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Catalog Number:
42455
CAS Number:
4090-29-3
Forme oxydée du thionicotinamide adénine dinucléotide [pour la recherche biochimique]
Purity:
≥ 90 % (HPLC)
Synonym(s):
Forme oxydée du thionicotinamide-DPN
Documents
$434.75 /100 mg
Taille
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Informations sur le produit

Thionicotinamide adenine dinucleotide oxidized form is a vital biochemical compound widely utilized in research and industrial applications. This compound serves as a crucial coenzyme in various enzymatic reactions, particularly in redox processes, making it essential for studies related to cellular metabolism and energy production. Its unique structure allows it to participate in electron transfer reactions, which are fundamental in biochemical pathways, including those involved in cellular respiration and photosynthesis. Researchers often leverage its properties to explore metabolic pathways, investigate enzyme kinetics, and develop assays for drug discovery.

In addition to its role in fundamental research, Thionicotinamide adenine dinucleotide oxidized form has potential applications in the pharmaceutical industry, particularly in the development of therapeutics targeting metabolic disorders. Its ability to modulate redox states can provide insights into oxidative stress-related diseases, paving the way for innovative treatment strategies. The compound's stability and compatibility with various biochemical assays make it a preferred choice for researchers seeking reliable results in their experiments.

Numéro CAS 
4090-29-3
Formule moléculaire
C21H27N7O13P2S
Poids moléculaire 
679.49
Informations générales
Numéro CAS 
4090-29-3
Formule moléculaire
C21H27N7O13P2S
Poids moléculaire 
679.49
Propriétés
Informations complémentaires sur la propriété à venir prochainement !
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Sécurité et réglementation
Matières dangereuses
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Antibiotique
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Réglementé par la DEA
Non
Avertissements 
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Applications

Thionicotinamide adenine dinucleotide oxidized form is widely utilized in research focused on:

  • Biochemical Pathway Studies: This compound plays a crucial role in studying metabolic pathways, particularly those involving redox reactions. Researchers can use it to investigate how cells produce energy and manage oxidative stress.
  • Enzyme Activity Assays: It serves as a substrate in enzyme assays, helping scientists measure the activity of various enzymes. This is particularly important in drug development and understanding disease mechanisms.
  • Cellular Signaling Research: The compound is essential in exploring cellular signaling pathways, especially those related to NAD+ metabolism. This research can lead to insights into aging and neurodegenerative diseases.
  • Pharmaceutical Development: It is used in the development of new therapeutics targeting metabolic disorders. By understanding its interactions, researchers can design better drugs with fewer side effects.
  • Antioxidant Studies: The oxidized form is valuable in studying antioxidant properties and their implications in health. This can help in developing supplements or treatments that combat oxidative damage in cells.

Citations