Description
2'-Azido-2'-deoxyuridine is a modified deoxynucleoside with CAS number 26929-65-7 and empirical formula C₉H₁₁N₅O₅. It has a molar mass of 269,21 g/mol. The azido substitution at the 2' position makes this uridine derivative of interest in nucleoside chemistry, click-chemistry-oriented routes and biochemical studies that explore functionalised deoxyribose scaffolds. The product from manufacturer Carl ROTH provides laboratories with a defined molecular identity for method development, analogue synthesis and specialised experimental protocols. Researchers in organic biochemistry and nucleic-acid-related chemistry can incorporate this material into documented workflows that require a characterised 2'-azido-2'-deoxyuridine reagent. It belongs to the biochemicals assortment intended for professional laboratory environments handling advanced nucleoside derivatives.
This article is part of Coenzymes, nucleotides & vitamins, in Biochemicals & reagents.
Key features
- Purity (HPLC): ≥ 98 %
- Colour: white to off-white
- Form: powder
- ¹H-NMR Spectrum: corresponds to assigned structure
- Water content (KF): ≤ 2 %
- CAS number: 26929-65-7
- Pack sizes: 100 mg, 250 mg, 500 mg
- Empirical formula: C₉H₁₁N₅O₅
- Molar mass: 269,21 g/mol
- Storage temperature: +2 to +8 °C
- Product type: Biochemical
- Technical Information Sheet:
- Safety Data Sheet:
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Questions about 2'-Azido-2'-deoxyuridine, 100 mg
What is this article?
2'-Azido-2'-deoxyuridine, 100 mg is the article on this page. Luminix Health distributes Carl Roth for laboratory use. It sits in Coenzymes, nucleotides & vitamins, inside Biochemicals & reagents, in Life Science & Microbiology.
Coenzymes, nucleotides and vitamins are the small molecules enzymes and cells consume: NAD, ATP, a vitamin cofactor. Purity, salt form and hydration are the specification, and many are unstable in solution or in the light. The lot is stored as the label says, often cold.
A biochemical is a molecule of life, sold as a reagent: an amino acid, a sugar, a nucleotide, a lipid, an enzyme, an antibiotic. The difference from a bulk chemical is that the use is a biological one, and the impurities that matter are the ones that change that use. An enzyme is specified by activity, not only by mass. An antibiotic is specified by potency. Papers are on PubMed. Structures are on PubChem. Strains and lines that consume these reagents are at ATCC.
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