In Stock NAD+ – "Malibu" 1000mg
Metabolic

NAD+ – "Malibu" 1000mg

✓ 99.85% Purity (HPLC)
Molecular Weight
663.43 g/mol
CAS Number
53-84-9
Form
Lyophilized powder
Use
Research only
$175.00
$175.00
Add to cart
We accept
  • Ships within 1–2 business days, discreetly packaged
  • Lyophilized for research flexibility
  • Third-party HPLC & endotoxin tested per batch
About

What is NAD+ – "Malibu" 1000mg?

Nicotinamide adenine dinucleotide sits at the center of cellular energy biochemistry. The coenzyme cycles between oxidized (NAD+) and reduced (NADH) forms across glycolysis, the citric acid cycle, and oxidative phosphorylation. Beyond its redox role, NAD+ is a required substrate for a separate set of enzymes that includes the sirtuin deacetylases (SIRT1 through SIRT7), PARP proteins involved in DNA repair, and cyclic ADP-ribose synthases.

Mechanism of Action

Sirtuin enzymes consume one NAD+ molecule for every deacetylation reaction, producing nicotinamide and O-acetyl-ADP-ribose as byproducts. This consumption makes cellular NAD+ concentrations a rate-limiting input for sirtuin activity. PARP enzymes draw from the same pool during DNA damage response, which creates competition between repair signaling and deacetylation work under stress conditions.

Discovery & Context

Arthur Harden and William Young identified the molecule in 1906 while studying fermentation in yeast extracts. Otto Warburg described its coenzyme role in the 1930s. Research interest expanded substantially after 2000 when Leonard Guarente's lab at MIT linked NAD+ to sirtuin-mediated lifespan effects in yeast, followed by work on mammalian models.

Research use only. Language such as "may," "appears to," and "has been shown in published studies" is used throughout to reflect the pre-clinical nature of this literature. Not intended for human consumption, diagnosis, or treatment.
Background

Research Context

Published research literature covers the following areas:

  • Sirtuin-mediated deacetylation
  • Mitochondrial bioenergetics
  • PARP DNA-repair studies
  • Cellular senescence and aging
  • NAD+ precursor research (NR, NMN)

LAR supplies this compound as a reference standard to qualified laboratories. No dosing schedules, administration methods, or human-use guidance is provided or implied.

Literature

Selected References

  1. Verdin E. (2015). NAD+ in aging, metabolism, and neurodegeneration. Science, 350(6265), 1208–1213. PubMed 26785480 ↗
  2. Rajman L., Chwalek K. & Sinclair DA. (2018). Therapeutic potential of NAD-boosting molecules: the in vivo evidence. Cell Metabolism, 27(3), 529–547. PubMed 29514064 ↗
  3. Covarrubias AJ. et al. (2021). NAD+ metabolism and its roles in cellular processes during ageing. Nature Reviews Molecular Cell Biology, 22(2), 119–141. PubMed 33235391 ↗
Handling

Storage & Stability

Sealed vial: Stable at refrigerated temperatures (2–8 °C) for up to 24 months. Stable at room temperature (up to 25 °C) for 30 days during shipping.

After opening: Refrigerate at 2–8 °C and use within 30 days. Protect from light. Do not freeze after opening.

Visual check: Solution should remain clear. Discard if discoloration or precipitate appears.

Lab Work

Certificate of Analysis

Every batch is independently tested for purity, mass, and endotoxin load. Click any report to view the full analysis.

Questions

Frequently Asked

Is this FDA approved?

No. Research peptides supplied by LAR are reference materials for laboratory investigation. They are not approved by the FDA or any national regulatory body for human use.

Does this vial require reconstitution?

Yes. Vials ship as lyophilized powder, giving your lab control over solvent selection and final concentration. Reconstitution should follow your laboratory's standard practice.

How is purity verified?

Each manufacturing batch is tested by an independent third-party laboratory using HPLC-UV analysis. The full report, including chromatogram and mass spectrometry, is available above.

How long does shipping take?

Orders ship within 1–2 business days via discreet packaging.

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