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Catalog Number:
29165
CAS Number:
1234990-04-5
1,2,3-Tri- O -Acetil-5-desoxi-D-ribosa
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Product Information

1,2,3-Tri-O-Acetyl-5-deoxy-D-ribose is a versatile acetylated sugar derivative that plays a crucial role in biochemical research and pharmaceutical applications. This compound is particularly valuable in the synthesis of nucleosides and nucleotides, which are fundamental building blocks for RNA and DNA. Its unique structure, featuring three acetyl groups, enhances its stability and solubility, making it an ideal candidate for various chemical reactions. Researchers utilize 1,2,3-Tri-O-Acetyl-5-deoxy-D-ribose in the development of antiviral and anticancer agents, as it can serve as a precursor in the synthesis of modified nucleosides that exhibit improved therapeutic properties.

In addition to its applications in drug development, this compound is also utilized in carbohydrate chemistry for the synthesis of complex oligosaccharides. Its ability to undergo selective deacetylation allows for the precise manipulation of functional groups, facilitating the creation of tailored compounds for specific research needs. With its broad range of applications and unique properties, 1,2,3-Tri-O-Acetyl-5-deoxy-D-ribose stands out as a valuable tool for researchers and industry professionals aiming to innovate in the fields of biochemistry and medicinal chemistry.

CAS Number
1234990-04-5
Molecular Formula
C11H16O7
Molecular Weight
260.24
MDL Number
MFCD09038578
PubChem ID
71438963
Conditions
Conservar entre 0 y 8 °C.
General Information
CAS Number
1234990-04-5
Molecular Formula
C11H16O7
Molecular Weight
260.24
MDL Number
MFCD09038578
PubChem ID
71438963
Conditions
Conservar entre 0 y 8 °C.
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

1,2,3-Tri-O-Acetyl-5-deoxy-D-ribose is widely utilized in research focused on:

  • Nucleoside Synthesis: This compound serves as a key intermediate in the synthesis of nucleosides, which are crucial for developing antiviral and anticancer drugs.
  • Biochemical Research: It is used in studies related to carbohydrate metabolism and enzyme interactions, helping researchers understand metabolic pathways.
  • Pharmaceutical Development: The compound aids in formulating new drugs, particularly in the field of glycoscience, where modifications of sugars are explored for therapeutic applications.
  • Diagnostic Applications: It can be used in the development of diagnostic tools that rely on sugar derivatives, enhancing the accuracy of certain medical tests.
  • Material Science: The compound finds applications in creating biocompatible materials, which are essential for medical implants and drug delivery systems.

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