Nicotinamide Adenine Dinucleotide (NAD+) Suppliers and Factory in China - 99% Pure Synthetic Biology Product
Energy Production
β-NAD+ is essential for ATP production, enhancing mitochondrial function and promoting overall energy levels.
【Yoshino et al., 2018】DNA Repair
β-NAD+ activates enzymes like PARPs, which help repair DNA damage, supporting cellular health and longevity.
【Belenky et al., 2007】Anti-aging & Longevity
β-NAD+ plays a key role in activating sirtuins, enzymes associated with longevity, improving metabolic health and slowing aging processes.
【Gomes et al., 2013】Cognitive Function
β-NAD+ supplementation has been shown to support brain health, improve memory, and enhance cognitive performance.
【Vaur et al., 2017】Mechanisms
References
- Yoshino, J., et al. (2018). NAD+ intermediates: The biology and therapeutic potential of NMN and NR. Cell Metabolism.
- Belenky, P., et al. (2007). NAD+ metabolism in health and disease. Cell.
- Gomes, A. P., et al. (2013). Declining NAD+ induces a pseudohypoxic state disrupting nuclear-mitochondrial communication during aging. Cell.
- Vaur, P., et al. (2017). NAD+ metabolism as a therapeutic target for age-related degenerative diseases. Journal of Clinical Investigation.
Frequently Asked Questions
How does β-NAD+ help with energy production?
β-NAD+ serves as an essential coenzyme in redox reactions, transferring electrons during cellular respiration to generate ATP in the mitochondria, thereby enhancing overall energy levels.
What is the role of β-NAD+ in DNA repair?
β-NAD+ activates key enzymes such as PARPs, which are responsible for repairing DNA damage, promoting genomic stability, and supporting cellular longevity.
Can β-NAD+ slow down the aging process?
Yes. β-NAD+ plays a critical role in activating sirtuins, which are longevity-associated enzymes that regulate metabolic health, reduce inflammation, and help slow down aging pathways.
Does β-NAD+ support brain health and cognitive function?
Research indicates that β-NAD+ supplementation supports overall brain health, helps improve memory retention, and enhances general cognitive performance.
What are the primary mechanisms of β-NAD+?
It primarily acts as a coenzyme in mitochondrial redox reactions for ATP generation, and acts as a substrate to activate sirtuins and PARP enzymes for DNA repair and cellular regulation.

