NAD+ 500mg: Research Grade Nicotinamide Adenine Dinucleotide
$60.00
500mg of reagent-grade NAD+
Nicotinamide Adenine Dinucleotide (NAD+) is an essential coenzyme present in all living cells, functioning as a critical electron carrier in redox reactions and cellular energy metabolism. It is extensively studied in aging research, longevity biology, and metabolic investigations for its role in mitochondrial function, sirtuin pathway activation, and DNA repair mechanisms. NAD+ concentrations decline with age in preclinical models, making it a valuable tool for investigating cellular senescence pathways and age-related metabolic changes in laboratory settings.
Third Party Verified
Description
NAD+ (Nicotinamide Adenine Dinucleotide) is an essential coenzyme found in every living cell and plays a central role in numerous biological processes. As a key participant in cellular energy metabolism and oxidation-reduction (redox) reactions, NAD+ has become one of the most extensively studied molecules in modern metabolic, mitochondrial, and aging research.
NAD+ 500mg is supplied as a reagent-grade, lyophilized powder manufactured specifically for laboratory research and analytical applications. Produced to high research standards and supported by third-party verification, this compound is intended to provide researchers with a consistent, high-purity material suitable for in vitro experimentation and preclinical investigations.
This product is intended exclusively for scientific research, laboratory analysis, and educational applications.
Not for human or animal consumption.
Product Specifications
Product Name: NAD+ (Nicotinamide Adenine Dinucleotide)
Quantity: 500 mg
Form: Lyophilized Powder
Purity: ≥98% (HPLC Verified)
Category: Research Coenzyme
Molecular Formula: C₂₁H₂₇N₇O₁₄P₂
Molecular Weight: Approximately 663.5 g/mol
Quality Verification: Third-Party Tested
Intended Use: Laboratory Research Only
What is NAD+?
Nicotinamide Adenine Dinucleotide (NAD+) is a naturally occurring coenzyme involved in fundamental cellular processes. It functions as an electron carrier during oxidation-reduction reactions and plays a significant role in mitochondrial energy production, cellular metabolism, and numerous enzyme-mediated pathways.
Because of its involvement in essential biochemical processes, NAD+ has become a widely investigated compound in molecular biology, metabolism, and cellular physiology research. Scientific literature continues to explore its role across multiple experimental models to better understand cellular function and metabolic regulation.
Research Areas of Interest
NAD+ continues to be examined across a broad range of scientific disciplines due to its participation in numerous biochemical pathways.
Current laboratory investigations commonly include:
- Cellular energy metabolism
- Mitochondrial bioenergetics
- Electron transport chain activity
- Oxidative phosphorylation
- Glycolytic metabolism
- Redox homeostasis
- Cellular senescence research
- DNA damage response
- Sirtuin enzyme activity
- Metabolic pathway analysis
These areas continue to generate significant interest within academic institutions, biotechnology laboratories, and research organizations worldwide.
Mechanism of Action in Research
Cellular Energy Metabolism
NAD+ serves as an essential coenzyme involved in oxidation-reduction reactions throughout cellular metabolism. During these processes, NAD+ accepts electrons and is converted into NADH, contributing to energy production through mitochondrial respiration.
Because of this central role, researchers frequently utilize NAD+ when investigating cellular bioenergetics and mitochondrial function.
Sirtuin-Dependent Pathways
NAD+ functions as a required co-substrate for the sirtuin family of enzymes (SIRT1-SIRT7). These enzymes participate in numerous cellular regulatory pathways and have become an active area of investigation in molecular biology research.
Preclinical studies continue to examine how NAD+-dependent enzymatic activity influences gene regulation, cellular stress responses, and metabolic signaling.
DNA Repair Research
Another major area of investigation involves the relationship between NAD+ and poly(ADP-ribose) polymerases (PARPs).
PARP enzymes utilize NAD+ during cellular responses to DNA strand damage, making this pathway an important focus within genomic stability and molecular repair studies.
Understanding interactions between NAD+, PARPs, and related enzymes remains an important objective in laboratory research.
Redox Biology
The NAD+/NADH ratio is commonly used as a biochemical indicator of cellular redox balance.
Changes in this ratio may influence multiple metabolic pathways, making NAD+ valuable for researchers studying oxidative stress, mitochondrial physiology, and metabolic adaptation in controlled laboratory settings.
Common Laboratory Applications
Research-grade NAD+ is frequently incorporated into various experimental protocols, including:
Cell Culture Research
Scientists utilize NAD+ during investigations involving cultured mammalian cells to examine metabolic pathways and cellular biochemical processes.
Mitochondrial Function Studies
Researchers studying mitochondrial respiration and energy metabolism frequently include NAD+ in assays evaluating electron transport chain activity and ATP production.
Aging and Longevity Research
Published scientific literature has identified NAD+ metabolism as an important area of investigation in experimental aging models, contributing to ongoing research into cellular senescence and metabolic regulation.
Molecular Biology
NAD+ is regularly used in laboratory investigations involving:
- Enzyme activity assays
- Metabolic pathway characterization
- Cellular signaling studies
- Biochemical analyses
- Redox investigations
- Experimental pathway modeling
Third-Party Verified Quality
Every batch of Peptide Minds NAD+ is manufactured with consistency and research reliability in mind.
Quality standards include:
- Third-party analytical verification
- High-purity research-grade material
- Carefully controlled manufacturing
- Batch consistency
- Professional laboratory packaging
- Reliable product identification
These measures help ensure researchers receive dependable materials suitable for scientific investigation.
Storage Recommendations
To maintain product integrity, NAD+ should be stored using accepted laboratory handling procedures.
Recommended storage includes:
- Store lyophilized material between −20°C and −80°C
- Protect from moisture
- Keep away from direct light
- Store reconstituted solutions at 4°C for short-term laboratory use
- Avoid repeated freeze-thaw cycles
Following proper storage protocols helps preserve stability throughout laboratory use.
Why Choose Peptide Minds?
Peptide Minds is committed to supplying research professionals with dependable laboratory materials produced to rigorous quality standards.
Researchers choose Peptide Minds because of:
- High-purity research compounds
- Third-party verified testing
- Professional manufacturing standards
- Reliable batch consistency
- Transparent product specifications
- Laboratory-ready packaging
- Dedicated quality control
Every product is developed to support professional scientific research while maintaining strict quality expectations.
Important Research Notice
NAD+ is supplied exclusively for laboratory research purposes.
This product is not intended for human consumption, veterinary use, clinical applications, diagnostic procedures, or therapeutic purposes. It should only be handled by qualified professionals working within appropriate laboratory environments.
Frequently Asked Questions
What is NAD+?
NAD+ (Nicotinamide Adenine Dinucleotide) is an essential coenzyme involved in numerous cellular metabolic processes and is widely studied in laboratory research.
What is included with this product?
Each vial contains 500 mg of reagent-grade, lyophilized NAD+ intended for laboratory research applications.
Is this product third-party tested?
Yes. Peptide Minds NAD+ undergoes third-party verification to support product quality and consistency.
What form is the product supplied in?
The product is supplied as a lyophilized powder suitable for laboratory reconstitution according to established research protocols.
Who should purchase this product?
This product is intended for universities, biotechnology companies, research laboratories, and qualified scientific professionals conducting legitimate laboratory research.
Is this product intended for human use?
No. This product is supplied strictly for research use only and is not approved for human or animal consumption.










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