | Discounted price |
| 3 - 4 | 5% | $71.20 |
| 5 - 6 | 7% | $69.70 |
| 7 - 8 | 9% | $68.20 |
| 9 + | 11% | $66.71 |
These products are for laboratory research only and not intended for medical use. They are not FDA-approved to diagnose, treat, cure, or prevent any disease. By purchasing, you certify they will be used solely for research and not for human or animal consumption.
NAD+ (Nicotinamide Adenine Dinucleotide) is a coenzyme found in every living cell, essential for energy metabolism and cellular repair. It plays a key role in converting nutrients into energy, supporting DNA maintenance, and regulating cellular communication through sirtuin activation and oxidative balance. Researchers are studying NAD+ for its function in mitochondrial energy regulation, aging processes, and cellular resilience under oxidative and metabolic stress.
Products from Elite Miami Peptides do not include usage instructions, as they are strictly for in vitro research and prohibited by law for human or animal use. Misuse or unlawful application will result in permanent denial of service.
Each vial contains exactly what’s indicated on the label. For instance, a 10mg vial contains precisely 10mg of lyophilized peptide. Researchers may divide it into smaller research portions—such as four 2.5mg aliquots—but the total content remains the same.
Yes. All peptides are supplied in lyophilized powder form and do not come reconstituted. Any extra materials required for research, such as solvents or diluents, must be obtained separately.
When stored as a dry powder, peptides remain stable for up to 2 years.
Once reconstituted, the solution should be kept refrigerated and is typically stable for up to 2 months under proper storage conditions.
Nicotinamide adenine dinucleotide (NAD+) is a naturally occurring molecule central to cellular metabolism and bioenergetic function. As a redox cofactor, it alternates between oxidized (NAD+) and reduced (NADH) states, enabling cells to generate energy through mitochondrial respiration and glycolysis. In research, NAD+ has been shown to support DNA repair, cell signaling, and sirtuin enzyme activity, which are critical to maintaining cellular health, longevity, and stress resistance. (Adapted from Verdin, 2015; Canto et al., 2019)
NAD+ is a molecule that every cell needs to make energy and stay healthy. Scientists are studying it to understand how it helps cells repair themselves, produce energy, and slow down signs of cellular aging. In experiments, NAD+ appears to boost the body’s natural ability to create energy, fight oxidative stress, and maintain healthy DNA function. While promising in research models, NAD+ is not approved for human or medical use and must be used strictly for scientific investigation.
⚠️ Disclaimer: this product is not approved for medical use and is not intended to diagnose, treat, or prevent any disease. All information provided is for educational and research purposes only, and this product must never be used in humans or animals.
NAD+ was discovered in the early 1900s during research into yeast fermentation. Since then, it has become one of the most studied coenzymes in biology due to its essential role in metabolic reactions. In recent years, interest in NAD+ research has grown significantly because of its potential connection to aging, neuroprotection, and energy metabolism. Laboratories continue to investigate how restoring NAD+ levels in experimental models may improve cell function and metabolic efficiency. (Adapted from Canto & Auwerx, 2019; Belenky et al., 2007)

CAS #: 53-84-9 Molecular Formula: C₂₁H₂₇N₇O₁₄P₂ Molecular Weight: 663.43 g/mol PubChem ID: 5892
NAD+ has been widely studied in metabolic, cellular, and systemic research models. It plays a vital role in supporting energy production, mitochondrial activity, and oxidative balance. Key Areas of Research: Energy Production: Mitochondrial metabolism and ATP synthesis Cellular Repair: DNA maintenance and sirtuin activation Oxidative Balance: Redox signaling and reactive oxygen control Longevity Research: Cellular aging and resilience models Collectively, these findings suggest that NAD+ serves as a foundational molecule for studying how energy regulation and DNA repair mechanisms influence overall cellular function and metabolic health. (Summarized from Verdin, 2015; Canto et al., 2019; Belenky et al., 2007)
In simpler terms, NAD+ helps scientists understand how cells create energy and repair themselves. It acts like a spark plug for cellular engines — allowing mitochondria to convert nutrients into energy and support cell function. Researchers are using NAD+ in experiments to learn more about longevity, cell protection, and metabolic resilience, especially as these processes slow with age.
Verdin, E. (2015). NAD+ in aging, metabolism, and neurodegeneration. Cell Metab, 22(1), 31–42. Canto, C. & Auwerx, J. (2019). NAD+ metabolism and the control of energy homeostasis. Cell Metab, 29(2), 265–282. Belenky, P. et al. (2007). NAD+ metabolism in health and disease. Cell Metab, 6(6), 472–483. Rajman, L. et al. (2018). Therapeutic potential of NAD+ precursors in cellular aging research. Mol Cell, 69(5), 871–885.
Sep 25, 2025

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Aug 20, 2025

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Sep 25, 2025

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Aug 24, 2025

Gave me exactly what I wanted. The service and response was good. I have ordered from them before and will continue.
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These products are for laboratory research only and not intended for medical use. They are not FDA-approved to diagnose, treat, cure, or prevent any disease. By purchasing, you certify they will be used solely for research and not for human or animal consumption.
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All compounds from Elite Miami Peptides are intended strictly for laboratory research purposes.
They are not for human use, consumption, or therapeutic applications.
Products are supplied exclusively to qualified professionals working in compliance with all applicable laws and regulations.