Exploring Applications: Tetra-O-acetyl-L-ribofuranose in Chemical Synthesis
1,2,3,5-Tetra-O-acetyl-L-ribofuranose, identified by its CAS number 144490-03-9, is more than just a chemical compound; it is a versatile tool for innovation in organic synthesis. As a derivative of ribose, a fundamental pentose sugar, this acetylated form offers unique advantages for chemists looking to construct complex molecular architectures. Its applications span various fields, from pharmaceutical research to the development of novel materials.
In the realm of organic chemistry, the compound's primary role is as a chiral building block. The presence of multiple stereocenters within the ribofuranose structure makes it ideal for asymmetric synthesis, where the creation of specific enantiomers is paramount. Researchers often search for 'buy 1,2,3,5-Tetra-O-acetyl-L-ribofuranose' when they need a reliable source of this stereochemically defined precursor for their complex synthetic targets. Its acetyl groups serve as protecting groups, allowing for selective manipulation of the molecule's reactive sites.
A significant area of application is in the synthesis of nucleosides and their analogs. These compounds are the building blocks of nucleic acids (DNA and RNA) and are central to many biochemical processes. By using 1,2,3,5-Tetra-O-acetyl-L-ribofuranose, chemists can efficiently synthesize modified nucleosides that form the basis for antiviral drugs, anticancer agents, and diagnostic tools. The ability to obtain this 'C13H18O9' intermediate with high purity from a reliable 'manufacturer' is crucial for the success of these syntheses.
Furthermore, this compound is employed in the development of glycoconjugates and carbohydrate-based pharmaceuticals. These complex molecules play roles in cell recognition, immune response, and drug delivery. As researchers explore new frontiers in chemical synthesis, the demand for versatile intermediates like Tetra-O-acetyl-L-ribofuranose continues to grow. Whether you are aiming to 'purchase' it for academic research or industrial application, understanding its potential in various synthetic strategies is key. We, as a dedicated 'pharmaceutical intermediates supplier', are proud to support these innovative endeavors by providing high-quality, reliably sourced materials at a competitive 'CAS 144490-03-9 price'.
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Bio Analyst 88
“As researchers explore new frontiers in chemical synthesis, the demand for versatile intermediates like Tetra-O-acetyl-L-ribofuranose continues to grow.”
Nano Seeker Pro
“Whether you are aiming to 'purchase' it for academic research or industrial application, understanding its potential in various synthetic strategies is key.”
Data Reader 7
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