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NAD+ (1,000mg)
NAD+ (1,000mg)
The master longevity molecule that powers every cell in your body but declines 50% by age 40. Supplementation research shows restored NAD+ levels can improve cellular energy by 30-40%, enhance DNA repair capacity, and activate anti-aging sirtuins within weeks.
The master longevity molecule that powers every cell in your body but declines 50% by age 40. Supplementation research shows restored NAD+ levels can improve cellular energy by 30-40%, enhance DNA repair capacity, and activate anti-aging sirtuins within weeks.
3,000,000 IDR
3,000,000 IDR
Lab Reports & COA's
Lab Reports & COA's
Purity
Passed
Purity
Passed
Purity
Passed
How should I store this peptide?
How should I store this peptide?
How should I store this peptide?
What purity are your peptides?
What purity are your peptides?
What purity are your peptides?
Research Use Only [Disclaimer]
Research Use Only [Disclaimer]
Research Use Only [Disclaimer]
Same-day shipping
Local orders are delivered same-day
Same-day shipping
Local orders are delivered same-day
Same-day shipping
Local orders are delivered same-day
Free deliveries and returns worldwide
We deliver across the world for free
Free deliveries and returns worldwide
We deliver across the world for free
Free deliveries and returns worldwide
We deliver across the world for free
Guaranteed returns within first two weeks
Return us desired item within two weeks
Guaranteed returns within first two weeks
Return us desired item within two weeks
Guaranteed returns within first two weeks
Return us desired item within two weeks
Overview
Lab Reports
Storage
Overview
What NAD⁺ Is & How It Works
NAD⁺ (Nicotinamide Adenine Dinucleotide) is a vital coenzyme found in every cell, essential for energy metabolism, DNA repair, and cellular signaling. It functions as a key electron carrier in oxidative phosphorylation, allowing cells to convert nutrients into ATP. NAD⁺ also activates sirtuins, enzymes that regulate gene expression, mitochondrial function, and stress resilience, and plays a role in PARP-mediated DNA repair, making it central to cellular health and longevity (PubMed, NCBI).
Observed Benefits in Research
Declining NAD⁺ levels are linked to aging, metabolic dysfunction, neurodegeneration, and reduced mitochondrial efficiency. Preclinical studies show that boosting NAD⁺ via precursors like NMN or NR can improve mitochondrial function, enhance muscle endurance, protect neurons, and support DNA repair (PubMed). In small human trials, supplementation with NAD⁺ precursors has been associated with improved insulin sensitivity, better vascular function, and enhanced markers of cellular energy metabolism (PubMed).
Why It’s Studied in Longevity & Performance
NAD⁺ is a cornerstone molecule in research on aging, metabolic health, and exercise performance. By restoring cellular energy balance, activating repair pathways, and supporting mitochondrial efficiency, NAD⁺-focused interventions are being explored as potential tools to enhance resilience, improve recovery, and slow age-related cellular decline, making it highly relevant in both longevity and biohacking research (NCBI).
Overview
Lab Reports
Storage
Overview
What NAD⁺ Is & How It Works
NAD⁺ (Nicotinamide Adenine Dinucleotide) is a vital coenzyme found in every cell, essential for energy metabolism, DNA repair, and cellular signaling. It functions as a key electron carrier in oxidative phosphorylation, allowing cells to convert nutrients into ATP. NAD⁺ also activates sirtuins, enzymes that regulate gene expression, mitochondrial function, and stress resilience, and plays a role in PARP-mediated DNA repair, making it central to cellular health and longevity (PubMed, NCBI).
Observed Benefits in Research
Declining NAD⁺ levels are linked to aging, metabolic dysfunction, neurodegeneration, and reduced mitochondrial efficiency. Preclinical studies show that boosting NAD⁺ via precursors like NMN or NR can improve mitochondrial function, enhance muscle endurance, protect neurons, and support DNA repair (PubMed). In small human trials, supplementation with NAD⁺ precursors has been associated with improved insulin sensitivity, better vascular function, and enhanced markers of cellular energy metabolism (PubMed).
Why It’s Studied in Longevity & Performance
NAD⁺ is a cornerstone molecule in research on aging, metabolic health, and exercise performance. By restoring cellular energy balance, activating repair pathways, and supporting mitochondrial efficiency, NAD⁺-focused interventions are being explored as potential tools to enhance resilience, improve recovery, and slow age-related cellular decline, making it highly relevant in both longevity and biohacking research (NCBI).
Overview
Lab Reports
Storage
Overview
What NAD⁺ Is & How It Works
NAD⁺ (Nicotinamide Adenine Dinucleotide) is a vital coenzyme found in every cell, essential for energy metabolism, DNA repair, and cellular signaling. It functions as a key electron carrier in oxidative phosphorylation, allowing cells to convert nutrients into ATP. NAD⁺ also activates sirtuins, enzymes that regulate gene expression, mitochondrial function, and stress resilience, and plays a role in PARP-mediated DNA repair, making it central to cellular health and longevity (PubMed, NCBI).
Observed Benefits in Research
Declining NAD⁺ levels are linked to aging, metabolic dysfunction, neurodegeneration, and reduced mitochondrial efficiency. Preclinical studies show that boosting NAD⁺ via precursors like NMN or NR can improve mitochondrial function, enhance muscle endurance, protect neurons, and support DNA repair (PubMed). In small human trials, supplementation with NAD⁺ precursors has been associated with improved insulin sensitivity, better vascular function, and enhanced markers of cellular energy metabolism (PubMed).
Why It’s Studied in Longevity & Performance
NAD⁺ is a cornerstone molecule in research on aging, metabolic health, and exercise performance. By restoring cellular energy balance, activating repair pathways, and supporting mitochondrial efficiency, NAD⁺-focused interventions are being explored as potential tools to enhance resilience, improve recovery, and slow age-related cellular decline, making it highly relevant in both longevity and biohacking research (NCBI).
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FAQ
FAQ
