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- Description
- Certificate of Analysis
NAD+ (Nicotinamide Adenine Dinucleotide) is a vital coenzyme in all living cells. It plays a key role in energy metabolism and cellular repair. It exists in two forms: NAD+ and its reduced counterpart, NADH. Moreover, it drives redox reactions essential for energy production and cellular homeostasis. Additionally, NAD+ supports enzymes involved in DNA repair, mitochondrial function, and metabolic regulation.
Furthermore, NAD+ powers the electron transport chain, a crucial part of cellular respiration. It transfers electrons from nutrients to mitochondria, producing ATP. As a result, this process fuels cells, especially in energy-demanding tissues like muscles and the brain.
Beyond energy metabolism, NAD+ also activates sirtuins. These proteins regulate DNA repair, inflammation, and aging. Consequently, they contribute to benefits linked to caloric restriction and longevity. In addition, sirtuins regulate circadian rhythms and cellular stress responses, further supporting overall health.
However, NAD+ levels decline with age, sparking interest in boosting them for healthy aging. Lower levels are linked to metabolic disorders, neurodegenerative diseases, and mitochondrial decline. Therefore, researchers study ways to increase NAD+ to counteract these effects.
To address this, supplementing NAD+ precursors like Nicotinamide Riboside (NR) and Nicotinamide Mononucleotide (NMN) helps raise NAD+ levels. These compounds convert into NAD+ and may enhance energy metabolism, cellular function, and aging. Moreover, research suggests they also improve mitochondria, physical performance, and cognitive health.
Additionally, NAD+ may help treat or prevent neurodegenerative diseases, heart disease, diabetes, and obesity. Meanwhile, regenerative medicine continues to explore its role in tissue repair and cellular rejuvenation.
While NAD+ shows promise, more research is needed. Scientists continue studying its effects, ideal dosing, and long-term safety. Since most studies remain in early stages, its full impact on health is still unclear.
For Research Use Only
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