NAD+ 500 mg
72.00$
Description
NAD+ Peptide: Effects, Benefits and Scientific Substantiation
What is NAD+?
NAD+ stands for nicotinamide adenine dinucleotide, a coenzyme found in every cell in the body. It plays a crucial role in cellular energy production, DNA repair, and epigenetic regulation. NAD+ exists in two forms: the oxidized form (NAD+) and the reduced form (NADH). As we age, NAD+ levels in our bodies decrease, which is associated with aging and the development of diseases of aging.
What is NAD+ Peptide?
The term “NAD+ peptide” usually refers to synthetic peptide compounds that stimulate the natural production of NAD+ or mimic its action in cellular processes. These peptides are designed to increase NAD+ levels or activate NAD+-dependent pathways, such as sirtuins.
In the context of anti-aging and regenerative medicine, NAD+ peptides are often used for:
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Cell Rejuvenation
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Mitochondrial function improvement
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Reduction of oxidative stress
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Improvement of cognitive function and energy levels
Effect of NAD+ Peptides
The action of NAD+ peptides can be summarized as follows:
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Stimulation of NAD+ biosynthesis: Some peptides increase the availability of NAD+ precursors such as nicotinamide riboside (NR) or nicotinamide mononucleotide (NMN).
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Activation of sirtuins: Sirtuins are NAD+-dependent enzymes involved in DNA repair, inflammation inhibition and metabolism. Elevated NAD+ levels activate these enzymes.
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Cell metabolism and energy production: NAD+ plays a key role in the Krebs cycle (citric acid cycle) and the electron transport chain, which are essential for the production of ATP (the cell’s energy source).
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DNA repair: NAD+ is required for the activity of PARP enzymes (poly(ADP-ribose) polymerases), which repair damaged DNA.
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Influencing gene expression: Through epigenetic pathways, NAD+ influences gene expression through histone modifications.
Scientific Substantiation
1. Decrease in NAD+ with aging.
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Aging leads to NAD+ depletion, which promotes mitochondrial dysfunction and DNA damage.
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Source: Gomes et al, Cell (2013). “Declining NAD+ induces a pseudohypoxic state disrupting nuclear-mitochondrial communication during aging.”
2. Sirtuins and NAD+.
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NAD+-dependent sirtuins are essential for maintaining cellular health. SIRT1 and SIRT3 improve mitochondrial function and metabolic health.
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Source: Imai & Guarente, Trends in Molecular Medicine (2014). “NAD+ and sirtuins in aging and disease.”
3. NAD+ supplementation via NMN or NR
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Supplementation with NAD+ precursors such as NMN and NR increases NAD+ levels, improves muscle function and cognitive performance in mouse models.
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Source: Mills et al, Cell Metabolism (2016). “Long-Term Administration of Nicotinamide Mononucleotide Mitigates Age-Associated Physiological Decline in Mice.”
4. NAD+ and neurodegenerative diseases
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NAD+ has protective effects in models of Alzheimer’s, Parkinson’s and multiple sclerosis.
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Source: Lautrup et al, Nature Reviews Neurology (2019). “NAD+ in brain aging and neurodegenerative disorders.”
5. Clinical studies in humans
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Early clinical trials have shown that NAD+ supplementation is safe and improves biomarkers of aging, including insulin sensitivity, blood pressure and inflammatory markers.
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Source: Martens et al, Nature Communications (2018). “Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD+ levels in healthy middle-aged and older adults.”
Applications of NAD+ Peptides
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Anti-aging therapies: Slow down aging processes at the cellular level.
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Cognitive support: Potential in memory loss or cognitive decline.
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Detoxification and addiction treatment: NAD+ infusions are being investigated as support for addiction withdrawal.
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Mitochondrial disorders: In diseases characterized by energy problems at the cellular level.
Forms of administration
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Injectable peptides
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Infusion treatments (NAD+ IV therapy).
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Nasal sprays
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Orally in combination with NAD+ precursors
Critical Comments
While the science is promising, there are also critical issues:
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Many studies are preclinical (mice/models).
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Long-term effects in humans have not yet been sufficiently studied.
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Peptide therapy falls under experimental treatments in many countries.
Conclusion
NAD+ peptides represent an emerging field within biotechnology and anti-aging medicine. Science supports the importance of NAD+ for cell health, energy metabolism and DNA repair, and peptides that affect NAD+ pathways hold promise for various applications. Yet further research is needed to fully establish long-term safety and efficacy in humans.