NAD+ 100 mg NAD+ 100 mg
Peptide Hubs

NAD+ 100 mg

NICOTINAMIDE ADENINE DINUCLEOTIDE 100 MG INJECTION
Drug Class: Coenzyme/Cellular Energizer
Composition:
- Active Substance: Nicotinamide Adenine Dinucleotide
- Concentration: 100 mg/vial
Presentation: 2 mL Vial
Form: Lyophilized Powder
Manufacturer: Peptide Hubs
Tested in Laboratory: View Lab Report

$40.00
Shipping From:
International

NAD+ (Nicotinamide Adenine Dinucleotide): The Essential Cellular Energy Coenzyme

Peptide Hubs presents research-grade NAD+ (Nicotinamide Adenine Dinucleotide) in pure 100mg vials. This fundamental coenzyme is involved in hundreds of metabolic processes and is essential for cellular energy production, DNA repair, and maintaining proper cell function. Our pharmaceutical-grade NAD+ is manufactured in the USA under strict quality control protocols, providing researchers with a reliable compound for studying anti-aging mechanisms, neurological function, metabolic disorders, and recovery processes.

Lab Test Report

nad lab test report

Effects of NAD+ Supplementation

NAD+ serves as a critical cofactor for numerous biological processes, primarily functioning in redox reactions and as a substrate for various signaling enzymes. Research indicates that NAD+ levels naturally decline with age, and supplementation may support multiple physiological systems. Studies suggest NAD+ plays vital roles in activating sirtuins (proteins linked to longevity), supporting mitochondrial function, enhancing cellular repair mechanisms, and maintaining neurological health. Current research on NAD+ biology has demonstrated its importance in metabolic health and aging processes. Additional research applications include investigating its potential effects on cognitive function, energy metabolism, and recovery from cellular stress.

Dosage Guidelines

For research purposes, NAD+ dosage typically ranges from 50-200mg per administration, depending on the specific research model and objectives. The 100mg concentration offered by Peptide Hubs provides flexibility for various research protocols. NAD+ should be reconstituted with sterile bacteriostatic water and administered according to established research guidelines. Many research protocols utilize daily or several-times-weekly administration schedules over extended periods to study the cumulative effects on NAD+ levels and related biological processes. Researchers should consider measuring baseline NAD+ levels before beginning studies to better quantify changes resulting from supplementation.

Cycle Recommendations

Research cycles for NAD+ typically extend longer than those for other research compounds, often spanning 4-6 months to adequately study its effects on gene expression and metabolic pathways. Due to its excellent safety profile and role as a natural coenzyme, longer continuous cycles are generally appropriate for NAD+ research. Researchers often combine NAD+ with other compounds that support related biological processes. Popular research combinations include stacking with NMN (Nicotinamide Mononucleotide) for NAD+ precursor research, Resveratrol for sirtuin activation studies, Glutathione for antioxidant system research, TA-65 for telomere studies, and Epitalon for pineal gland and circadian rhythm research. These combinations allow for comprehensive investigation of aging and metabolic processes.

Possible Side Effects

NAD+ is generally well-tolerated in research settings due to its natural presence in all living cells. Some studies have reported transient flushing or warmth following administration, which typically subsides quickly. Unlike many research compounds, NAD+ does not interact with hormone receptors or significantly impact endocrine function, making it suitable for long-term research protocols. At higher experimental doses, some temporary gastrointestinal effects have been occasionally reported. As with any research compound, proper laboratory protocols should be followed to ensure safety and accurate results. The favorable safety profile of NAD+ makes it particularly valuable for extended research studies.

Mechanism of Action

NAD+ functions primarily as an essential coenzyme in oxidation-reduction reactions, particularly in mitochondrial ATP production. It serves as a key electron carrier in the electron transport chain, facilitating efficient energy production. Additionally, NAD+ acts as a substrate for several important enzymes including sirtuins (involved in gene silencing and longevity), PARPs (involved in DNA repair), and CD38 (involved in calcium signaling). Through these mechanisms, NAD+ influences numerous critical cellular processes including energy metabolism, DNA repair, gene expression, and cellular stress responses. The decline in NAD+ levels associated with aging has made it a significant focus of anti-aging research.

Reconstitution and Storage

Proper handling is crucial for maintaining NAD+ stability and efficacy. The lyophilized powder should be reconstituted with bacteriostatic water and gently swirled until completely dissolved. Avoid vigorous shaking or agitation that might degrade the compound. Reconstituted NAD+ should be stored refrigerated and protected from light, with most research protocols recommending use within 4-6 weeks of reconstitution. Unreconstituted vials remain stable for up to 24 months when stored in a cool, dark environment away from moisture. Researchers should follow sterile techniques to prevent contamination and ensure compound integrity throughout the research period.

Research Applications

NAD+ research spans multiple scientific disciplines including biochemistry, gerontology, neuroscience, and metabolism. Current research focuses on its potential applications in supporting healthy aging, metabolic function, neurological health, and cellular repair processes. The availability of high-quality NAD+ from Peptide Hubs enables researchers to investigate these applications with a reliable, pharmaceutical-grade compound. Particular research interest has focused on NAD+'s role in activating sirtuins, a class of proteins linked to longevity and metabolic regulation in various model systems.

Quality Assurance

Every batch of Peptide Hubs NAD+ undergoes rigorous third-party testing to verify purity, potency, and sterility. Our manufacturing process complies with strict quality control standards, ensuring researchers receive consistent, pharmaceutical-grade product. Each vial contains precisely 100mg of pure Nicotinamide Adenine Dinucleotide, accurately measured for precise dosing in research applications. Certificate of Analysis is available for research verification and protocol documentation purposes.

Frequently Asked Questions

What is the difference between NAD+ and NADH?

NAD+ and NADH are two forms of the same coenzyme that exist in an oxidation-reduction pair. NAD+ is the oxidized form that accepts electrons in metabolic reactions, while NADH is the reduced form that donates electrons. They constantly convert between forms during energy production processes. In research contexts, NAD+ is generally preferred for supplementation studies as it is more stable and effectively increases overall NAD+ pool levels, which then naturally equilibrate between oxidized and reduced forms according to cellular needs.

How does NAD+ support anti-aging research?

NAD+ supports anti-aging research through multiple mechanisms. It serves as an essential substrate for sirtuins, a class of proteins involved in gene silencing, DNA repair, and longevity. NAD+ also supports mitochondrial function, enhances cellular repair mechanisms, and maintains metabolic health. Research indicates that NAD+ levels decline with age, and supplementation may help maintain cellular function and resilience. Studies focus on how maintaining NAD+ levels might support healthy aging processes and mitigate age-related functional decline.

What research benefits does NAD+ offer for athletic performance?

In athletic performance research, NAD+ is studied for its potential to support energy production, enhance recovery, and reduce exercise-induced fatigue. By supporting efficient mitochondrial function and ATP production, NAD+ may help maintain energy levels during prolonged activity. Additionally, its role in cellular repair processes may support recovery from intense training. Some research also investigates NAD+'s potential effects on reducing inflammation and oxidative stress associated with strenuous exercise.

How long does it take to see research results with NAD+ supplementation?

Research outcomes with NAD+ vary depending on the parameters being measured and the research model. Some cellular and metabolic changes may be detectable within days to weeks of consistent administration. However, more comprehensive effects on gene expression, mitochondrial function, and age-related parameters typically require longer study periods of several months. Most research protocols extend for at least 3-6 months to adequately assess NAD+'s effects on various biological systems.

Can NAD+ be combined with other anti-aging research compounds?

Yes, researchers often combine NAD+ with other compounds that support related biological processes. Common combinations include NMN (a direct NAD+ precursor), resveratrol (which activates sirtuins that require NAD+), and other compounds that support mitochondrial function or cellular repair. These combinations allow researchers to study potential synergistic effects and comprehensive approaches to supporting cellular health and function. However, researchers should carefully design protocols to distinguish the effects of individual compounds from combination effects.

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