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NAD+

"The Age-Reversal Switch"

Price

$200.00

Size / Dosage

Dosage guide

Format

1

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Product description

NAD⁺ (Nicotinamide Adenine Dinucleotide, CAS# 53-84-9) is a naturally occurring dinucleotide coenzyme found in all living cells, functioning as an essential redox cofactor in cellular energy metabolism. It participates as an electron carrier in key metabolic pathways and serves as a substrate for enzymes including sirtuins (SIRTs) and poly(ADP-ribose) polymerases (PARPs). Supplied by BIOSTACKS as a lyophilized powder for in vitro laboratory research use.

How to use it

Each vial arrives as lyophilized (freeze-dried) powder and must be reconstituted with bacteriostatic water before use in a research setting. Add the water slowly down the inside wall of the vial, then swirl gently until clear — never shake. Once reconstituted, keep it refrigerated and use within 28 days.

Open the step-by-step reconstitution guide
Storage & stability

Sealed lyophilized vials are stable at ambient temperatures for 30 days and indefinitely at −20°C. After reconstitution, refrigerate at 2–8°C in the original vial and use within 28 days. Keep the vial out of direct light and avoid repeated temperature swings and agitation.

Quality & testing

Quality and purity tests are performed on random batches, covering identity (mass spec), purity (HPLC) and endotoxin results.

Browse our certificates of analysis →
Shipping & returns

Orders placed before 3:00 PM ET on a business day are typically shipped the same day, in plain, discreet packaging; transit is estimated at 2–4 business days.

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COA included

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About NAD+

NAD⁺ (Nicotinamide Adenine Dinucleotide) is a high-purity research compound fundamentally essential to cellular energy metabolism and complex biochemical signaling. As a critical, ubiquitous coenzyme found in all living cells, this molecule plays an absolutely central role in redox reactions, mitochondrial energy production, and systemic metabolic regulation. This foundational presence makes it one of the most extensively studied molecules in contemporary cellular biology and biogerontology research.

In highly controlled laboratory environments, NAD⁺ is rigorously studied for its direct involvement in oxidative phosphorylation and the tricarboxylic acid (TCA) cycle. As an irreplaceable electron carrier, it allows laboratory researchers to deeply explore how individual cells convert nutrients into usable ATP energy. Furthermore, manipulating levels of this coenzyme helps investigators understand how energy availability directly dictates overall cellular performance and baseline metabolic efficiency. Because of its universal role, it is frequently utilized as a standard reference in advanced metabolic research.

Sirtuins, PARPs, and DNA Repair Mechanisms
Beyond basic energy transfer, modern scientific research has heavily focused on the relationship between cellular repair mechanisms and vital regulatory enzymes, notably sirtuins and poly (ADP-ribose) polymerases (PARPs). These highly specialized pathways are the absolute key to studying DNA repair models and the underlying mechanics of cellular aging processes. Because intracellular levels directly influence multiple signaling pathways, this molecule provides researchers with an exceptionally valuable tool for investigating how cells fight senescence and maintain homeostasis under severe oxidative stress.

This premium formulation is supplied specifically to support precision-based laboratory research, offering a substantial 500mg quantity perfectly suitable for extended experimental protocols. When stored and handled according to appropriate, rigorous laboratory standards, it delivers unparalleled consistency and reproducibility across a remarkably wide range of scientific applications. For best results, researchers often refer to internal stability protocols to ensure compound longevity.

One of the most fascinating aspects of studying this compound is its influence on circadian rhythms. Recent investigations suggest that the ebb and flow of this coenzyme within the cell may act as a bridge between metabolic state and the biological clock. This makes it an essential component for studies involving sleep-wake cycles and metabolic synchronization. By increasing the depth of research into these cascading effects, laboratories can better understand the holistic nature of cellular health and how metabolic signaling oscillates over a 24-hour period.

The versatility of NAD⁺ in a laboratory setting extends to its use in studying neuroprotective pathways and cardiovascular signaling models. Researchers utilize high-purity batches to observe how increased availability of the coenzyme might mitigate oxidative damage in specific tissue cultures. This breadth of application is why it remains a top-tier focus for scientists looking into systemic biological resilience. By maintaining strict control over environmental variables during research, the data gathered from these studies provides a clearer picture of the molecule’s role in fundamental life processes.

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FAQ

Common questions

Each vial contains lyophilized peptide, sealed under vacuum with a butyl stopper and aluminum crimp cap. Bacteriostatic water is sold separately.

Store the sealed vial at 2–8°C in a dark environment. After reconstitution, keep refrigerated and use within 28 days.

Yes — every batch ships with a signed COA showing HPLC purity, mass spec confirmation, and endotoxin results. Download the sample COA above.

Larger vials offer the same peptide at a lower per-mg cost. Reconstitution volume scales linearly with size.

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