StartShopLanglebigkeitsforschungNAD⁺
NAD⁺ 500 mg - Research Peptide | Pepcore

NAD⁺

69.00
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Nur für In-vitro-Laborforschung. Nicht für den menschlichen Verzehr, veterinärmedizinische, diagnostische oder klinische Anwendung bestimmt.

Lieferung in 1–2 Tagen
Lieferung in 1–2 Tagen
EU-weiter Versand mit Sendungsverfolgung
≥99 % HPLC-Reinheit
≥99 % HPLC-Reinheit
Von Drittlaboren chargengeprüft
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COA auf Anfrage
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BestelltHeute
Versendet11 Jun
Geliefert12 Jun16 Jun
Produktspezifikationen
Format
Lyophilisiertes Pulver
Stärke
500 mg
Reinheit
99%
Prüfung
HPLC/MS durch Dritte
CAS
53-84-9
Verwendungszweck
Nur Forschung

Beschreibung

NAD⁺ (Nicotinamide Adenine Dinucleotide) is an essential intracellular coenzyme present in every living cell and a central node in cellular bioenergetics. It is supplied as an investigational laboratory compound for use in longevity research, mitochondrial-pathway research, and redox-metabolism research.

Laboratory research studies have positioned NAD⁺ as a foundational metabolic cofactor that cycles between its oxidized (NAD⁺) and reduced (NADH) states, enabling efficient ATP production through glycolysis, the tricarboxylic acid cycle, and oxidative phosphorylation. Beyond its electron-carrier role, NAD⁺ serves as the obligate substrate for sirtuin deacylases (SIRT1·SIRT7), poly(ADP-ribose) polymerases (PARPs), and CD38, linking cellular energy state to gene-expression programs, DNA-maintenance signaling, and stress-adaptation responses (Chini et al., 2021, Cell Metabolism).

NAD⁺ is investigated across longevity research, neurobiology research, cardiovascular-pathway research, and metabolic-pathway research. Reported research observations include progressive age-associated decline in tissue NAD⁺ pools, modulation of mitochondrial efficiency under stress, and links between NAD⁺ bioavailability and axonal-integrity signaling via the NMNAT and SARM1 axis. The coenzyme is frequently studied alongside the NNMT inhibitor approach for probing nicotinamide salvage, and in parallel with mitochondrial-derived peptide signaling in energy-metabolism research models. NAD⁺ remains one of the most extensively studied coenzymes in modern biomedical research.

The compound is supplied as a lyophilized powder to ensure optimal stability during storage and handling.

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