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Liposomal NAD+

Advanced Cellular Energy & Longevity Support

Nicotinamide adenine dinucleotide (NAD+) is a vital coenzyme present in every cell of the body. It plays a central role in cellular metabolism, ATP production, mitochondrial function, and enzymatic activity. NAD+ is also essential for sirtuin activation and cellular repair mechanisms associated with healthy aging.

However, NAD+ levels naturally decline with age, which may impact energy metabolism, cognitive performance, and overall cellular resilience. Supporting optimal NAD+ availability has become a key strategy in longevity-focused nutrition.

The Bioavailability Limitations

Despite its biological importance, NAD+ presents formulation challenges:

Degradation Issue

Susceptible to degradation during digestion

Low Stability

Limited stability in conventional formats

Poor Absorption

Reduced absorption and delivery efficiency

The Liposomal NAD+ with DFS Technology™

Liposomal NAD+ is powered by patent-filed DFS Technology™ (Dietary Fiber Stabilized), utilizing advanced liposomal encapsulation to enhance delivery and stability. It protects NAD+ from digestive degradation, improves membrane permeability, enhances cellular uptake, and supports sustained availability for improved bioefficacy.

Backed by Science, Proven in Research

Cellular Uptake Study (Caco-2 model): Liposomal NAD+ demonstrated 1.8-fold higher membrane permeability compared to Non-Liposomal NAD+, confirming improved absorption.

Analytical Validation:Characterized through TEM, Zeta Potential, and PDI confirming uniformity and stability of Liposomal NAD+.

Grade/Specification
Available form
Liposomal NAD+ 50%
Powder

Core Health Benefits:

Boosts Energy Production

Supports Healthy Aging

Enhances Cognitive Function

Reduces Oxidative Stress

Supports Metabolic Health

Why Liposomal NAD+ is Superior?

Feature
Liposomal NAD+
Conventional NAD+
Absorption Technology
DFS Technology™ - advanced liposomal delivery
Basic form – poor absorption
Cellular Uptake
1.8x higher (Caco-2 proven)
Low, limited by degradation in the digestive tract
Stability & Efficacy
Protected from degradation, stable & potent
Unstable, prone to digestive loss
Analytical Validation
TEM, Zeta, PDI advanced validation
No advanced validation
Tolerance
Gentle, effective, and requires lower dosing
May require higher doses, with potential tolerance issues

Backed by External Peer-Reviewed Research

Elsevier | Archives of Physical Medicine and Rehabilitation
STUDY YEAR | 2021 | Susan Broom Gibson et al.

Intravenous administration of Nicotinamide Adenine Dinucleotide (NAD+) improves cognitive performance in human subjects, with notable clinical implications...

READ THE STUDY

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